Qiujun Lu | Analytical Chemistry | Best Researcher Award

Dr. Qiujun Lu | Analytical Chemistry | Best Researcher Award

Lecturer at Changsha University, China

Dr. Qiujun Lu is a distinguished researcher in Analytical Chemistry with a strong background in fluorescence sensing, nanomaterial synthesis, and biomedical applications. Currently serving as a Lecturer at Changsha University, he has contributed significantly to the field of biosensors and functional nanomaterials. His research is widely recognized, with numerous high-impact publications in esteemed journals such as Analytica Chimica Acta, Analytical Chemistry, Talanta, and Biosensors & Bioelectronics. Dr. Lu has collaborated extensively on projects related to fluorescence imaging, environmental pollutant detection, and disease biomarker identification. His dedication to scientific advancement has earned him prestigious awards, including the Hunan Province Natural Science Award and the Excellent Doctor Award. As an accomplished researcher and educator, he continues to push the boundaries of analytical chemistry, integrating novel material science techniques with biomedical applications.

Professional Profile

Education

Dr. Qiujun Lu pursued his higher education in the field of chemistry and pharmaceutical engineering. He earned his Ph.D. in Analytical Chemistry from Hunan Normal University in 2017, specializing in chemical biology and traditional Chinese medicine research. His doctoral studies were conducted at the Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research under the Ministry of Education. Before this, he obtained his Bachelor of Engineering (B.E.) in Pharmaceutical Engineering from Huaihua University in 2012. His academic background provided him with a strong foundation in chemical analysis, pharmaceutical sciences, and bioengineering, enabling him to integrate interdisciplinary techniques into his research. Dr. Lu’s educational journey reflects a commitment to scientific rigor and innovation, which has played a crucial role in his contributions to fluorescence sensing and biosensor development.

Professional Experience

Dr. Qiujun Lu has built a solid academic and research career through various professional roles. He is currently a Lecturer at the College of Biological and Chemical Engineering, Changsha University, a position he has held since September 2021. Prior to this, he worked as a Postdoctoral Researcher at the State Key Laboratory of Developmental Biology of Freshwater Fish, College of Life Science, Hunan Normal University, from 2017 to 2021. His postdoctoral research focused on the development of fluorescent probes and nanoparticle-based biosensors for biomedical and environmental applications. Dr. Lu’s expertise in functional nanomaterials and fluorescence imaging has made significant contributions to the detection of disease biomarkers and pollutants. His transition from postdoctoral research to academia highlights his dedication to both scientific discovery and knowledge dissemination.

Research Interests

Dr. Lu’s research interests lie at the intersection of analytical chemistry, nanotechnology, and biomedical applications. He specializes in the design and synthesis of fluorescent probes, which play a crucial role in bioimaging and disease diagnostics. Additionally, he focuses on the development of functional nanomaterials for use in optical biosensors, particularly those aimed at detecting disease biomarkers and environmental contaminants. His research also extends to nanoparticle-based fluorescence sensors, enabling more sensitive and selective detection of biomolecules. By integrating chemical synthesis with advanced analytical techniques, Dr. Lu aims to enhance real-time diagnostic capabilities and improve the accuracy of biosensing applications. His work contributes to both fundamental scientific knowledge and practical advancements in healthcare and environmental monitoring.

Research Skills

Dr. Qiujun Lu possesses a diverse skill set in analytical chemistry, nanotechnology, and biosensor development. His expertise includes the synthesis and characterization of functional nanomaterials, the design of fluorescent probes, and the development of optical biosensors. He is highly skilled in fluorescence imaging techniques, enabling precise detection of disease biomarkers and pollutants. Additionally, Dr. Lu is proficient in nanoparticle-based sensor fabrication, molecular recognition mechanisms, and bioanalytical instrumentation. His research involves advanced spectroscopy, chromatography, and electrochemical analysis, which contribute to the sensitivity and selectivity of his biosensors. Furthermore, he has experience in computational modeling to enhance probe design. His ability to integrate multidisciplinary approaches makes him a valuable contributor to the fields of analytical chemistry and biomedical engineering.

Awards and Honors

Dr. Qiujun Lu has received multiple prestigious awards in recognition of his contributions to analytical chemistry and biosensing technologies. He was honored with the Award for Excellent Doctors in Hunan Province (2019), highlighting his outstanding research performance during his doctoral studies. In 2018, he received the Hunan Province Natural Science Award from the Hunan Government for his innovative work in fluorescence-based analytical techniques. Additionally, he was a recipient of the National Scholarship for Doctoral Students (2015), a highly competitive award recognizing academic excellence and research potential. These accolades reflect his commitment to advancing scientific knowledge and his significant impact on the fields of nanotechnology and biosensor development. His consistent recognition at both provincial and national levels underscores the relevance and quality of his research contributions.

Conclusion

Dr. Qiujun Lu is a highly accomplished researcher in the field of analytical chemistry, particularly in fluorescence sensing and biosensor development. With a strong academic background, extensive professional experience, and a well-defined research focus, he has made significant contributions to the detection of disease biomarkers and environmental pollutants. His expertise in functional nanomaterials and bioimaging has been widely recognized, as evidenced by his numerous high-impact publications and prestigious awards. While he has demonstrated excellence in research, further expanding his collaborations and engaging in large-scale international projects could enhance his global impact. Given his achievements, Dr. Lu is a strong candidate for the Best Researcher Award, as his work aligns with cutting-edge scientific advancements and has substantial real-world applications in healthcare and environmental monitoring.

Publication Top Notes

  1. Aeromonas salmonicida aptamer selection and construction for colorimetric and ratiometric fluorescence dual-model aptasensor combined with g-C3N4 and G-quadruplex
    Author: Qiujun Lu
    Year: 2023
  2. Green Synthesis of Silver–Carbon Nanocomposites with Extraordinary Stability and Robust Antibacterial Activity against Bacterial Diseases in Fish
    Author: Qiujun Lu
    Year: 2022
  3. Limitation-induced fluorescence enhancement of carbon nanoparticles and their application for glucose detection
    Author: Qiujun Lu
    Year: 2021
  4. Insight into the Effect of Ligands on the Optical Properties of Germanium Quantum Dots and Their Applications in Persistent Cell Imaging
    Author: Qiujun Lu
    Year: 2020
  5. A turn-on fluorescent probe for vitamin C based on the use of a silicon/CoOOH nanoparticle system
    Author: Qiujun Lu
    Year: 2019
  6. Synergistic electron transfer effect-based signal amplification strategy for the ultrasensitive detection of dopamine
    Author: Qiujun Lu
    Year: 2018
  7. Highly sensitive and selective determination of copper(II) based on a dual catalytic effect and by using silicon nanoparticles as a fluorescent probe
    Author: Qiujun Lu
    Year: 2018
  8. A facile and simple method for synthesis of graphene oxide quantum dots from black carbon
    Author: Qiujun Lu
    Year: 2017
  9. Graphitic carbon nitride nanodots: As reductant for the synthesis of silver nanoparticles and its biothiols biosensing application
    Author: Qiujun Lu
    Year: 2017
  10. A “turn-on” fluorescent sensor for ultrasensitive detection of melamine based on a new fluorescence probe and AuNPs
    Author: Qiujun Lu
    Year: 2015
  11. Detection of thiocyanate through limiting growth of AuNPs with C-dots acting as reductant
    Author: Qiujun Lu
    Year: 2015
  12. Hydroxyl-rich C-dots synthesized by a one-pot method and their application in the preparation of noble metal nanoparticles
    Author: Qiujun Lu
    Year: 2015
  13. One-step electrochemical synthesis of ultrathin graphitic carbon nitride nanosheets and their application to the detection of uric acid
    Author: Qiujun Lu
    Year: 2015

 

Abraham Badu-Tawiah | Analytical Chemistry | Best Researcher Award

Prof. Dr. Abraham Badu-Tawiah | Analytical Chemistry | Best Researcher Award

Chemistry at The Ohio State University, United States

Abraham Kwame Badu-Tawiah is a distinguished professor at The Ohio State University, specializing in the fields of mass spectrometry and analytical chemistry. With a robust academic background and innovative research, he focuses on developing analytical techniques that can improve healthcare, particularly for underserved communities. His work encompasses a variety of projects, including novel mass spectrometry approaches and paper microfluidics aimed at enhancing disease diagnosis. Badu-Tawiah’s research contributions have significantly advanced the field, evidenced by his numerous patents and extensive funding from prestigious organizations. His outreach efforts also aim to inspire and engage minorities in STEM, showcasing his commitment to diversity and education in science. Overall, Badu-Tawiah stands out as a prominent researcher dedicated to impactful scientific advancements and community engagement.

Professional Profile

Education

Abraham Badu-Tawiah’s educational journey reflects his dedication to chemistry and scientific excellence. He earned his Bachelor’s and Master’s degrees in Chemistry from Kwame Nkrumah University of Science and Technology in Ghana, where he was mentored by esteemed professors. Badu-Tawiah further pursued a Master’s degree in Chemistry at Indiana University of Pennsylvania, culminating in a PhD from Purdue University under the guidance of Professor R. Graham Cooks. His rigorous training continued with a postdoctoral fellowship at Harvard University, where he worked with Professor George M. Whitesides. This impressive educational background has equipped him with a strong foundation in analytical chemistry, allowing him to make significant contributions to the field through innovative research and development.

Professional Experience

Abraham Badu-Tawiah’s professional trajectory is marked by a series of significant academic appointments at The Ohio State University. He began his career as an Assistant Professor in the Department of Chemistry and Biochemistry and has since progressed through the ranks to his current role as a Fox Professor. His interdisciplinary collaboration spans various departments, including Microbial Infection and Immunity and Internal Medicine, reflecting his commitment to bridging chemistry with healthcare. Badu-Tawiah has also served as an adjunct faculty member in multiple capacities, enhancing educational opportunities across disciplines. His involvement in initiatives at the Comprehensive Cancer Center exemplifies his dedication to integrating research with real-world health challenges. Through his extensive professional experience, Badu-Tawiah has established himself as a leader in analytical chemistry and mass spectrometry.

Research Interests

Abraham Badu-Tawiah’s research interests lie at the intersection of analytical chemistry and healthcare, focusing on innovative methods to improve disease diagnosis, particularly in underserved populations. His current projects explore diverse areas, including panoptic mass spectrometry, accelerated droplet chemistry, and mass spectrometry-based immunoassays. Badu-Tawiah is particularly interested in developing portable, paper-based microfluidic devices that allow for sensitive and affordable disease detection. His work on dry-state microsampling platforms aims to revolutionize blood sampling methods, making them more accessible and practical for use in remote areas. Additionally, Badu-Tawiah is passionate about outreach initiatives that support minorities in STEM, fostering inclusivity and encouraging future generations to pursue careers in science. Overall, his research is driven by a commitment to societal impact and advancing scientific knowledge.

Research Skills

Abraham Badu-Tawiah possesses a diverse range of research skills that underpin his contributions to analytical chemistry. His expertise in mass spectrometry enables him to develop innovative analytical techniques for complex biological samples. Badu-Tawiah is proficient in microfluidics, which he applies to create novel platforms for disease diagnosis and analysis. His work involves designing and executing experiments, interpreting complex data, and optimizing methodologies for real-world applications. Furthermore, he excels in interdisciplinary collaboration, working alongside experts from various fields to enhance the impact of his research. His experience in securing significant funding from organizations such as the NIH and NSF showcases his ability to articulate and promote research ideas effectively. Badu-Tawiah’s skills in education and mentorship also play a crucial role in shaping the next generation of scientists.

Awards and Honors

Abraham Badu-Tawiah’s exceptional contributions to the field of analytical chemistry have earned him numerous prestigious awards and recognitions. In 2021, he was honored as the Early Career Innovator of the Year at The Ohio State University, highlighting his impactful research. His achievements include receiving the Sloan Fellowship and the NIH R35 MIRA Award for New Investigators, demonstrating his promise in advancing scientific knowledge. Badu-Tawiah has also been recognized with the ACS Arthur F. Findeis Award for Achievements by a Young Analytical Scientist and the Eli Lilly Young Investigator Award. His selection as an Emerging Investigator by esteemed journals underscores his influence in the scientific community. Collectively, these accolades reflect Badu-Tawiah’s dedication to research excellence and his commitment to addressing pressing health challenges through innovative scientific approaches.

Conclusion 🎉

Abraham Badu-Tawiah is a highly qualified candidate for the Best Researcher Award. His innovative research contributions, strong community outreach, and recognition within the scientific community highlight his dedication and impact in the field of analytical chemistry. While there are areas for improvement, particularly in dissemination and collaboration, his overall profile aligns well with the ideals of this award. He exemplifies a commitment not only to scientific advancement but also to the betterment of society through education and innovation.

Publications Top Notes

  1. Comparison of three rapid diagnostic tests for Plasmodium falciparum diagnosis in Ghana
    • Authors: Kayode, T.A., Addo, A.K., Addison, T.K., Badu, K., Koepfli, C.
    • Journal: Malaria Journal
    • Year: 2024
    • Volume: 23(1)
    • Pages: 265
    • Citations: 0
  2. Multi-Analyte Concentration Analysis of Marine Samples through Regression-Based Machine Learning
    • Authors: North, N.M., Clark, J.B., Enders, A.A.A., Badu-Tawiah, A., Allen, H.C.
    • Journal: ACS Earth and Space Chemistry
    • Year: 2024
    • Volume: 8(8)
    • Pages: 1549–1559
    • Citations: 0
  3. Mass spectrometry for metabolomics analysis: Applications in neonatal and cancer screening
    • Authors: Grooms, A.J., Burris, B.J., Badu-Tawiah, A.K.
    • Journal: Mass Spectrometry Reviews
    • Year: 2024
    • Volume: 43(4)
    • Pages: 683–712
    • Citations: 2
  4. The Growing Influence of Mass Spectrometry in Measurement Science
    • Authors: Badu-Tawiah, A.K.
    • Journal: ACS Measurement Science Au
    • Year: 2023
    • Volume: 3(6)
    • Pages: 390–392
    • Citations: 0
  5. Dual Tunability for Uncatalyzed N-Alkylation of Primary Amines Enabled by Plasma-Microdroplet Fusion
    • Authors: Grooms, A.J., Nordmann, A.N., Badu-Tawiah, A.K.
    • Journal: Angewandte Chemie – International Edition
    • Year: 2023
    • Volume: 62(51)
    • Article Number: e202311100
    • Citations: 4
  6. Charge inversion under plasma-nanodroplet reaction conditions excludes Fischer esterification for unsaturated fatty acids: a chemical approach for type II isobaric overlap
    • Authors: Kulyk, D.S., Baryshnikov, G.V., Damale, P.S., Maher, S., Badu-Tawiah, A.K.
    • Journal: Chemical Science
    • Year: 2023
    • Volume: 15(3)
    • Pages: 914–922
    • Citations: 2
  7. Two-dimensional isomer differentiation using liquid chromatography-tandem mass spectrometry with in-source, droplet-based derivatization
    • Authors: Heiss, D.R., Amoah, E., Badu-Tawiah, A.K.
    • Journal: Analyst
    • Year: 2023
    • Volume: 148(20)
    • Pages: 5270–5278
    • Citations: 1
  8. High-Throughput Nanoliter Sampling and Direct Analysis of Biological Fluids Using Droplet Imbibition Mass Spectrometry
    • Authors: Sahraeian, T., Amoah, E., Kulyk, D.S., Badu-Tawiah, A.K.
    • Journal: Analytical Chemistry
    • Year: 2023
    • Volume: 95(18)
    • Pages: 7093–7099
    • Citations: 3
  9. Mass Spectrometry Approach for Differentiation of Positional Isomers of Saccharides: Toward Direct Analysis of Rare Sugars
    • Authors: Amoah, E., Kulyk, D.S., Callam, C.S., Hadad, C.M., Badu-Tawiah, A.K.
    • Journal: Analytical Chemistry
    • Year: 2023
    • Volume: 95(13)
    • Pages: 5635–5642
    • Citations: 5
  10. Plasma-Droplet Reaction Systems: A Direct Mass Spectrometry Approach for Enhanced Characterization of Lipids at Multiple Isomer Levels
    • Authors: Grooms, A.J., Nordmann, A.N., Badu-Tawiah, A.K.
    • Journal: ACS Measurement Science Au
    • Year: 2023
    • Volume: 3(1)
    • Pages: 32–44
    • Citations: 6

 

Mahmoud Ghuniem | Analytical Chemistry | Best Researcher Award

Dr. Mahmoud Ghuniem | Analytical Chemistry | Best Researcher Award

Researcher at Agricultural Research Center, Egypt

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem is a distinguished researcher and Deputy of the Heavy Metals Head Group at the Central Laboratory of Residue Analysis of Pesticides and Heavy Metals in Food, Agricultural Research Center, Egypt. With over 14 years of expertise in heavy metals analysis and laboratory management, Ghuniem is proficient in advanced techniques like Flame Atomic Absorption Spectrometry and Inductively Coupled Plasma Mass Spectrometry. He holds a PhD in Chemistry from Ain Shams University and has an impressive publication record in high-impact journals, addressing critical issues in food safety and environmental health. His commitment to professional growth is evident through numerous advanced training courses and workshops. Ghuniem’s work has earned him multiple certificates of appreciation from Modern Sciences and Arts University. His extensive experience, technical proficiency, and impactful research make him a strong candidate for the Research for Best Researcher Award.

Profile

Education

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem holds a robust academic foundation in applied chemistry. He completed his Bachelor of Science in Applied Chemistry at the Faculty of Science, Ain Shams University, in 2009. Building on this, he pursued a Master of Science in Chemistry at the same institution from 2014 to 2016. His academic journey culminated with a Doctorate in Chemistry from Ain Shams University in 2019. His doctoral research and subsequent work have focused extensively on heavy metals and analytical methods, underpinning his expertise in environmental and food safety analyses. His educational background is complemented by numerous specialized courses and training programs, enhancing his skills in advanced chromatographic techniques, laboratory management, and international standards for laboratory accreditation. This solid educational foundation supports his role as a Deputy Head of the Heavy Metals Group and a recognized researcher in his field.

Professional Experience

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem boasts over 14 years of extensive professional experience in the field of heavy metals analysis and laboratory management. As the Deputy Head of the Heavy Metals Group at the Central Laboratory of Residue Analysis of Pesticides and Heavy Metals in Food, Agricultural Research Center, Egypt, he plays a pivotal role in developing and validating analytical methods for metal contaminants in diverse matrices, including food, water, and environmental samples. His technical expertise spans advanced techniques such as Flame Atomic Absorption Spectrometry (F-AAS), Inductively Coupled Plasma Mass Spectrometry (ICP-MS), and Hydride Generation Atomic Absorption Spectrometry (HG-AAS). Ghuniem also serves as a Technical Expert/Assessor with the Egyptian Accreditation Council (EGAC), ensuring laboratory compliance with ISO standards. His experience is further enriched by his involvement in procuring laboratory equipment and his commitment to continuous professional development through various advanced training courses.

Research Interest

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem’s research interests primarily revolve around the analysis and management of heavy metals in various matrices, including food, water, and environmental samples. His expertise encompasses developing and validating advanced analytical methods for detecting metal contaminants using techniques such as Flame Atomic Absorption Spectrometry (F-AAS), Inductively Coupled Plasma Mass Spectrometry (ICP-MS), and Hydride Generation Atomic Absorption Spectrometry (HG-AAS). Ghuniem’s work is crucial in assessing the potential health risks associated with heavy metal exposure, particularly through food and environmental sources. His research also focuses on optimizing methodologies for the determination of essential and toxic elements in food products and environmental samples. By addressing these critical issues, his work contributes to ensuring food safety and environmental protection, aligning with public health interests and regulatory standards.

Research Skills

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem possesses a strong set of research skills honed over 14 years in the field of heavy metals analysis. His expertise includes the development and validation of analytical methods for detecting metal contaminants in diverse matrices such as food, water, and environmental samples. He is proficient in utilizing advanced techniques and instruments, including Flame Atomic Absorption Spectrometry (F-AAS), Inductively Coupled Plasma Mass Spectrometry (ICP-MS), and Hydride Generation Atomic Absorption Spectrometry (HG-AAS). Ghuniem’s ability to implement rigorous methodologies and handle sophisticated equipment underscores his technical adeptness. Additionally, his extensive experience with laboratory accreditation and compliance with ISO standards demonstrates his commitment to maintaining high-quality research practices. His publication record further reflects his research proficiency, with numerous contributions to high-impact journals addressing critical issues in environmental and food safety.

Award and Recognition

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem has been recognized for his exceptional contributions to the field of heavy metals analysis and environmental safety. With over 14 years of experience at the Central Laboratory of Residue Analysis of Pesticides and Heavy Metals in Food, his expertise spans various advanced analytical techniques. His research, published in high-impact journals, addresses critical issues such as metal contaminants in food and water, contributing significantly to public health and environmental protection. Ghuniem has earned multiple certificates of appreciation from Modern Sciences and Arts University, acknowledging his outstanding performance and dedication. His commitment to continuous professional development through advanced training courses and workshops further underscores his excellence in the field. These awards and recognitions highlight his pivotal role in advancing analytical methods and ensuring safety standards, affirming his status as a distinguished researcher and leader in his domain.

Conclusion

Mahmoud Mustafa Abd El Aziem Mohammed Ghuniem is a highly qualified candidate for the Research for Best Researcher Award. His extensive experience, technical skills, and significant research contributions position him as a strong contender. Enhancing the practical applications of his research, fostering interdisciplinary collaborations, and expanding his funding sources could further strengthen his profile. His dedication to continuous professional development and recognized achievements underline his suitability for this award.

Publications Top Notes

  1. Title: Determination of Some Element’s Migrants in Aqueous Simulant from Plastic Food Contact Products by Inductively Coupled Plasma Mass Spectrometer
    • Authors: Ghuniem, M.M.
    • Year: 2024
    • Citations: 0
  2. Title: Exposure and Cancer Risk Assessment of Polycyclic Aromatic Hydrocarbons (PAHs) in River Nile of Egypt
    • Authors: Refai, H.M., Helmy, A.M., Ghuniem, M.M.
    • Year: 2024
    • Citations: 3
  3. Title: Assessment of Human Health Risk Due to Potentially Toxic Elements Intake via Consumption of Egyptian Rice-Based and Wheat-Based Baby Cereals
    • Authors: Ghuniem, M.M., Khorshed, M.A., El-Safty, S.M., Souaya, E.R., Khalil, M.M.H.
    • Year: 2022
    • Citations: 8
  4. Title: Potential Human Health Risk Assessment of Potentially Toxic Elements Intake via Consumption of Soft Drinks Purchased from Different Egyptian Markets
    • Authors: Ghuniem, M.M., Khorshed, M.A., El-Safty, S.M., Souaya, E.R., Khalil, M.M.
    • Year: 2022
    • Citations: 9
  5. Title: Rapid Determination of Mercury in Dust Emission Using Cold Vapour Inductively Coupled Plasma Optical Emission Spectrometer (CV ICP OES)
    • Authors: El-Safty, S.M., Khorshed, M.A., Ghuniem, M.M.
    • Year: 2022
    • Citations: 9
  6. Title: Determination of Some Essential and Toxic Elements Composition of Commercial Infant Formula in the Egyptian Market and Their Contribution to Dietary Intake of Infants
    • Authors: Ghuniem, M.M., Khorshed, M.A., Khalil, M.M.H.
    • Year: 2020
    • Citations: 17
  7. Title: Method Validation for Direct Determination of Some Trace and Toxic Elements in Soft Drinks by Inductively Coupled Plasma Mass Spectrometry
    • Authors: Ghuniem, M.M., Khorshed, M.A., Souaya, E.R.
    • Year: 2019
    • Citations: 21
  8. Title: Optimization and Validation of an Analytical Method for the Determination of Some Trace and Toxic Elements in Canned Fruit Juices Using Quadrupole Inductively Coupled Plasma Mass Spectrometer
    • Authors: Ghuniem, M.M., Khorshed, M.A., Souaya, E.R.
    • Year: 2019
    • Citations: 15

 

Kadriye Ertekin | Analytical Chemistry | Women Researcher Award

Ms. Kadriye Ertekin | Analytical Chemistry | Women Researcher Award

 Professor of Dokuz Eylül University, Turkey.

Born on February 9, 1964, in Batman, Turkey, Prof. Ertekin completed her secondary and higher education at İzmir Karşıyaka Girls’ High School and Ege University Faculty of Science. She earned her Master’s and Doctorate degrees from Celal Bayar University and Ege University, respectively. During her doctoral studies, she conducted research at the Institute of Analytical Chemistry, Chemo-and Biosensors, Regensburg University, Germany. She has authored 63 journal articles and presented 110 papers at national and international conferences, with over 1000 citations. Prof. Ertekin has been a faculty member in the Department of Analytical Chemistry at Dokuz Eylül University’s Faculty of Science since 2003. Her primary research areas include the development of chemical optical sensors for CO2, O2, cations, and pH, as well as fiber optic sensors, fluorescence and phosphorescence-based analyses, phosphorus materials, and chemical safety in occupational settings.

Profile
Education

Prof. Dr. Kadriye Ertekin completed her undergraduate studies in Chemistry at Ege University, Faculty of Science, Turkey, from 1980 to 1985. She then pursued her postgraduate degree in Analytical Chemistry at Celal Bayar University, completing her thesis in 1996. Her academic journey continued with a Doctorate in Chemistry from Ege University, where she conducted research at the Institute of Analytical Chemistry, Chemo-and Biosensors, University of Regensburg, Germany. She received her doctoral degree in 2001, focusing on the development of new optical sensors for cation sensing. Her education reflects a strong foundation in both theoretical and practical aspects of chemistry, complemented by international research experience, which has significantly influenced her subsequent contributions to the field of analytical chemistry.

Professional Experience

Ms. Kadriye Ertekin is a distinguished academic professional with extensive experience in the field of analytical chemistry. Since 2003, she has been a professor in the Chemistry Department at Dokuz Eylül University, where she focuses on chemical sensors and risk analysis. Her academic journey includes significant roles, such as serving as the Director of The Institution at Dokuz Eylül University from 2017 to 2020, and as the Farabi Program Institutional Coordinator from 2012 to 2015. She has also contributed as a member of the Academic Incentive Evaluation Commission since 2022. Ms. Ertekin’s research expertise encompasses developing chemical sensors for CO2, O2, and pH measurements, and she has over 60 SCI-indexed publications and more than 1,000 citations. Her work extends into teaching, where she supervises both postgraduate and doctoral students, advising on topics like optical sensors and chemical safety.

Research Interest

Prof. Kadriye Ertekin’s research interests lie primarily in the development and application of advanced chemical sensors and materials. Her work focuses on creating innovative optical sensors for detecting gases such as carbon dioxide and oxygen, as well as monitoring cation concentrations. Prof. Ertekin is particularly interested in fiber optic sensors and fluorescence-based analysis, exploring the integration of nanomaterials to enhance sensor performance. Her research extends to the study of phosphors and nanoscale functional materials, aiming to improve their optical properties and stability. Additionally, she investigates chemical safety risks in industrial environments, contributing to safer workplace practices through her work on chemical risk assessment and mitigation. Her contributions significantly advance the fields of analytical chemistry and material science, combining theoretical knowledge with practical applications to address contemporary challenges in chemical sensing and safety.

Research Skills

Prof. Kadriye Ertekin is a distinguished researcher with a robust skill set in analytical and chemical sensor development. Her expertise spans a range of advanced techniques including the development of optical sensors for detecting cations, carbon dioxide, and pH levels. Prof. Ertekin excels in designing and fabricating fiber optic sensors and nanosensors, employing her deep knowledge of fluorescence and phosphorescence-based analyses. Her proficiency extends to the manipulation of optical properties in nanoscale materials, which is critical for applications in environmental monitoring and industrial safety. Additionally, she is skilled in employing various spectroscopic and chromatographic methods to analyze and quantify chemical substances. Prof. Ertekin’s extensive experience in the synthesis and characterization of novel materials, coupled with her ability to integrate these materials into functional sensor systems, underscores her significant contributions to the field of analytical chemistry and sensor technology.

Awards and Recognition

Prof. Dr. Kadriye Ertekin has earned significant recognition for her contributions to the field of analytical chemistry. Her extensive research, particularly in developing optical sensors and studying chemical risk management, has been acknowledged through numerous awards and distinctions. Notably, she received the Dokuz Eylül University Academic Incentive Award for her outstanding research achievements. Her work has been recognized in the scientific community with multiple awards from national and international conferences, reflecting the impact of her innovative research on chemical sensors and nanomaterials. In addition to her academic honors, Prof. Ertekin has been appointed as a member of various scientific committees, underscoring her role as a leading expert in her field. Her dedication to advancing chemical sensor technologies and ensuring safety in chemical processes has established her as a prominent figure in analytical chemistry research.

Conclusion

Prof. Dr. Kadriye Ertekin is a distinguished academic and researcher in the field of analytical chemistry, with a notable focus on chemical and optical sensors. Her extensive education includes a Doctorate from Ege University and research experience at Regensburg University in Germany. She has contributed significantly to her field with over 60 published articles and numerous conference presentations. Her research interests encompass the development of sensors for detecting carbon dioxide, oxygen, and pH, as well as advancements in fiber optic sensors and nanomaterials. Prof. Ertekin’s work is highly regarded, as evidenced by her numerous citations and publications in SCI-indexed journals. At Dokuz Eylül University, she has held various significant academic and administrative roles, including serving as a member of the Academic Incentive Evaluation Commission and as Director of The Institution. Her dedication to research, teaching, and service underscores her profound impact on the field and her institution.

Publications Top Notes

  • “Emission-based sensing of cobalt (II) and vitamin B12 via a bis-indole derivative”
    • Authors: Mumcu, T., Oncuoglu, S., Hizliates, C.G., Ertekin, K.
    • Journal: Luminescence
    • Year: 2024
    • Volume: 39
    • Issue: 8
    • Article Number: e4863
  • “Quantification of Airborne Concentrations of Nanoscale Dusts by Particle Gravimetry Using Ionic-Liquid Modified Polymeric Electrospun Fibers”
    • Authors: Tok, Z., Ertekin, K.
    • Journal: Macromolecular Materials and Engineering
    • Year: 2024
    • Volume: 309
    • Issue: 7
    • Article Number: 2400062
  • “An emission based optical CO2 sensor fabricated on grating-like TiO2 substrates using HPTS”
    • Authors: Yilmaz, O., Ebeoglugil, F., Aydin, I., Dalmis, R., Ertekin, K.
    • Journal: Spectrochimica Acta – Part A: Molecular and Biomolecular Spectroscopy
    • Year: 2024
    • Volume: 305
    • Article Number: 123502
    • Citations: 2
  • “Enhanced luminescence of a silica-nitride phosphor; La3Si6N11 + by using Cr3+-activated TiO2 nanoparticles”
    • Authors: Aydin, I., Ertekin, K., Azem, F.A., Delice, T.K., Birlik, I.
    • Journal: International Journal of Ceramic Engineering and Science
    • Year: 2024
    • Volume: 6
    • Issue: 1
    • Article Number: e10198
  • “Quantification of airborne concentrations of micro-scale and submicron phosphors in the manufacturing environment by spectrofluorometric method”
    • Authors: Deniz, F., Ertekin, K., Ulucan, U.
    • Journal: Chemical Papers
    • Year: 2022
    • Volume: 76
    • Issue: 12
    • Pages: 7633–7646
  • “Investigation of TiO2 and Ce3+-activated TiO2 particles on optical properties of the PMMA embedded YAG: Ce3+ and LuAG: Ce3+”
    • Authors: Yildirim, B., Keskin, O.Y., Dalmis, R., Azem, F.A., Ertekin, K.
    • Journal: Optical Materials
    • Year: 2022
    • Volume: 133
    • Article Number: 112905
    • Citations: 2
  • “Enhancement of optical properties of Lu3Al5O12+ and Ca-α-SiAlON + by quinine sulphate”
    • Authors: Ulucan, U., Ertekin, K., Oğuzlar, S.
    • Journal: Journal of Materials Science: Materials in Electronics
    • Year: 2021
    • Volume: 32
    • Issue: 24
    • Pages: 28176–28191
    • Citations: 1
  • “Manipulation of brightness and decay kinetics of LuAG: Ce3+ and YAG: Ce3+ by simple metal oxides in polymeric matrices”
    • Authors: Yildirim, B., Yasin Keskin, O., Oguzlar, S., Ak Azem, F., Ertekin, K.
    • Journal: Optics and Laser Technology
    • Year: 2021
    • Volume: 142
    • Article Number: 107226
    • Citations: 7
  • “Investigation of light induced interactions between ZnO nano-particles and red emitting phosphor blends of Eu2+/Dy3+ doped strontium aluminate and Eu2+ doped Ca-α-Sialon”
    • Authors: Oguzlar, S., Zeyrek Ongun, M., Ertekin, K.
    • Journal: Journal of Luminescence
    • Year: 2021
    • Volume: 238
    • Article Number: 118236
    • Citations: 7
  • “Structural and luminescent properties of Er3+ and Tb3+-doped sol–gel-based bioactive glass powders and electrospun nanofibers”
    • Authors: Deliormanlı, A.M., Rahman, B., Oguzlar, S., Ertekin, K.
    • Journal: Journal of Materials Science
    • Year: 2021
    • Volume: 56
    • Issue: 26
    • Pages: 14487–14504
    • Citations: 15