Ruchi Sharma | Biological Sciences | Best Researcher Award

Dr. Ruchi Sharma | Biological Sciences | Best Researcher Award 

Assistant Professor from RIMT University, India

Dr. Ruchi Sharma is an accomplished academic and researcher specializing in the field of Nanomaterials, Biomaterials, and Polymer Science. With a strong background in material science, Dr. Sharma has made significant contributions to understanding the properties and applications of various materials, particularly in the domains of drug delivery, tissue engineering, and advanced coatings. Her research has garnered recognition within the scientific community, both for its practical implications in medicine and for advancing theoretical frameworks in materials science. Having worked with esteemed institutions and research teams, Dr. Sharma has contributed to various multidisciplinary projects aimed at bridging the gap between materials science and biomedical engineering. Her work on nanomaterials has provided novel solutions for drug delivery systems that could revolutionize therapeutic interventions. Furthermore, Dr. Sharma’s commitment to advancing the field is evident in her innovative research efforts, collaborations, and leadership in scientific endeavors. She continues to be an influential figure in material science, using her expertise to push the boundaries of medical science and technology.

Professional Profile

Education

Dr. Ruchi Sharma holds a Ph.D. in Polymer Science and Technology from the prestigious Indian Institute of Technology (IIT), where she also completed her Master’s degree in the same discipline. During her academic journey, Dr. Sharma developed a keen interest in biomaterials and nanotechnology, which would later shape her research trajectory. She graduated with top honors and earned multiple scholarships for her excellence in both research and coursework. Her academic foundation was built upon a deep understanding of polymer synthesis, nanomaterial characterization, and material processing. Dr. Sharma’s education was further enriched by international collaborations and training, which honed her expertise in diverse areas of material science, such as bioengineering and biomedical applications.

Professional Experience

Dr. Sharma’s professional journey includes a rich blend of academic, research, and industry experience. She started her career as a Postdoctoral Researcher at a well-regarded research facility, where she focused on polymeric nanomaterials and their biomedical applications. Her work led to several groundbreaking developments in drug delivery systems and the biocompatibility of materials. In addition to her academic pursuits, Dr. Sharma has held faculty positions at renowned universities, where she contributed to curriculum development and taught graduate courses in material science and nanotechnology. Furthermore, her role as a Principal Investigator on numerous funded projects has allowed her to mentor students and collaborate with industry experts to advance cutting-edge research.

Research Interests

Dr. Ruchi Sharma’s research interests lie in the intersection of nanotechnology, biomaterials, and polymer science. Her primary focus is on developing advanced drug delivery systems using biocompatible and biodegradable materials, which can provide targeted treatment for diseases such as cancer. Additionally, Dr. Sharma investigates the mechanical properties and biocompatibility of various nanomaterials, seeking ways to enhance their efficacy in medical applications. She is also involved in exploring the applications of 3D printing technologies for tissue engineering and implantable devices. Her interdisciplinary research is aimed at addressing current challenges in medical devices and therapeutics by leveraging novel material properties for improved functionality.

Research Skills

Dr. Sharma is skilled in several advanced research techniques, including polymer synthesis, nanoparticle fabrication, and material characterization. She has extensive experience in scanning electron microscopy (SEM), transmission electron microscopy (TEM), and atomic force microscopy (AFM), which she uses to analyze the surface and structural properties of materials. Additionally, Dr. Sharma is proficient in drug formulation, in-vitro cell culture models, and mechanical testing for biomedical applications. Her expertise also extends to computer modeling and simulation of material behavior, which enhances the precision of her experimental outcomes. Through her multi-disciplinary approach, Dr. Sharma has developed a unique skill set that allows her to tackle complex scientific problems in both academia and industry.

Awards and Honors

Dr. Ruchi Sharma has received several accolades throughout her career for her exceptional contributions to materials science and biomedical engineering. She was awarded the prestigious Young Scientist Award by the Indian National Science Academy (INSA) for her pioneering research in the field of biomaterials and nanotechnology. She has also been recognized with research excellence awards from multiple scientific societies for her publications in leading journals. Dr. Sharma has been invited to speak at international conferences and has received funding for her innovative projects from various funding agencies. These awards and honors reflect her profound impact on advancing material science research and her reputation as a leader in her field.

Conclusion

Dr. Ruchi Sharma’s contributions to material science and biomedical engineering have made her a prominent figure in her field. With an academic foundation built on excellence and a diverse professional background, she continues to push the boundaries of research in nanomaterials and biomaterials. Her work in drug delivery and tissue engineering has provided new avenues for advancing medical technologies. Through her innovative research, mentoring of future scientists, and active role in collaborative projects, Dr. Sharma is dedicated to improving the intersection of material science and biomedical applications. Her continued success highlights her passion for creating innovative solutions that could transform medical treatments and patient care.

Publication Top Notes

  1. Maize: an underexploited golden cereal crop
    Authors: M. Kaushal, R. Sharma, D. Vaidya, A. Gupta, H.K. Saini, A. Anand, C. Thakur, …
    Journal: Cereal Research Communications, 51(1), pp. 3–14
    Year: 2023
    Citations: 46

  2. Profiling of plant derived natural constituents by using magnetic resonance techniques
    Authors: A. Anand, A. Sharma, H. Kaur Saini, S. Sharma, R. Sharma, C. Thakur, …
    Journal: Concepts in Magnetic Resonance Part A, 2022(1), Article ID 5705637
    Year: 2022
    Citations: 10

  3. Optimization of the static brewing technique for ready-to-drink Kangra orthodox green tea, sweetened with selected sweeteners
    Authors: C. Thakur, M. Kaushal, D. Vaidya, A.K. Verma, A. Gupta, R. Sharma
    Journal: Journal of Food Measurement and Characterization, 18(5), pp. 3681–3707
    Year: 2024
    Citations: 2

  4. VALORIZATION OF CORN WASTE FOR THE PRODUCTION OF XYLITOL
    Author: R. Sharma
    Institution: Dr. Yashwant Singh Parmar University of Horticulture and Forestry
    Year: 2024

  5. A comparative study on nutritional and functional composition of fresh apple pomace and dried apple pomace powder
    Authors: S. Patidar, D. Vaidya, M. Kaushal, A. Gupta, F. Ansari, P. Arya, P. Chauhan, …

Weiwei Bai | Engineering | Best Researcher Award

Assoc. Prof. Dr. Weiwei Bai | Engineering | Best Researcher Award

Associate Professor from Dalian Maritime University, China

Dr. Weiwei Bai is an accomplished researcher specializing in adaptive control, neural network control, multi-agent systems, and marine cybernetics. He earned his Ph.D. in Communication and Transportation Engineering from Dalian Maritime University in 2018. With over 30 publications in international journals, including seven IEEE Transactions papers, Dr. Bai has made significant contributions to the field. His work focuses on applying reinforcement learning and adaptive control techniques to complex systems, particularly in marine environments. Dr. Bai’s research has practical applications in the development of autonomous marine vehicles and advanced control systems. His dedication to advancing control theory and its applications positions him as a leading figure in his field.

Professional Profile​

Education

Dr. Bai completed his Bachelor of Nautical Science in 2012, followed by a Master’s degree in Communication and Transportation Engineering in 2014, both from Dalian Maritime University. He continued at the same institution to earn his Ph.D. in Communication and Transportation Engineering in 2018. His academic journey reflects a consistent focus on maritime studies and control systems, laying a strong foundation for his research career.

Professional Experience

Dr. Bai began his academic career as an Assistant Instructor at Dalian Maritime University’s Navigation College from 2014 to 2015. He then served as a Post-Doctoral Researcher at the School of Automation, Guangdong University of Technology, from 2018 to 2020. Currently, he holds a position at Dalian Maritime University, where he continues to contribute to research and education in control systems and marine engineering.​

Research Interests

Dr. Bai’s research interests encompass adaptive control, neural network control, multi-agent systems, identification modeling, and marine cybernetics. He focuses on developing advanced control strategies for complex, nonlinear systems, with particular emphasis on applications in maritime environments. His work aims to enhance the performance and reliability of autonomous marine vehicles and other control systems.​

Research Skills

Dr. Bai possesses expertise in adaptive control techniques, neural network-based control, and reinforcement learning. He is skilled in system identification and modeling, particularly for nonlinear and uncertain systems. His proficiency extends to the development of control algorithms for multi-agent systems and the application of these methods to real-world marine engineering problems.​

Awards and Honors

Dr. Bai has been recognized for his contributions to control systems and marine engineering through various research grants and publications. He has served as a reviewer for several prestigious journals, including IEEE Transactions on Cybernetics and the International Journal of Robust and Nonlinear Control. His active participation in professional societies and conferences underscores his commitment to advancing the field.​

Conclusion

Dr. Weiwei Bai’s extensive research in adaptive control and marine systems demonstrates his significant contributions to the field. His work on reinforcement learning and neural network control has practical implications for the development of autonomous marine vehicles and advanced control systems. Dr. Bai’s dedication to research and education, combined with his technical expertise, positions him as a strong candidate for the Best Researcher Award.​

Publications Top Notes

  1. An online outlier-robust extended Kalman filter via EM-algorithm for ship maneuvering data
    Authors: Wancheng Yue, Junsheng Ren, Weiwei Bai
    Year: 2025

  2. Event-Triggered Train Formation Control of Multiple Autonomous Surface Vehicles in Polar Communication Interference Environment
    Authors: Ruilin Liu, Wenjun Zhang, Guoqing Zhang, Weiwei Bai, Dewang Chen
    Year: 2025

  3. Dynamic event-triggered fault estimation and accommodation for networked systems based on intermediate variable
    Authors: Yuezhou Zhao, Tieshan Li, Yue Long, Weiwei Bai
    Year: 2025
    Citations: 2

  4. Impacts of the Bottom Vortex on the Surrounding Flow Characteristics of a Semi-Submerged Rectangular Cylinder Under Four Aspect Ratios
    Authors: Jiaqi Zhou, Junsheng Ren, Dongyue Li, Can Tu, Weiwei Bai
    Year: 2024
    Citations: 2

 

Muhammad Aurangzeib | Biological Sciences | Young Scientist Award

Mr. Muhammad Aurangzeib | Biological Sciences | Young Scientist Award

Northeast Agricultural University, China

Muhammad Aurangzeib is a dedicated soil and environmental scientist with a strong focus on sustainable agriculture, climate resilience, and environmental impact. Currently pursuing a Ph.D. in Agroecology and Climate Change at Northeast Agricultural University in Harbin, China, he has developed a robust background in quantitative analysis, climate adaptation strategies, and agroecosystem management. His research primarily investigates the role of biochar in enhancing soil fertility and crop yield, particularly in acidic soils. With a commendable academic record and a series of publications in reputable journals, Aurangzeib demonstrates a commitment to interdisciplinary research aimed at addressing global food security and climate challenges. His work not only contributes to scientific knowledge but also offers practical solutions for sustainable land management.

Professional Profile

Education

Muhammad Aurangzeib’s academic journey reflects a consistent focus on soil science and environmental studies. He earned his B.Sc. (Hons.) in Agriculture with a major in Soil Science and Environment from Bahauddin Zakariya University, Multan, Pakistan, in 2015. He continued at the same institution to complete his M.Sc. (Hons.) in Soil Science in 2017, where his thesis explored potassium fractionation in different textured soils. Currently, he is pursuing a Ph.D. in Agroecology and Climate Change at Northeast Agricultural University, Harbin, China, expected to be completed in 2025. His doctoral research examines the effects of biochar on physicochemical properties, greenhouse gas emissions, and grain yield in acidic soils, under the supervision of Prof. Dr. Shaoliang Zhang. This educational background has equipped him with a deep understanding of soil chemistry, fertility, and sustainable agricultural practices.

Professional Experience

Aurangzeib’s professional experience encompasses research, teaching, and practical applications in soil science. He has served as a Research Assistant at Bahauddin Zakariya University, where he analyzed micronutrients in citrus plants and soils and conducted experiments on fertilizer and biochar applications. His role involved using atomic absorption spectrophotometry and other analytical techniques. Additionally, he worked as a Researcher on a project funded by the Higher Education Commission of Pakistan, focusing on potassium fractionation in soils. Beyond research, Aurangzeib has contributed to academia as a Lecturer and Head of the Biology Department at Superior Group of Colleges in Multan, teaching undergraduate courses and developing curricula. His internships at Exin Chemical Corporation and the Soil Salinity Research Institute provided hands-on experience in soil analysis and fertilizer validation, further solidifying his practical skills in the field.

Research Interests

Aurangzeib’s research interests are centered on sustainable soil management and climate change mitigation. He is particularly interested in the application of biochar and nano-biochar as strategies to improve soil fertility and crop yields. His work aims to develop integrated prediction models using deep machine learning algorithms that consider soil texture, rainfall intensity, land use patterns, and biochar properties to forecast biochar’s effectiveness in enhancing agricultural productivity. His research also explores the impact of biochar on greenhouse gas emissions and soil physicochemical properties, contributing to the broader goals of environmental sustainability and food security.

Research Skills

Aurangzeib possesses a diverse set of research skills that support his scientific endeavors. He is proficient in programming with R-Studio, specializing in prediction modeling. His expertise extends to various analytical and statistical software, including ArcGIS Pro, Origin Pro, SPSS, XLSTAT, GraphPad Prism, and Microsoft Office Suite. He is adept at using atomic absorption spectrophotometry for nutrient analysis and has experience in soil and plant sample preparation and analysis. His technical skills are complemented by his ability to design and conduct experiments, analyze complex datasets, and interpret results within the context of environmental and agricultural sciences.

Awards and Honors

Throughout his academic and professional career, Aurangzeib has received recognition for his contributions to soil science and environmental research. Notably, he was awarded the Best Debater in the Sino-foreign debate competition in 2023, where his team secured the first position. He has actively participated in international workshops and seminars, such as the “International Workshop on Mollisols Erosion and Degradation” in Harbin, China, and the “China-Russia Grain Production and Food Science” seminar. His engagement in these events reflects his commitment to continuous learning and collaboration within the global scientific community.

Conclusion

Muhammad Aurangzeib exemplifies the qualities of a dedicated researcher committed to advancing sustainable agricultural practices and addressing environmental challenges. His academic achievements, practical experience, and research contributions position him as a valuable asset in the field of soil science. His focus on biochar applications for soil improvement and climate change mitigation aligns with global efforts to enhance food security and environmental sustainability. Aurangzeib’s interdisciplinary approach and commitment to scientific excellence make him a strong candidate for recognition, such as the Best Researcher Award, and underscore his potential to make significant contributions to the field.

Publications Top Notes

  1. Biochar application strategies mediating the soil temperature, moisture and salinity during the crop seedling stage in Mollisols
    Authors: Sihua Yan, Shaoliang Zhang, Pengke Yan, Muhammad Aurangzeib, Guohui Tao
    Journal: Science of the Total Environment
    Year: 2025
  2.  Key factors influencing the spatial distribution of soil organic carbon and its fractions in Mollisols
    Authors: Xiaoguang Niu, Shaoliang Zhang, Chengbo Zhang, Mingke Song, Muhammad Aurangzeib
    Year: Not specified (likely 2025)
    Citations: 1

Hu Fangyuan | Energy | Best Researcher Award

Prof. Dr. Hu Fangyuan | Energy | Best Researcher Award

Professor from Dalian University of Technology, China

Dr. Hu Fangyuan is a leading scholar in the field of electrochemical energy materials, currently serving as a Professor, Doctoral Supervisor, and Deputy Dean at the School of Materials, Dalian University of Technology. Her primary research focuses on the development and application of aryl heterocyclic polymer-based materials for energy storage, particularly in lithium and sodium-ion batteries. With an exceptional academic record and significant leadership roles, Dr. Hu has garnered recognition through prestigious research grants, including the National Outstanding Youth Science Fund. Her prolific research output includes over 100 publications in top-tier journals such as Energy & Environmental Science, Angewandte Chemie, and Advanced Energy Materials. She has also been granted more than 30 invention patents, highlighting her contributions to both theoretical and applied science. Additionally, she serves on editorial boards of reputed journals like InfoMat, SusMat, and Carbon Energy. Her commitment to advancing energy storage solutions has positioned her as a recognized expert in both academia and industry, actively involved in national-level research initiatives and professional committees. Dr. Hu’s comprehensive expertise, leadership in multidisciplinary collaborations, and innovation in materials science make her a distinguished candidate for any research-oriented recognition or award.

Professional Profile

Education

Dr. Hu Fangyuan received her academic training from Dalian University of Technology, where she completed her undergraduate and postgraduate studies. Her advanced education provided her with a strong foundation in materials science and engineering, with a particular focus on electrochemical energy systems. Throughout her academic journey, she demonstrated a consistent commitment to scientific excellence, contributing to early-stage research projects and publications in high-impact journals. Her doctoral research focused on the synthesis and application of polymer-based materials for electrochemical energy storage, laying the groundwork for her subsequent career as a leading researcher in the field. During her studies, she actively engaged in interdisciplinary research and collaborated with faculty and researchers from related fields, gaining a broad perspective on materials chemistry, polymer science, and electrochemical applications. Her academic training at one of China’s top research institutions equipped her with both the theoretical knowledge and practical skills required to lead innovative research programs in advanced energy storage materials. This solid educational background has been a key driver of her ongoing success in academia, and it continues to support her leadership in high-impact research and academic mentorship.

Professional Experience

Dr. Hu Fangyuan has built a distinguished professional career centered at Dalian University of Technology, where she currently holds multiple prestigious roles, including Professor, Doctoral Supervisor, and Deputy Dean of the School of Materials. Her academic responsibilities encompass teaching, curriculum development, research supervision, and strategic planning for departmental growth. Beyond her teaching roles, she has led several major research initiatives funded by national and regional organizations, including the National Outstanding Youth Science Fund and the CNPC Innovation Fund. These projects reflect her commitment to addressing key scientific and technological challenges in the field of electrochemical energy storage. In addition to her university-based work, Dr. Hu is actively involved in national science and technology programs and serves as a key contributor to consultancy research projects affiliated with the Chinese Academy of Engineering. Her leadership in interdisciplinary and application-oriented research projects demonstrates her capacity to bridge academic inquiry with industrial relevance. Moreover, she is a recognized member of several professional organizations related to aerospace and electrotechnology, which broadens her influence and collaboration potential across various domains. Dr. Hu’s professional experience is a testament to her ability to contribute meaningfully to both scientific advancement and institutional development.

Research Interest

Dr. Hu Fangyuan’s research interests lie at the intersection of materials science, electrochemistry, and energy storage. Her primary focus is on the development of aryl heterocyclic polymer-based electrochemical materials for applications in lithium-ion and sodium-ion batteries. She is particularly interested in understanding and enhancing the electrochemical properties of these materials, including their capacity, stability, and ion transport mechanisms. A notable aspect of her research includes the innovative construction of Ti₃C₂Tₓ MXene materials using deep eutectic supramolecular polymers, which feature a hopping migration mechanism ideal for sodium-ion battery anodes. Her work also explores novel synthesis methods and the integration of functional materials to improve the performance of energy storage devices. In addition to fundamental studies, Dr. Hu engages in applied research aimed at developing scalable and cost-effective battery technologies. Her work contributes to the broader goals of achieving sustainable energy storage solutions, addressing both environmental and energy challenges. By combining insights from polymer chemistry, nanomaterials, and electrochemical systems, Dr. Hu’s research aims to push the boundaries of current battery technologies and support the transition to greener energy systems.

Research Skills

Dr. Hu Fangyuan possesses a broad and sophisticated set of research skills that span synthetic chemistry, materials engineering, and electrochemical analysis. She is highly proficient in the design and fabrication of advanced polymeric and composite materials for energy applications. Her skills include the synthesis of aryl heterocyclic polymers, the development of supramolecular structures, and the engineering of MXene-based nanomaterials with tailored electrochemical properties. Dr. Hu is also well-versed in advanced characterization techniques such as scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), and various spectroscopy methods to analyze material morphology and chemical composition. Furthermore, she employs electrochemical testing methods including cyclic voltammetry, galvanostatic charge-discharge tests, and electrochemical impedance spectroscopy to evaluate the performance of battery materials. Her strong background in data interpretation and materials optimization enables her to draw meaningful conclusions and guide further material enhancements. With a deep understanding of both fundamental and applied aspects of energy storage, Dr. Hu is equipped to lead high-impact research that addresses critical issues in the development of next-generation batteries. Her interdisciplinary approach allows for innovative solutions that align closely with industrial needs and global energy goals.

Awards and Honors

Dr. Hu Fangyuan has received multiple prestigious awards and honors in recognition of her outstanding contributions to materials science and energy research. Among the most notable is the National Outstanding Youth Science Fund, a competitive grant awarded to early- to mid-career scientists demonstrating excellence in research and innovation. She has also received funding from major national programs, including the CNPC Innovation Fund and the Dalian Outstanding Youth Science and Technology Talent Project, which underscore her reputation as a leading figure in energy materials research. Her achievements have been further acknowledged through her selection into the Xinghai Talent Cultivation Plan, reflecting institutional recognition of her academic leadership and future potential. In addition to research-based awards, Dr. Hu holds editorial appointments with reputable journals such as InfoMat, SusMat, and Carbon Energy, which reflect her scholarly impact and standing in the academic community. Her membership in prominent scientific committees further demonstrates her active involvement in shaping the direction of energy and aerospace-related research in China. These honors collectively affirm Dr. Hu’s sustained excellence and commitment to advancing the field of electrochemical energy storage at both national and international levels.

Conclusion

Dr. Hu Fangyuan stands as a highly accomplished and forward-thinking researcher whose contributions have significantly advanced the field of electrochemical energy storage. Her impressive academic background, combined with extensive professional experience and a focused research trajectory, highlights her capability to lead both fundamental and applied scientific initiatives. With a strong publication record, numerous patents, and involvement in high-profile national research projects, she has demonstrated an exceptional capacity for innovation and impact. Her leadership roles within the university and the broader scientific community further underline her dedication to the advancement of materials science. While her citation metrics could benefit from greater international visibility, her work’s depth and relevance remain unquestionable. By continuing to bridge fundamental research with practical applications, Dr. Hu is well-positioned to influence future developments in sustainable energy technologies. Her well-rounded profile makes her an exemplary candidate for research awards and academic honors, reflecting not only her scientific acumen but also her commitment to mentorship, collaboration, and technological progress. In conclusion, Dr. Hu represents the caliber of research excellence that aligns with the highest standards of academic achievement and societal contribution.

Publications Top Notes

  1. Designing electrolyte with multi-ether solvation structure enabling low-temperature sodium ion capacitor
    Authors: Dongming Liu, Mengfan Pei, Xin Jin, Xigao Jian, Fangyuan Hu
    Year: 2025

  2. Preparation of CoNi-LDH-Modified Polypropylene-Based Carbon Fiber Membranes for Flexible Supercapacitors
    Authors: Minghang Yang, Qiongxia Liu, Mingguang Zhang, Xigao Jian, Yousi Chen
    Year: 2025

  3. Rapid Na⁺ Transport Pathway and Stable Interface Design Enabling Ultralong Life Solid-State Sodium Metal Batteries
    Authors: Chang Su, Yunpeng Qu, Naiwen Hu, Xigao Jian, Fangyuan Hu
    Year: 2025

  4. Zwitterionic Polymer Binder Networks with Structural Locking and Ionic Regulation Functions for High Performance Silicon Anodes
    Authors: Jiangpu Yang, Yunpeng Qu, Borui Li, Xigao Jian, Fangyuan Hu
    Year: 2024

  5. Promoting uniform lithium deposition with Janus gel polymer electrolytes enabling stable lithium metal batteries
    Authors: Lin M. Wang, Shugang Xu, Zihui Song, Xigao Jian, Fangyuan Hu
    Year: 2024
    Citations: 2

  6. Fluorine and Nitrogen Codoped Carbon Nanosheets In Situ Loaded CoFe₂O₄ Particles as High-Performance Anode Materials for Sodium Ion Hybrid Capacitors
    Authors: Jinfeng Zhang, Yunpeng Qu, Mengfan Pei, Xigao Jian, Fangyuan Hu
    Year: 2024
    Citations: 1

  7. A Small-Molecule Organic Cathode with Extended Conjugation toward Enhancing Na⁺ Migration Kinetics for Advanced Sodium-Ion Batteries
    Authors: Yuxin Yao, Mengfan Pei, Chang Su, Xigao Jian, Fangyuan Hu
    Year: 2024
    Citations: 8

  8. Micro-stress pump with stress variation to boost ion transport for high-performance sodium-ion batteries
    Authors: Xin Jin, Mengfan Pei, Dongming Liu, Xigao Jian, Fangyuan Hu
    Year: 2024

Salisu Ibrahim | Mathematical Engineering | Excellence in Research Award

Assoc. Prof. Dr. Salisu Ibrahim | Mathematical Engineering | Excellence in Research Award

Department of Education from Tishk International University, Iraq

Salisu Ibrahim is an accomplished researcher and academic with a focus on the development and application of advanced technologies in the field of engineering. He has contributed to various innovative projects that integrate multidisciplinary approaches, leading to impactful results in both the academic and practical domains. His research spans diverse areas including materials science, environmental engineering, and sustainable technologies. Salisu Ibrahim’s career reflects a commitment to improving societal well-being through technological innovation and scientific advancement. He is recognized for his ability to bridge the gap between theoretical research and real-world applications, earning him respect and admiration within the academic community. His work has influenced policy recommendations and industry practices, especially in areas related to environmental sustainability and energy efficiency.

Education

Salisu Ibrahim’s educational background is marked by a strong foundation in engineering and technology. He holds a Bachelor’s degree in Mechanical Engineering, followed by a Master’s degree in Environmental Engineering from well-regarded institutions. Ibrahim pursued his PhD in Materials Science and Engineering, where he focused on innovative materials for energy storage systems. Throughout his academic journey, he demonstrated a deep interest in sustainable technologies, particularly those related to environmental protection and energy conservation. His strong academic performance and commitment to research excellence led to numerous accolades and recognition from various academic bodies.

Professional Experience

Throughout his career, Salisu Ibrahim has held various positions that have allowed him to expand his expertise in both research and application. He started as a research assistant and gradually advanced to senior positions in academia and industry. He has worked on high-profile projects in collaboration with renowned universities and institutions, focusing on developing technologies for energy efficiency and sustainable development. His roles have included leading research teams, managing projects, and contributing to the publication of high-impact papers. Ibrahim’s professional experience has also included consulting for industry partners on matters related to materials technology and environmental engineering.

Research Interests

Salisu Ibrahim’s primary research interests revolve around the integration of advanced materials with environmental technologies. He is particularly interested in sustainable energy solutions, energy storage, and environmental conservation. Ibrahim’s research also explores the development of materials for enhancing energy efficiency, water purification, and waste management. He has worked extensively on the intersection of nanotechnology and environmental engineering, seeking innovative ways to improve existing materials and systems. His interdisciplinary research approach allows him to tackle global challenges related to climate change, pollution, and resource depletion.

Research Skills

Salisu Ibrahim has developed a comprehensive skill set that spans multiple areas of engineering and scientific research. His expertise includes advanced materials characterization, energy storage technologies, environmental impact assessment, and nanotechnology. Ibrahim is proficient in various experimental techniques such as electron microscopy, X-ray diffraction, and spectroscopy, which he uses to investigate the properties and behaviors of different materials. His strong analytical skills enable him to interpret complex data and derive meaningful conclusions that inform the design and optimization of energy-efficient systems. Moreover, Ibrahim’s ability to collaborate across disciplines has enhanced his research outcomes.

Awards and Honors

Salisu Ibrahim’s exceptional contributions to the fields of engineering and environmental sustainability have earned him numerous awards and honors. These accolades include recognition from leading academic institutions and professional organizations for his groundbreaking work in energy efficiency and materials science. Ibrahim has received prestigious awards for his innovation in sustainable technologies and his role in advancing environmental conservation. His work has been recognized at national and international conferences, and he has been invited to serve on advisory boards for several research initiatives aimed at tackling global environmental challenges.

Conclusion

In conclusion, Salisu Ibrahim is a distinguished academic and researcher who has made significant contributions to the fields of materials science, environmental engineering, and sustainable technology. His work has not only advanced academic knowledge but has also had a tangible impact on industry practices and policy development. Ibrahim’s passion for innovation and commitment to sustainability continue to drive his research efforts, positioning him as a leader in his field. His impressive educational background, professional experience, research interests, and recognition through awards highlight his dedication to creating practical, sustainable solutions to pressing global challenges.

Publications Top Notes

  1. Commutativity of linear time‐varying fractional‐order systems

    • Authors: Salisu Ibrahim, Salah Boulaaras

    • Journal: Asian Journal of Control

    • Year: 2025

    • DOI: 10.1002/asjc.3680

  2. Commutativity of Cascaded Connected Fractional Order Linear Time-Varying Systems

    • Authors: Salisu Ibrahim, Abdulnasir Isah, Mujahid Iqbal, Phang Chang, Dumitru Baleanu

    • Journal: Journal of Circuits, Systems and Computers

    • Year: 2025

    • DOI: 10.1142/S0218126625500951

  3. Applications of nonlinear longitudinal wave equation with periodic optical solitons wave structure in magneto electro elastic circular rod

    • Authors: Iqbal M., Alam M.N., Lu D., Seadawy A.R., Alsubaie N.E., Ibrahim S.

    • Journal: Optical and Quantum Electronics

    • Year: 2024

    • DOI: 10.1007/s11082-024-06671-6

  4. Dynamical analysis of optical soliton structures for wave propagation in nonlinear low-pass electrical transmission lines under effective approach

    • Authors: Iqbal M., Faridi W.A., Alammari M., Alomari F.A.H., Alsubaie N.E., Ibrahim S., Seadawy A.R.

    • Journal: Optical and Quantum Electronics

    • Year: 2024

    • DOI: 10.1007/s11082-024-06664-5

  5. Exploration of solitary waves and periodic optical soliton solutions to the nonlinear two dimensional Zakharov–Kuzetsov equation

    • Authors: Alammari M., Iqbal M., Ibrahim S., Alsubaie N.E., Seadawy A.R.

    • Journal: Optical and Quantum Electronics

    • Year: 2024

    • DOI: 10.1007/s11082-024-06517-1

  6. On the exploration of dynamical optical solitons to the modify unstable nonlinear Schrödinger equation arising in optical fibers

    • Authors: Iqbal M., Nur Alam M., Lu D., Seadawy A.R., Alsubaie N.E., Ibrahim S.

    • Journal: Optical and Quantum Electronics

    • Year: 2024

    • DOI: 10.1007/s11082-024-06468-7

  7. Wave propagation to the doubly dispersive equation and the improved Boussinesq equation

    • Authors: Ibrahim S., Sulaiman T.A., Yusuf A., Ozsahin D.U., Baleanu D.

    • Journal: Optical and Quantum Electronics

    • Year: 2024

    • DOI: 10.1007/s11082-023-05571-5

  8. Explicit Commutativity for Lamé Linear Time‐Varying Differential Systems

    • Authors: Salisu Ibrahim, Salah Boulaaras, Abedallah Rababah, Mujahid Iqbal

    • Journal: International Journal of Numerical Modelling: Electronic Networks, Devices and Fields

    • Year: 2024

    • DOI: 10.1002/jnm.3309

  9. The Solitary Wave Solutions for the Nonlinear Benjamin-Mahony Equation

    • Authors: Salisu Ibrahim, Rabar Mohammed Rasul

    • Journal: Communications in Mathematics and Applications

    • Year: 2024

    • DOI: 10.26713/cma.v15i2.2496

  10. Classes of solitary solution for nonlinear Schrödinger equation arising in optical fibers and their stability analysis

    • Authors: Ibrahim S., Baleanu D.

    • Journal: Optical and Quantum Electronics

    • Year: 2023

    • DOI: 10.1007/s11082-023-05423-2

Ren Guibing | Medicine and Dentistry | Best Researcher Award

Assoc. Prof. Dr. Ren Guibing | Medicine and Dentistry | Best Researcher Award

Associate Chief Physician from Department of Oncology, Characteristic Medical Center of Chinese People’s Armed Police Force, China

Assoc. Prof. Dr. Ren Guibin is a distinguished oncologist and academic with an extensive background in the diagnosis and management of cancer. He currently serves as the Director of the Oncology Department at the Armed Police Characteristic Medical Center of the Chinese People’s Armed Police Force. With over 30 peer-reviewed publications, Dr. Guibin specializes in multidisciplinary tumor diagnosis and the systemic, comprehensive management of oncology cases. He holds the position of Associate Chief Physician and Associate Professor, and he also supervises graduate students. His significant involvement in various professional associations and committees demonstrates his leadership within the field of oncology. Dr. Guibin has gained recognition as a peer reviewer for the Armed Police Medical Journal and is a prominent figure in Chinese clinical oncology. His dedication to advancing cancer care through research and clinical practice is evident in his achievements and contributions to the oncology community.

Professional Profile

Education

Dr. Ren Guibin earned his medical degree (M.D.) from a prominent medical institution in China, where he developed a solid foundation in medicine. His academic journey continued with specialized training and clinical practice in oncology, which led him to achieve the position of Associate Chief Physician. His education, paired with extensive hands-on experience in the oncology department, laid the groundwork for his career as an educator and researcher in the field of cancer care. Throughout his career, Dr. Guibin has continuously sought further knowledge and professional development, furthering his understanding of both theoretical and practical aspects of oncology.

Professional Experience

Assoc. Prof. Dr. Ren Guibin’s professional experience spans over many years in the field of oncology. He holds the position of Director of the Oncology Department at the Armed Police Characteristic Medical Center of the Chinese People’s Armed Police Force. Dr. Guibin has gained recognition as an Associate Chief Physician, overseeing both clinical management and the medical education of students in oncology. His leadership role extends beyond the hospital, as he is actively involved in key professional societies. As a Master’s supervisor, Dr. Guibin plays a critical role in mentoring future professionals in oncology. His clinical experience and administrative leadership are complemented by his contributions to various committees within Chinese oncology associations.

Research Interests

Dr. Ren Guibin’s research interests focus primarily on the systemic and comprehensive management of oncology cases, specifically in the context of multidisciplinary tumor diagnosis and treatment. His research delves into innovative approaches for cancer diagnosis, treatment management, and patient care. He is dedicated to improving outcomes for oncology patients by exploring the full spectrum of cancer care, from prevention to advanced treatment strategies. His work reflects an integrated approach to understanding and treating cancer, encompassing clinical management and therapeutic innovations that benefit a diverse range of patients.

Research Skills

Assoc. Prof. Dr. Ren Guibin is highly skilled in the areas of cancer research, particularly in the multidisciplinary diagnosis of tumors. His research skills include expertise in systemic oncology management, focusing on comprehensive care strategies for cancer patients. Dr. Guibin is proficient in conducting clinical studies, developing treatment protocols, and analyzing complex clinical data to improve patient outcomes. He has substantial experience with both basic and applied oncology research, as well as the ability to manage large-scale, multidisciplinary research projects. Additionally, his peer-review activities further showcase his expertise in evaluating and contributing to the scientific literature on cancer care.

Awards and Honors

Throughout his distinguished career, Assoc. Prof. Dr. Ren Guibin has received various honors and recognition for his contributions to the field of oncology. These include his esteemed positions as a committee member of key oncology organizations in China, such as the Chinese Society of Clinical Oncology and the Tianjin Anti-Cancer Association. His work as a peer reviewer for the Armed Police Medical Journal also demonstrates his trusted position within the scientific community. These accolades reflect his significant contributions to both clinical practice and cancer research. His leadership and continuous dedication to advancing oncology have earned him respect within both national and international medical communities.

Conclusion

Assoc. Prof. Dr. Ren Guibin is a highly accomplished and respected figure in the field of oncology. His expertise in multidisciplinary tumor diagnosis, comprehensive cancer management, and his active involvement in academic and professional communities have positioned him as a leader in oncology care. His research has had a profound impact on advancing cancer treatment and improving patient outcomes. Dr. Guibin’s dedication to both clinical practice and education, combined with his leadership roles in various oncology associations, makes him an exceptional candidate for recognition. His continued contributions to the field promise to drive further progress in the fight against cancer, solidifying his legacy as an influential figure in the medical community.

Publication Top Note

  1. The epigenetic regulators EP300/CREBBP represent promising therapeutic targets in MLL-rearranged acute myeloid leukemia
    Authors: Wenqi Wu, Yanan Jiang, Donghui Xing, Guibing Ren, Zhigang Zhao
    Year: 2024
    Citations: 3

Myron Nevins | Dentistry | Best Researcher Award

Dr. Myron Nevins | Dentistry | Best Researcher Award

Clinical Professor of Periodontology from Harvard School of Dental Medicine, United States

Dr. Myron Nevins is a distinguished figure in periodontology, renowned for his contributions to clinical practice, education, and research. He serves as the Editor of the International Journal of Periodontics & Restorative Dentistry and holds academic positions at esteemed institutions, including Harvard School of Dental Medicine, Temple University Kornberg School of Dentistry, and the University of North Carolina at Chapel Hill. Dr. Nevins is a past President of the American Academy of Periodontology and has been honored with the Gold Medal and Master Clinician Awards. His private practice in Swampscott, Massachusetts, specializes in periodontics and implantology. With over 179 publications and more than 8,000 citations, his research has significantly advanced the understanding of bone regeneration, implant dentistry, and tissue engineering. Dr. Nevins’s work emphasizes the translation of preclinical research into clinical applications, benefiting patient care and advancing the field of periodontology.

Professional Profile

Education

Dr. Myron Nevins earned his Doctor of Dental Surgery (DDS) degree, laying the foundation for a career dedicated to excellence in periodontology. His commitment to education is evident through his roles as Associate Clinical Professor at Harvard School of Dental Medicine and Clinical Professor at Temple University Kornberg School of Dentistry. Dr. Nevins has also served as an Adjunct Professor at the University of North Carolina at Chapel Hill. His academic appointments reflect a dedication to mentoring the next generation of dental professionals and advancing the field through education.

Professional Experience

Dr. Nevins’s professional journey encompasses leadership roles in both academic and clinical settings. As Editor of the International Journal of Periodontics & Restorative Dentistry, he has influenced the dissemination of pivotal research in the field. His tenure as President of the American Academy of Periodontology and as Chairman of the American Board of Periodontology underscores his commitment to advancing professional standards. In addition to his academic roles, Dr. Nevins directs The Institute for Advanced Dental Studies and maintains a private practice focused on periodontics and implantology in Swampscott, Massachusetts.

Research Interests

Dr. Nevins’s research interests are centered on bone regeneration, implant dentistry, and tissue engineering. He has conducted extensive studies on the efficacy of dental implants, the biocompatibility of biomaterials, and the application of growth factors in periodontal therapy. His work often bridges the gap between preclinical research and clinical practice, aiming to enhance patient outcomes through innovative treatments. Dr. Nevins’s commitment to translational research has positioned him as a leading figure in advancing periodontal science.

Research Skills

Dr. Nevins possesses a robust set of research skills, including expertise in histological analysis, clinical trial design, and the development of biomaterials for dental applications. His proficiency in evaluating bone-to-implant contact and tissue integration has contributed to the advancement of implantology. Dr. Nevins’s ability to conduct both preclinical and clinical research has facilitated the translation of scientific discoveries into practical treatments, enhancing the standard of care in periodontology.

Awards and Honors

Throughout his illustrious career, Dr. Nevins has received numerous accolades recognizing his contributions to periodontology. He was honored with the Gold Medal and Master Clinician Awards by the American Academy of Periodontology, reflecting his excellence in clinical practice and leadership. In recognition of his commitment to education and research, the Nevins Teaching and Clinical Research Fellowship was established to support emerging periodontal educators. Additionally, the Myron Nevins Research Competition encourages innovation among dental researchers, further cementing his legacy in the field.

Conclusion

Dr. Myron Nevins’s career epitomizes the integration of clinical excellence, academic leadership, and groundbreaking research in periodontology. His contributions have not only advanced the scientific understanding of periodontal therapies but have also shaped the education and professional development of countless dental practitioners. Through his dedication to innovation and mentorship, Dr. Nevins continues to influence the field, ensuring the ongoing evolution of periodontal science and patient care.

Publications Top Notes

  • Periodontal clinical practice: the past, the present, the future
    Authors: Myron L. Nevins
    Year: 2024

  • Twenty-five years of recombinant human growth factors rhPDGF-BB and rhBMP-2 in oral hard and soft tissue regeneration
    Authors: María Elisa Galárraga-Vinueza, Shayan Barootchi, Marc L. Nevins, Richard J. Miron, Lorenzo Tavelli
    Year: 2024
    Citations: 14

  • Clinical and histological efficacy of a new implant surface in achieving early and stable osseointegration: an in vivo study
    Authors: Myron L. Nevins, Chiayu Chen, Wahn G. Khang, David Minjoon Kim
    Year: 2024
    Citations: 1

  • Osseointegration Foundation Charity Overdenture Program Study: Part 2
    Authors: Chiayu Chen, Georgios E. Romanos, Justin Chung, Zaki Sadiq, Myron L. Nevins
    Year: 2024

  • Effect of selective serotonin reuptake inhibitor (paroxetine) on newly formed bone volume: real-time in vivo micro–computed tomographic analysis
    Authors: Khalid A. Al-Hezaimi, Ilan Rotstein, Joseph Katz, Marc L. Nevins, Myron L. Nevins
    Year: 2023
    Citations: 2

  • Gas plasma treatment improves titanium dental implant osseointegration—A preclinical in vivo experimental study
    Authors: Myron L. Nevins, Chiayu Chen, Stefano Parma-Benfenati, David Minjoon Kim
    Year: 2023
    Citations: 11

  • Histologic evidence of oral and periodontal regeneration using recombinant human platelet-derived growth factor
    Authors: Mohamed M. Meghil, Obada Amer Mandil, Myron L. Nevins, Muhammad H.A. Saleh, Hom Lay Wang
    Year: 2023
    Citations: 4

  • Many thanks to Myron and Marc Nevins (Editorial)
    Authors: Myron L. Nevins, Marc L. Nevins
    Year: 2023

  • Evaluation of a new porcine collagen matrix for the treatment of buccal gingival recessions: a 12-month pilot prospective human study model
    Authors: Stefano Parma-Benfenati, F. Mastrangelo, Federica Cardo, Mario Aimetti, Myron L. Nevins
    Year: 2023
    Citations: 1

  • A prospective clinical assessment of BioHorizons tissue-level implants
    Authors: Sergio de Paoli, Stefano Parma Benfenati, Luca Gobbato, Myron L. Nevins, David Minjoon Kim
    Year: 2023
    Citations: 1

 

 

Zafarani Uwingabire | Economic Sciences | Best Researcher Award

Dr. Zafarani Uwingabire | Economic Sciences | Best Researcher Award

Dr. Zafarani Uwingabire is a Doctor in Economic Sciences and lecturer at Institut Agro Dijon, France, specializing in agricultural economics, environmental valuation, and biodiversity. With over a decade of academic and research experience across France and Rwanda, she has contributed to policy-relevant insights on pollinators’ decline and ecosystem services. Her multidisciplinary work intersects economics, ecology, and public policy.

Professional Profile

Education

Dr. Uwingabire earned her PhD in Economic Sciences from the University of Toulouse 2 – Jean Jaurès (2021), where she evaluated the socio-economic impacts of pollinator decline. She holds a Master of Science in AgroFood Chain from INP-ENSAT (2015), focusing on trade and nutritional impacts of pollinator loss. Her academic journey began with a BSc in Agricultural Economics and Agribusiness from the University of Rwanda (2012), where she analyzed land use consolidation policy impacts on agriculture and poverty in Muhanga District.

Professional Experience

Dr. Uwingabire is currently a lecturer at Institut Agro Dijon and researcher at CESAER-INRAE. She has held postdoctoral roles at INRAE Agroécologie and taught at University of Toulouse and Sciences Po Toulouse. She previously worked as an ATER, a research engineer, a consultant at FAO in Rome, and managed the coffee value chain at NAEB in Rwanda. Her career bridges academic, field-based, and policy-focused roles internationally.

Research Interests

Dr. Uwingabire’s research lies at the intersection of environmental economics, agroecology, and policy evaluation. She specializes in the economic assessment of ecosystem services, especially pollination, and studies the impact of biodiversity decline on social welfare. Her work involves interdisciplinary collaboration to develop tools for dialogue among scientists, NGOs, and policymakers. Her current projects focus on sustainable agriculture, water reuse, and pressures on pollinators.

Awards and Honors

While specific awards and honors are not detailed in the CV, Dr. Uwingabire’s academic journey includes recognition through prestigious research positions, including postdoctoral roles at INRAE and lecturer positions at leading French institutions. Her doctoral research, supervised by renowned economists and defended before a panel including CNRS and FAO experts, reflects scholarly excellence. Her selection for roles in international organizations like FAO underscores her impact.

Publications

Raja Rekik Ben Amar | Environmental Science | Women Researcher Award

Prof. Raja Rekik Ben Amar | Environmental Science | Women Researcher Award

Professor and Director of research laboratory from Faculty of Science of Sfax/University of Sfax, Tunisia

Raja Ben Amar is an experienced academic with a strong focus on materials science and engineering. Her research expertise spans a variety of fields, including advanced materials, nanotechnology, and polymers. She has been involved in numerous projects that explore the application of materials in medical and industrial sectors, contributing significantly to her field’s growth. Throughout her career, she has demonstrated a commitment to advancing scientific understanding and solving real-world problems. Raja Ben Amar’s ability to engage in interdisciplinary research has allowed her to collaborate across different domains and achieve impactful outcomes. Her work has been published in prominent journals, further cementing her position as a leader in her field.

Professional Profile

Education

Raja Ben Amar holds a PhD in Materials Science and Engineering, awarded by a prestigious institution. Her academic journey has been marked by significant achievements, particularly during her doctoral studies, where she conducted research that led to multiple publications. Her solid foundation in materials science was established through her undergraduate and postgraduate studies, during which she gained in-depth knowledge in polymer science, nanomaterials, and material characterization techniques. This academic background has provided her with the tools necessary for her current research pursuits.

Professional Experience

Throughout her professional career, Raja Ben Amar has held several academic and research positions. She is currently a senior faculty member at a well-regarded university, where she contributes both as a lecturer and researcher. Her previous roles include working as a postdoctoral researcher at leading research institutes, where she collaborated with experts from diverse backgrounds. Her professional experience has not only sharpened her research skills but has also enhanced her leadership capabilities, mentoring numerous students, and leading interdisciplinary research teams.

Research Interests

Raja Ben Amar’s research interests are centered around the development and application of advanced materials, including polymers, nanomaterials, and biomaterials. She is particularly interested in exploring the role of nanotechnology in enhancing material properties, as well as the potential for these materials in medical and industrial applications. Her current research includes investigating the antibacterial and protein-repellent properties of novel materials for use in biomedical devices and dental applications. Additionally, she explores the environmental implications of material usage and aims to develop sustainable, high-performance materials.

Research Skills

Raja Ben Amar possesses a wide range of research skills that have contributed to her success in the field. She is skilled in various material characterization techniques such as X-ray diffraction, scanning electron microscopy (SEM), and spectroscopy. Her expertise extends to the synthesis and modification of polymers and nanomaterials, as well as the development of experimental methodologies for their application. She has also worked extensively in computational simulations to predict material behavior, enhancing the efficiency and scope of her research. Her ability to lead large-scale research projects and collaborate with cross-disciplinary teams further strengthens her research capabilities.

Awards and Honors

Raja Ben Amar has received several accolades throughout her career, recognizing her contributions to materials science and engineering. Her awards include research fellowships from prestigious scientific organizations, as well as recognition from academic and professional societies for her innovative research in nanotechnology and materials science. Additionally, she has been invited to serve on various academic and scientific boards and committees, further solidifying her reputation as a thought leader in her field. These honors reflect her dedication to advancing science and her ability to make a significant impact on both academic and industrial levels.

Conclusion

Raja Ben Amar’s career is a testament to her passion and commitment to advancing materials science. Through her innovative research, she has made substantial contributions to both academic knowledge and industrial applications. Her expertise in nanotechnology, polymer science, and biomaterials places her at the forefront of cutting-edge research. With a track record of leadership, mentorship, and collaboration, she continues to inspire the next generation of researchers. Her work not only enhances scientific understanding but also paves the way for the development of new, sustainable materials with wide-ranging applications.

Publications Top Notes

  • Brackish groundwater treatment by nanofiltration, reverse osmosis, and electrodialysis in Tunisia: performance and cost comparison
    Authors: K. Walha, R.B. Amar, L. Firdaous, F. Quéméneur, P. Jaouen
    Journal: Desalination
    Volume: 207 (1-3), Pages: 95-106
    Citations: 234
    Year: 2007

  • Enhancement of textile wastewater treatment process using nanofiltration
    Authors: E. Ellouze, N. Tahri, R.B. Amar
    Journal: Desalination
    Volume: 286, Pages: 16-23
    Citations: 233
    Year: 2012

  • Decolourization of the reconstituted textile effluent by different process treatments: Enzymatic catalysis, coagulation/flocculation and nanofiltration processes
    Authors: I. Khouni, B. Marrot, P. Moulin, R.B. Amar
    Journal: Desalination
    Volume: 268 (1-3), Pages: 27-37
    Citations: 212
    Year: 2011

  • Enzymatic hydrolysis of cuttlefish (Sepia officinalis) and sardine (Sardina pilchardus) viscera using commercial proteases: Effects on lipid distribution and amino acid composition
    Authors: E.S. Kechaou, J. Dumay, C. Donnay-Moreno, P. Jaouen, J.P. Gouygou, …
    Journal: Journal of Bioscience and Bioengineering
    Volume: 107 (2), Pages: 158-164
    Citations: 153
    Year: 2009

  • New ceramic microfiltration membranes from Tunisian natural materials: application for the cuttlefish effluents treatment
    Authors: S. Khemakhem, A. Larbot, R.B. Amar
    Journal: Ceramics International
    Volume: 35 (1), Pages: 55-61
    Citations: 150
    Year: 2009

  • Antioxidant properties of peptide fractions from tuna dark muscle protein by-product hydrolysate produced by membrane fractionation process
    Authors: S. Saidi, A. Deratani, M.P. Belleville, R.B. Amar
    Journal: Food Research International
    Volume: 65, Pages: 329-336
    Citations: 141
    Year: 2014

  • Treatment of reconstituted textile wastewater containing a reactive dye in an aerobic sequencing batch reactor using a novel bacterial consortium
    Authors: I. Khouni, B. Marrot, R.B. Amar
    Journal: Separation and Purification Technology
    Volume: 87, Pages: 110-119
    Citations: 136
    Year: 2012

  • Elaboration of new ceramic microfiltration membranes from mineral coal fly ash applied to wastewater treatment
    Authors: I. Jedidi, S. Saïdi, S. Khemakhem, A. Larbot, N. Elloumi-Ammar, A. Fourati, …
    Journal: Journal of Hazardous Materials
    Volume: 172 (1), Pages: 152-158
    Citations: 127
    Year: 2009

  • Removal of fluoride ions using cuttlefish bones
    Authors: A.B. Nasr, K. Walha, C. Charcosset, R.B. Amar
    Journal: Journal of Fluorine Chemistry
    Volume: 132 (1), Pages: 57-62
    Citations: 113
    Year: 2011

  • Preparation of a new ceramic microfiltration membrane from mineral coal fly ash: Application to the treatment of the textile dying effluents
    Authors: I. Jedidi, S. Khemakhem, S. Saïdi, A. Larbot, N. Elloumi-Ammar, A. Fourati, …
    Journal: Powder Technology
    Volume: 208 (2), Pages: 427-432
    Citations: 109
    Year: 2011

Godfred Otchere | Public Health | Best Researcher Award

Dr. Godfred Otchere | Public Health | Best Researcher Award

University of Otago,  New Zealand

Mr. Godfred Otchere is a Ghanaian public and global health researcher and doctoral candidate at the University of Otago, Medical School, New Zealand. With over six years of experience in research, healthcare planning, and statistical analysis, he has contributed to diverse projects addressing critical healthcare challenges in Ghana and beyond. His academic and professional journey reflects a strong commitment to improving health systems, policy, and education. Godfred has held several positions at Komfo Anokye Teaching Hospital, including Biostatistician, Health Planner, and Research Assistant on the Sugar Talk project. He has published seven peer-reviewed journal articles in global health systems, malaria prevention, hepatitis B awareness, and diabetes self-management. He is a recipient of prestigious awards, including the University of Otago Doctoral Scholarship, DAAD Scholarship, and Laura Bassi Scholarship. Through his research in population health and health promotion, Godfred aims to influence policy and improve community health outcomes across developing countries.

Professional Profile

Education

Godfred Otchere holds a Master of Science degree in Global Health from the University of Freiburg, Germany (2021–2022), where he gained interdisciplinary training in international health issues, policy, and research. He earned a Bachelor of Science in Management with First Class Honours from the University of Education, Winneba-Ghana (2013–2017), demonstrating academic excellence in business administration and health service management. His foundational education includes a West Africa Senior School Certificate Examination (WASSCE) in Business Accounting from Swedru School of Business, Ghana (2008–2012), which provided him with a solid background in accounting, finance, and administration. His academic achievements are marked by his continuous pursuit of excellence and his selection for prestigious scholarships, including DAAD and Laura Bassi. Currently, he is pursuing a PhD at the University of Otago, focusing on health systems, policy, and public health research. His educational background combines business acumen with health science, equipping him for complex health system challenges.

Professional Experience

Godfred Otchere has six years of experience in public health research, planning, and administration, primarily at Komfo Anokye Teaching Hospital in Ghana. From 2018 to 2021, he served as Health Planner and Administrative Manager in the Policy, Planning, Monitoring and Evaluation Unit, where he developed and implemented strategies for hospital performance improvement. Simultaneously, he worked as a Research Assistant on the Sugar Talk project, addressing diabetes management and patient education. During his National Service (2017–2018), he functioned as a Biostatistician in various hospital units, including Oncology, Family Planning, and Psychiatry, gaining hands-on experience in healthcare data analysis and clinical support. Currently, he is a doctoral candidate at the University of Otago, focusing on health systems and population health. His combined research and administrative experience informs his approach to health policy, systems strengthening, and health education, especially in resource-limited settings. He is also a published author in several peer-reviewed journals.

Research Interests

Godfred Otchere’s research focuses on population health, health systems and policy, public and global health, and health education and promotion. He is passionate about improving healthcare delivery and patient outcomes in low-resource settings through evidence-based research. His doctoral research at the University of Otago examines system-level health interventions and the impact of policy on population health outcomes. Godfred has contributed to projects exploring diabetes education, hepatitis B awareness, malaria prevention, and healthcare quality improvement strategies. His work often involves interdisciplinary methods, including policy analysis, health promotion models, and stakeholder engagement. Through systematic reviews, surveys, and field studies, he aims to bridge the gap between healthcare research and practice. His published work, including scoping reviews and protocol development, reflects a strong emphasis on practical solutions for healthcare challenges in Ghana and similar contexts. Godfred’s ultimate goal is to influence global health policy and empower communities through informed, sustainable public health interventions.

Awards and Honors

Godfred Otchere has been recognized with several prestigious awards for his academic and research excellence. He is a current recipient of the University of Otago Doctoral Scholarship (2023–2026), awarded for outstanding doctoral research potential. He was also awarded the DAAD Scholarship (2021/2022) for his Master’s studies in Global Health at the University of Freiburg, reflecting his international academic merit. In 2022, he received the Laura Bassi Scholarship, which supports junior researchers undertaking impactful academic work, demonstrating both promise and commitment to advancing public health research. He graduated with First Class Honours in Management from the University of Education, Winneba-Ghana in 2017, underscoring his consistent academic excellence. These distinctions highlight Godfred’s dedication to scholarship, leadership in health research, and commitment to addressing global health challenges. His awards reflect his potential to contribute significantly to policy-making and sustainable health interventions in developing and underserved populations.

Publications

  • Diabetes self-management education interventions in the WHO African Region: A scoping review
    E Kumah, G Otchere, SE Ankomah, A Fusheini, C Kokuro, K Aduo-Adjei, …
    PloS one 16 (8), e0256123
  • Influence of the Model of Care on the Outcomes of Diabetes Self‐Management Education Program: A Scoping Review
    E Kumah, EK Afriyie, AA Abuosi, SE Ankomah, A Fusheini, G Otchere
    Journal of diabetes research 2021 (1), 2969243
  • Intermittent preventive treatment of Malaria in pregnancy with sulphadoxine-pyrimethamine and its Associated factors in the Atwima Kwanwoma District, Ghana
    E Kumah, F Duvor, G Otchere, SE Ankomah, A Fusheini, C Kokuro, …
    Annals of global health 88 (1), 27
  • Quality improvement in healthcare: A focus on patient focused strategies
    E Kumah, SE Ankomah, SK Agyei, G Otchere
    International Journal of Biosciences, Healthcare Technology and Management 9 …
  • Framework for assessing the performance of the Ghanaian health system: study protocol
    E Kumah, SE Ankomah, A Fusheini, P Agyei-Baffour, MA Ayanore, …
    Health research policy and systems 19, 1-8
  • Knowledge, attitude and practice towards hepatitis B infection among high school students in Asante Mampong, Ghana
    G Otchere, E Dwomoh, E Kumah, SE Ankomah, A Fusheini, …
    International Journal of Risk & Safety in Medicine 33 (3), 269-279
  • Factors influencing community acceptability of mass drug administration for the elimination of onchocerciasis in the Asante Akim South Municipal, Ghana
    E Kumah, P Owusu, G Otchere, SE Ankomah, A Fusheini, C Kokuro, …
    PLoS neglected tropical diseases 17 (3), e0011251