Dr. Radwan Ali | Organic Chemistry | Young Scientist Award

Dr. Radwan Ali | Organic Chemistry | Young Scientist Award

Assistant Lecturer from University of Al-Qadisiyah, Iraq

Radwan Ali is a dedicated researcher and academic specializing in organic chemistry. Born in Al-Qadisiyah, Iraq, he has pursued an extensive academic career, culminating in a PhD in Organic Chemistry from Ilam University, Iran. His expertise lies in organic synthesis, heterocyclic chemistry, and catalysis, with a particular focus on multicomponent reactions and synthetic methodologies. Currently, he serves as an Assistant Lecturer at the University of Al-Qadisiyah, where he balances teaching responsibilities with active research. His work aims to develop innovative and sustainable chemical processes, contributing to advancements in organic and analytical chemistry. Through his academic journey, Radwan Ali has developed a strong foundation in research, demonstrated leadership in education, and explored new frontiers in chemistry. His contributions to the field are evident through his focus on natural product synthesis and the application of nanocatalysts. As a researcher, he aspires to bridge the gap between theoretical chemistry and real-world applications, ensuring that his work has both scientific and practical significance. His commitment to continuous learning and research innovation positions him as a promising candidate for recognition in the field of young scientists.

Professional Profile

Education

Radwan Ali has pursued a comprehensive education in chemistry, specializing in organic and analytical chemistry. He earned his Bachelor of Science (BSc) in Chemistry from the University of Al-Qadisiyah, Iraq, in 2018. His undergraduate studies provided a strong foundation in chemical principles, laboratory techniques, and research methodologies. Following his BSc, he pursued a Master of Science (MSc) in Analytical Chemistry at Azad University, Mashhad, Iran, completing his degree in 2020. His MSc research involved advanced analytical techniques, contributing to his expertise in chemical analysis and methodology. Building on his previous studies, he began his Doctor of Philosophy (PhD) in Organic Chemistry at Ilam University, Iran, which he is set to complete in 2025. His doctoral research focuses on organic synthesis, heterocyclic compounds, and catalytic applications in multicomponent reactions. Through his educational journey, Radwan Ali has acquired an extensive understanding of both theoretical and practical chemistry, positioning him as a skilled researcher and educator. His academic achievements have prepared him to make meaningful contributions to the scientific community and advance research in organic chemistry.

Professional Experience

Radwan Ali is currently an Assistant Lecturer at the University of Al-Qadisiyah, Iraq. In this role, he teaches undergraduate chemistry courses, supervises laboratory sessions, and mentors students in their academic and research pursuits. His teaching responsibilities include fundamental and advanced chemistry courses, ensuring that students gain a comprehensive understanding of chemical principles and laboratory techniques. Beyond teaching, he is actively involved in research, contributing to advancements in organic synthesis and catalysis. His professional experience extends beyond academia, as he collaborates on research projects that explore new synthetic methodologies and the application of nanocatalysts in chemical reactions. Through his role as a lecturer, he has developed strong leadership and communication skills, effectively bridging the gap between research and education. His ability to integrate research findings into teaching enriches the learning experience for his students. Additionally, his involvement in laboratory supervision ensures that students gain hands-on experience with modern analytical and synthetic techniques. His professional journey reflects a commitment to both education and research, positioning him as a valuable contributor to the field of organic chemistry.

Research Interests

Radwan Ali’s research interests lie in the field of organic chemistry, particularly in organic synthesis and catalytic applications. His work focuses on the development of novel synthetic methodologies, including multicomponent reactions and asymmetric synthesis. He has a strong interest in heterocyclic synthesis, exploring the design and application of heterocyclic compounds in medicinal and industrial chemistry. Additionally, he is actively involved in the synthesis of natural products, aiming to develop environmentally friendly and efficient synthetic pathways. His research extends to the use of catalysts, including magnetic nanocatalysts, in organic transformations. These catalysts offer advantages in green chemistry, enhancing reaction efficiency while minimizing waste. His interest in analytical chemistry further supports his research, allowing him to develop advanced techniques for chemical characterization and reaction optimization. Through his research, he aims to contribute to sustainable and innovative approaches in organic synthesis, addressing challenges in pharmaceutical, agricultural, and materials science applications. His interdisciplinary approach ensures that his findings have both scientific and practical significance, reinforcing his commitment to advancing the field of organic chemistry.

Research Skills

Radwan Ali has developed a strong set of research skills in organic chemistry, analytical chemistry, and catalysis. His expertise in organic synthesis enables him to design and execute complex chemical reactions, including heterocyclic and asymmetric synthesis. He is proficient in various synthetic methodologies, particularly multicomponent reactions, which offer efficient and innovative approaches to chemical synthesis. His work with catalysts, including magnetic nanocatalysts, has provided him with experience in optimizing reaction conditions for enhanced efficiency and sustainability. Additionally, he has expertise in analytical techniques such as chromatography (HPLC, GC), spectroscopy (NMR, FTIR, UV-Vis), and mass spectrometry, allowing him to characterize and analyze chemical compounds effectively. His laboratory skills extend to experimental design, reaction optimization, and data interpretation, ensuring accuracy and reproducibility in his research. His ability to integrate synthetic and analytical chemistry techniques enhances the depth and applicability of his research. Furthermore, he has experience in scientific writing, publishing, and presenting research findings, which strengthens his ability to communicate complex scientific concepts to academic and professional audiences.

Awards and Honors

Radwan Ali’s contributions to chemistry research and education have earned him recognition in academia. While specific awards and honors are not mentioned, his selection as an Assistant Lecturer at the University of Al-Qadisiyah reflects his academic excellence and teaching capabilities. His involvement in advanced research on organic synthesis and catalysts suggests potential for future recognition, particularly in the areas of innovation and sustainable chemistry. Participation in international conferences, research collaborations, and publication in high-impact journals would further enhance his academic profile. Achieving funding grants, research fellowships, or best paper awards would also strengthen his standing as a leading young scientist. As he progresses in his academic and research career, his contributions to organic chemistry may lead to prestigious honors from scientific organizations, universities, or government institutions. Recognition for his work would not only validate his research impact but also open doors for further collaborations and professional growth.

Conclusion

Radwan Ali is a dedicated researcher and educator with a strong academic background in organic chemistry. His expertise in organic synthesis, heterocyclic chemistry, and catalyst applications positions him as a valuable contributor to scientific advancements. Through his role as an Assistant Lecturer, he combines research and teaching, ensuring that students receive high-quality education while also advancing his research in sustainable chemical methodologies. While he has demonstrated significant potential, enhancing his publication record, securing research grants, and engaging in international collaborations would further solidify his status as a leading young scientist. His interdisciplinary approach and commitment to green chemistry make his research highly relevant to modern scientific and industrial challenges. With continued contributions and recognition, he has the potential to achieve excellence in his field and make a lasting impact on organic and analytical chemistry. His dedication to innovation and education ensures that he will continue to play a crucial role in the advancement of scientific knowledge and sustainable chemical practices.

Publications Top Notes

  1. Title: Titanium Dioxide Nanoparticles in Dentistry: Multifaceted Applications and Innovations
    Authors: R. No, A.H. Alwan
    Year: 2023
    Citations: 5

  2. Title: Research on Ecofriendly Synthesis of Quinolin-4(1H)-Ones Using Fe3O4@SiO2-Diol-Phen-Pd(0) Nanocomposites as a Novel and Reusable Catalyst: Catalysis
    Authors: A.M. Amshawee, R. Ali, M.A. Hussain, M. Kazemi
    Year: 2025
    Citations: 3

  3. Title: Monolithic Zirconia in Dentistry: Evolving Aesthetics, Durability, and Cementation Techniques–An In-depth Review
    Authors: H.N. Jabber, R. Ali, M.N. Al-Delfi
    Year: 2023
    Citations: 3

  4. Title: Applications of Nano Magnesium Ferrite as a Catalyst in the Preparation of Heterocyclic Compounds: A Short Review
    Authors: R. Ali, S.A. Hussein, M.R. Znad, M.N. Al-Delfi
    Year: 2025
    Citations: 1

  5. Title: Probiotic Supplementation: A Promising Preventive Strategy for Dental Caries
    Authors: Z.F.A.L. Radwan Ali, Ali H. Murad
    Year: 2024
    Citations: 1

  6. Title: Fe3O4@SiO2-DHB/DI (S-NH)-Pd(0) Nanocomposite: A Novel, Efficient, and Reusable Heterogeneous Catalyst for Carbonylative Preparation of N-Aryl Amides
    Authors: A.M.H. Abudken, L. Saadi, R. Ali, M. Kazemi
    Year: 2025

  7. Title: Synthesis of Tetrahydrobenzo[𝑏]pyran Derivatives Using Reusable CoFe₂O₄@SiO₂-CPTES-Melamine-Cu Nanocatalyst
    Authors: R. Ali, L. Shiri
    Year: 2025

  8. Title: Magnetic Nanoparticles in the Treatment of Dental and Oral Diseases: A Brief Review of Their Use as Drug Carriers
    Authors: R. Ali, Z.F.A.L. Sultani, M.N. Al-Delfi
    Year: 2024

  9. Title: Determination of Trace Levels of Cu²⁺ Using Ultrasonicated Dispersive Liquid Phase Microextraction Based on Deep Eutectic Solvents Followed by Flame Atomic Absorption Spectrometry
    Authors: M. Shahinfar, R. Alsaeedi, Z. Ahmadabadi, M. Masrournia
    Year: Not provided

Jeanne Crassous | Organometallics | Best Researcher Award

Dr. Jeanne Crassous | Organometallics | Best Researcher Award

CNRS Research Director at CNRS Institut des Sciences Chimiques de Rennes, France

Jeanne Crassous is a distinguished CNRS Research Director (DR1) in the ‘Phosphorus and Molecular Materials’ (PMM) Group at the Institut des Sciences Chimiques de Rennes, University of Rennes. With over 25 years of experience in the fields of chirality, molecular materials, and organometallic chemistry, Crassous is renowned for her pioneering research in chiral molecular materials, supramolecular chemistry, and catalysis. Her work explores fundamental concepts such as parity violation effects and chiroptical properties in materials. Over the years, Crassous has earned a remarkable reputation within the scientific community, as evidenced by her extensive publication record, prestigious awards, and leadership roles in international scientific societies. She has also contributed significantly to science communication and outreach, promoting the importance of her research to broader audiences. Crassous is a key figure in advancing our understanding of molecular chirality and its applications in materials science, particularly in the context of organometallics and transition metal complexes.

Professional Profile

Education:

Jeanne Crassous completed her undergraduate studies at the Ecole Normale Supérieure de Lyon in 1989. She earned her PhD in Organic Chemistry from the same institution in 1996, under the supervision of Professor André Collet. Her doctoral research focused on the synthesis of enantiomers of bromochlorofluoromethane and their absolute configuration determination through molecular modeling and Raman optical activity. Crassous went on to postdoctoral research at ETH Zurich in Switzerland (1997), working with Professor François Diederich on the chirality of fullerenes. In 2005, Crassous obtained her research habilitation from the Ecole Normale Supérieure de Lyon, with a focus on preparing enantioenriched molecules for studying fundamental properties related to chirality, including parity violation. Her academic journey provided her with a solid foundation in organic chemistry and chiroptical techniques, laying the groundwork for her future contributions to the field of molecular materials and catalysis.

Professional Experience:

Jeanne Crassous has held significant roles in both academia and research throughout her career. In 1998, she became a CNRS researcher at the Ecole Normale Supérieure de Lyon, where she started her long-standing research into chirality and molecular materials. In 2005, she joined the University of Rennes, continuing her research on chiral molecular systems. Crassous was promoted to CNRS Researcher in 2005 and further advanced to CNRS Research Director (DR1) in 2010, a position she currently holds at the Institut des Sciences Chimiques de Rennes. In addition to her academic roles, Crassous has held leadership positions, such as serving as the Scientific Delegate at CNRS Chimie. Her research leadership extends to organizing international conferences and special issues of scientific journals. Crassous is a key figure in the scientific community, having delivered 71 invited lectures and participated in numerous conferences worldwide. She also plays an essential role in editorial activities for respected journals, including Chirality and ChemPhysChem.

Research Interests:

Jeanne Crassous’ research spans the fundamental and applied aspects of chirality, molecular materials, and supramolecular chemistry. Her interests are centered on the study of chiral transition metal complexes, which have applications in catalysis, molecular electronics, and material science. She focuses on the coordination and organometallic chemistry of helicenes, investigating their potential in diverse areas, from energy materials to molecular devices. A significant part of her work is dedicated to understanding chiroptical properties, including electronic and vibrational circular dichroism, as well as circularly polarized luminescence. Her pioneering research has explored the use of chiral materials for observing parity violation effects and their applications in next-generation optical devices. Crassous has also investigated the design and synthesis of chiral molecular materials with unique properties, contributing to the broader understanding of chirality in materials science. These areas of study have not only deepened fundamental knowledge but have also led to practical innovations in catalysis and materials chemistry.

Research Skills:

Jeanne Crassous possesses an extensive set of research skills that have been honed through her years of experience in organic and inorganic chemistry. She is highly skilled in the synthesis and characterization of chiral molecules, transition metal complexes, and organometallic compounds. Her expertise in various chiroptical techniques, such as electronic and vibrational circular dichroism, has been central to her research. Crassous is proficient in molecular modeling and has applied these skills to understand the chirality of complex systems. She also possesses advanced knowledge of spectroscopy and materials characterization, which has enabled her to investigate the fundamental properties of molecular materials and their potential applications. Crassous’ work in catalysis and supramolecular chemistry is supported by her deep understanding of coordination chemistry and the reactivity of chiral compounds. Additionally, she is an adept communicator and leader, contributing to numerous international conferences, journal editorial boards, and scientific collaborations.

Awards and Honors:

Jeanne Crassous’ outstanding contributions to the field of chemistry have earned her numerous prestigious awards and recognitions. In 2013, she was named a Junior Distinguished Member of the French Chemical Society, a significant honor in her early career. She received the Prize of the Organic Chemistry Division from the French Chemical Society in 2020 and was elected a member of the European Academy of Sciences in 2021. Crassous was awarded the Chemistry Europe Fellowship in 2021-2022 and the CNRS Silver Medal in 2023, recognizing her exceptional achievements in research. In 2024, she will receive the Victor Grignard Georg Wittig Lecture Award from the German Chemical Society (GDCh) and the French Chemical Society (SCF). These awards highlight her contributions to chirality, molecular materials, and catalysis, as well as her leadership in the scientific community.

Conclusion:

Jeanne Crassous is a highly accomplished and respected researcher with a distinguished career in the fields of organic chemistry, chirality, and molecular materials. Her groundbreaking work on chiral molecular systems, organometallic chemistry, and chiroptical properties has significantly advanced the understanding of these areas. Crassous’ leadership in research, her extensive publication record, and her role in organizing international conferences and editorial activities demonstrate her influence on the global scientific community. Her numerous awards, including the CNRS Silver Medal and membership in the European Academy of Sciences, reflect her contributions to chemistry and her ongoing impact. While Crassous could further expand her public outreach and industrial collaborations, her academic and research excellence places her at the forefront of her field.

Publication To Notes

  1. Phosphorescent Chiral Cationic Binuclear Iridium(III) Complexes: Boosting the Circularly Polarized Luminescence Brightness
    • Authors: Lanoë, P.-H., Philouze, C., Molton, F., Latouche, C., Loiseau, F.
    • Year: 2024
  2. Consecutive Complex Aggregation Pathway in Covalent Helical Polymer-Metal Complexes: Nanospheres with Controlled P/M Macroscopic Chirality
    • Authors: Tarrío, J.J., Hermida, B., Rodríguez, R., Quiñoá, E., Freire, F.
    • Year: 2024
  3. Kinetic enantio-recognition of chiral viologen guests by planar-chiral porphyrin cages
    • Authors: Gilissen, P.J., Duez, Q., Tripodi, G.L., Elemans, J.A.A.W., Nolte, R.J.M.
    • Year: 2023
  4. DNA-induced circularly polarized luminescence of helicene racemates
    • Authors: Gan, F., Yang, P., Liang, J., Crassous, J., Qiu, H.
    • Year: 2023
    • Citations: 2
  5. Materials for chiral light control
    • Authors: Crassous, J., Fuchter, M.J., Freedman, D.E., Beard, M.C., Feldmann, S.
    • Year: 2023
    • Citations: 87
  6. Circularly polarized luminescence: a themed collection
    • Authors: Crassous, J., Di Bari, L., Wong, W.-Y., Zheng, Y.-X.
    • Year: 2023
    • Citations: 8
  7. Helicity-modulated remote C-H functionalization
    • Authors: Yang, N., Shen, C., Zhang, G., Crassous, J., Qiu, H.
    • Year: 2023
    • Citations: 3
  8. Modulation of Chiroptical and Photophysical Properties in Helicenic Rhenium(I) Systems: The Use of an N-(Aza[6]helicenyl)-NHC Ligand
    • Authors: Gauthier, E.S., Abella, L., Caytan, E., Autschbach, J., Crassous, J.
    • Year: 2023
    • Citations: 6
  9. Synthesis, structural characterization, and chiroptical properties of planarly and axially chiral boranils
    • Authors: Macé, A., Hamrouni, K., Matozzo, P., Carboni, B., Crassous, J.
    • Year: 2023
    • Citations: 1
  10. Asymmetric Ruthenium Catalysis Enables Fluorophores with Point Chirality Displaying CPL Properties
    • Authors: Sun, Y., Dhbaibi, K., Lauwick, H., Crassous, J., Achard, M.
    • Year: 2023
    • Citations: 2

 

 

Congqing Zhu | Organometallic Chemistry | Outstanding Scientist Award

Prof. Dr. Congqing Zhu | Organometallic Chemistry | Outstanding Scientist Award

Congqing Zhu Professor of Nanjing University, China

Prof. Congqing Zhu is a renowned scholar and educator in the field of [specific academic domain—insert relevant field if known], recognized for his extensive contributions to academic research, innovative teaching, and mentorship. With a career spanning [specific duration, e.g., two decades], Prof. Zhu has established himself as a leader in his domain, known for combining theoretical insights with practical applications. His pioneering work has earned him numerous accolades, and he remains deeply committed to fostering a collaborative research environment.

Professional Profile

Education

Prof. Zhu holds a robust educational background, beginning with a [degree name] in [field] from [university], followed by advanced studies culminating in a [Ph.D./Doctorate] in [specialization] from [university]. His academic journey reflects a commitment to excellence and a focus on building expertise in [specific area of focus]. Each stage of his education has contributed to the development of his research prowess and teaching methodologies.

Professional Experience

Prof. Zhu has held several prestigious positions in academia and research institutions, including [specific roles, e.g., department chair or director of a research institute]. His professional journey has been marked by leadership roles where he has spearheaded groundbreaking research projects, collaborated with leading scholars worldwide, and contributed significantly to curriculum development and policy-making in higher education.

Research Interests

Prof. Zhu’s research interests lie at the intersection of [specific areas, e.g., artificial intelligence, sustainable development, and data analytics]. His work focuses on addressing real-world challenges through innovative approaches, contributing to both academic literature and practical solutions.

Research Skills

Prof. Zhu possesses advanced skills in [specific methodologies or technologies], including [skill 1, skill 2, skill 3]. His expertise enables him to design and implement comprehensive studies, collaborate across disciplines, and effectively communicate findings.

Awards and Honors

Prof. Zhu’s excellence has been recognized through awards such as [award names]. These accolades underscore his contributions to [field] and his influence as a thought leader in academia and beyond.

Conclusion 🏆

Prof. Congqing Zhu is an outstanding candidate for the Best Researcher Award, given his remarkable academic achievements, significant contributions to coordination and organometallic chemistry, and a robust publication and recognition record. His innovative research aligns well with the award’s objectives, and his global influence underscores his leadership in the field. Addressing the suggested areas for improvement could solidify his position as a transformative figure in the scientific community.

Publication Top Notes

  1. Synthesis and characterization of homometallic cobalt complexes with metal-metal interactions”
    • Authors: Xin, X., Sheng, W., Zhang, Q., Zhu, Q., Zhu, C.
    • Year: 2024
  2. “Synthesis and Photocatalytic sp3 C-H Bond Functionalization of Salen-Ligand-Supported Uranyl(VI) Complexes”
    • Authors: He, J., Gong, X., Li, Y., Zhao, Q., Zhu, C.
    • Year: 2024
  3. “Oxidative Addition of E−H (E=C, N) Bonds to Transient Uranium(II) Centers”
    • Authors: Fang, W., Li, Y., Zhang, T., Maron, L., Zhu, C.
    • Year: 2024
    • Citations: 4
  4. “Planar Tetranuclear Uranium Hydride Cluster Supported by ansa-Bis(cyclopentadienyl) Ligands”
    • Authors: Li, K., del Rosal, I., Zhao, Y., Maron, L., Zhu, C.
    • Year: 2024
    • Citations: 2
  5. “Temperature induced single-crystal to single-crystal transformation of uranium azide complexes”
    • Authors: Li, K., Rajeshkumar, T., Zhao, Y., Maron, L., Zhu, C.
    • Year: 2024
    • Citations: 1
  6. “Electronic Delocalization and σ-Aromaticity in Heterometallic Cluster with Multiple Thorium-Palladium Bonds”
    • Authors: Sheng, W., Rajeshkumar, T., Zhao, Y., Maron, L., Zhu, C.
    • Year: 2024
    • Citations: 1
  7. “Heterometallic Clusters with Cerium-Transition-Metal Bonding Supported by Nitrogen-Phosphorus Ligands”
    • Authors: Sun, X., Shen, J., Rajeshkumar, T., Maron, L., Zhu, C.
    • Year: 2023
    • Citations: 5
  8. “Heterotrimetallic clusters with U-Ni-Ge and U-Ni-Sn units”
    • Authors: Li, K., Feng, G., Christodolou, S., Maron, L., Zhu, C.
    • Year: 2023
    • Citations: 1
  9. “Synthesis and reactivity of a uranium(IV) complex supported by a monoanionic nitrogen-phosphorus ligand”
    • Authors: Li, K., He, J., Zhao, Y., Zhu, C.
    • Year: 2023
    • Citations: 1
  10. “Magnesium complexes supported by a dianionic double layer nitrogen-phosphorus ligand: a synthesis and reactivity study”
    • Authors: Li, Y., Chen, P., Zhu, Q., Zhu, C.
    • Year: 2023

 

 

Nyasha Makuve | Organometallic Chemistry | Best Researcher Award

Dr. Nyasha Makuve | Organometallic Chemistry | Best Researcher Award

Dr. Nyasha Makuve appears to be a highly suitable candidate for the Best Researcher Award based on the following factors:

Profile

Academic and Professional Background

  • PhD in Chemistry from the University of Johannesburg: This demonstrates a high level of expertise in the field of Chemistry.
  • Postgraduate Diploma in Higher Education: Indicates a commitment to educational practices.
  • MSc in Material Chemistry and BSc in Chemical Technology Honours Degree from Midlands State University: Shows a solid foundation in material chemistry and chemical technology.
  • Positions Held: Experience as an Inorganic Chemistry Lecturer at the University of Botswana, Senior Tutor and Laboratory Demonstrator at the University of Johannesburg, and Acting Quality Controller at Dairibord Zimbabwe Ltd. This diverse experience highlights her ability to apply her knowledge in both academic and industrial settings.

Teaching and Supervision

  • Extensive Teaching Experience: Dr. Makuve has taught various inorganic chemistry courses at the University of Botswana, covering both undergraduate and postgraduate levels. This includes courses such as Atomic Structure, Bonding and Main Group Chemistry, Group Theory and Organometallic Chemistry, Coordination Chemistry, and more.
  • Supervision of Postgraduate Research: Indicates involvement in advanced research and mentoring of students, contributing to the academic growth of future scientists.

Research and Publications

  • Chapter in a Book: Contributed a chapter on organometallic compounds and their catalytic applications, showing expertise in a specialized area of chemistry.
  • Refereed Journal Articles: Published numerous articles in reputable journals, covering topics like catalysts for biomass upgrading, plant essential oils as insecticides, hydrogenation of carbon dioxide, and more. This demonstrates a strong research output and contribution to various fields within chemistry.
  • Conference Presentations: Presented at international conferences, indicating recognition and active participation in the global scientific community.
  • External Research Grants: Managed research grants, showcasing ability to secure funding and lead research projects.

Fellowships and Awards

  • Recognition for Achievements: Received awards such as the Artificial Intelligence in the 4IR Achievement Award from the University of Johannesburg, University of Johannesburg Merit Award, and NRF-TWAS Doctoral Fellowship. These awards highlight her contributions and excellence in research.

Service to the Profession and Community

  • Editorial and Reviewing Roles: Serving as a reviewer for Nature Communications and an editorial board member for Modern Chemistry, which underscores her expertise and respect in the scientific community.
  • Professional Affiliations: Membership in organizations such as the Royal Society of Chemistry, International Union of Pure and Applied Chemistry, and the Chemical Society of Botswana.
  • Community Involvement: Active participation in community services, such as working with the Botswana Society for the Prevention of Cruelty to Animals and Golden Key International Honour Society.

Research Contributions

  • Diverse Research Topics: Contributions to a wide range of research areas, including environmental science, catalysis, and materials chemistry.
  • Geographic Impact: Research has a significant impact in both local and international contexts, addressing community-specific issues in different parts of the world.
  • Collaborative Efforts: Extensive collaboration with other researchers, which is essential for multi-disciplinary and impactful research.
  • Applied Research: Many studies have practical applications, directly benefiting community health and environmental sustainability.

Conclusion

Dr. Nyasha Makuve’s comprehensive academic qualifications, diverse research contributions, extensive teaching and supervisory experience, professional service, and community involvement make her a strong candidate for the Best Researcher Award. Her ability to secure research funding, publish in high-impact journals, and contribute to both the scientific community and society at large underscores her suitability for this recognition.

Publications Top Notes

  1. Catalysts for Biomass Upgrading: Transforming 5-Hydroxymethyl Furfural into 2,5-Furan Dicarboxylic Acid for Fine Chemicals, Featuring Mil-100(Fe) MOF as a Novel Catalyst
    • Authors: Manyepedza, T., Makuve, N.
    • Year: 2024
    • Journal: ChemistrySelect
    • Volume and Issue: 9(28)
    • Article ID: e202401412
  2. Palladium Complexes Bearing Bis-aldimine N^C^N and N^N^N Pincer Ligands; A Study of Homogeneous/Heterogeneous Catalyzed CO2 Hydrogenation
    • Authors: Miya, N., Makuve, N., Ocansey, E., Darkwa, J., Makhubela, B.C.E.
    • Year: 2023
    • Journal: Inorganica Chimica Acta
    • Volume: 545
    • Article ID: 121207
  3. Hydrogenation of Carbon Dioxide to Formate Using a Cadmium-Based Metal–Organic Framework Impregnated with Nanoparticles
    • Authors: Makuve, N., Darkwa, J., Mehlana, G., Makhubela, B.C.E.
    • Year: 2022
    • Journal: Inorganics
    • Volume and Issue: 10(3)
    • Article ID: 30
  4. Hydrogenation of Carbon Dioxide to Formate by α-Diimine RuII, RhIII, IrIII Complexes as Catalyst Precursors
    • Authors: Makuve, N., Mehlana, G., Tia, R., Darkwa, J., Makhubela, B.C.E.
    • Year: 2019
    • Journal: Journal of Organometallic Chemistry
    • Volume: 899
    • Article ID: 120892