Serge Mbokou Foukmeniok | Chemistry | Best Researcher Award

Dr. Serge Mbokou Foukmeniok | Chemistry | Best Researcher Award 

Research Engineer at Université d’Angers | France 

Dr. Serge Mbokou Foukmeniok is a distinguished research engineer at the University of Angers, France, specializing in electroanalytical chemistry. His professional journey reflects deep expertise in developing advanced electrochemical sensors aimed at detecting and monitoring organic pollutants and heavy metals in diverse environmental matrices. He has contributed significantly to projects that address critical issues of food safety, environmental monitoring, and public health. Dr. Serge Mbokou Foukmeniok’s career is marked by strong interdisciplinary collaborations with universities, research institutes, and industry. His innovative contributions, including sensor development and bioelectrochemical applications, highlight his commitment to sustainable science and practical solutions for environmental challenges.

Profile:

 OrcidGoogle Scholar

Education:

Dr. Serge Mbokou Foukmeniok pursued his academic path in chemistry with a strong specialization in analytical and electroanalytical techniques. His doctoral training equipped him with advanced knowledge in chromatographic methods such as HPLC and GC-MS, which became foundational to his career. During his education, he built a strong interdisciplinary background, linking chemistry with biological and environmental sciences. This academic preparation allowed him to establish expertise in designing novel electrochemical systems, combining theory with real-world applications. His education emphasized rigorous scientific training, critical thinking, and problem-solving, ultimately shaping him into a versatile researcher capable of addressing complex global scientific challenges.

Experience:

Dr. Serge Mbokou Foukmeniok has accumulated rich professional experience across multiple research domains. He worked extensively on food safety, applying chromatographic techniques to detect pesticide and antibiotic residues in agricultural and environmental samples. His career also involved pioneering work on biodegradation of pesticides using Black Soldier Fly larvae, offering sustainable solutions for animal nutrition. At present, his research at the University of Angers focuses on developing real-time electrochemical sensors for environmental pollutants under large international projects. His professional trajectory demonstrates a unique blend of academic and applied research, with a strong orientation towards environmental protection and societal well-being.

Research Interest:

Dr. Serge Mbokou Foukmeniok’s research interests lie in electroanalytical chemistry, with a focus on sensor development for real-time pollutant monitoring. His work integrates carbon-based materials, microbial biofuel cells, and biofilms to create innovative detection systems. Currently, his major contribution is through the European-funded MERMAID project, where he develops sensor technologies to monitor pollutants such as PFAS, pesticides, and pharmaceuticals in marine and wastewater systems. His interest extends to environmental remediation and food safety, reflecting a holistic approach to public health and ecological sustainability. Through these research pursuits, Dr. Serge Mbokou Foukmeniok emphasizes the transformative potential of chemistry in addressing global challenges.

Awards and Honors:

Dr. Serge Mbokou Foukmeniok has received recognition for his contributions to science, particularly in developing advanced electrochemical sensors with real-world applications. His innovative research has gained international visibility through prestigious European collaborations and global partnerships. He has also been honored by memberships in leading professional organizations, including the International Society of Electrochemistry and regional scientific networks. These distinctions reflect his influence as a thought leader in environmental chemistry and electroanalysis. Dr. Serge Mbokou Foukmeniok’s scientific leadership and impactful research make him a strong candidate for awards recognizing innovation, research excellence, and global contributions to sustainable environmental science.

Publications:

Title: Electroanalytical performance of a carbon paste electrode modified by coffee husks for the quantification of acetaminophen in quality control of commercialized pharmaceutical products
Citation: 36
Year of Publication: 2016

Title: A sustainable fungal microbial fuel cell (FMFC) for the bioremediation of acetaminophen (APAP) and its main by-product (PAP) and energy production from biomass
Citation: 33
Year of Publication: 2019

Title: Evaluation of the degradation of acetaminophen by the filamentous fungus Scedosporium dehoogii using carbon-based modified electrodes
Citation: 32
Year of Publication: 2016

Title: A sensitive voltammetric analysis and detection of Alizarin Red S onto a glassy carbon electrode modified by an organosmectite
Citation: 24
Year of Publication: 2021

Title: Assessment of pesticide residues in vegetables produced in central and eastern Ethiopia
Citation: 23
Year of Publication: 2023

Title: Development of a novel hybrid biofuel cell type APAP/O2 based on a fungal bioanode with a Scedosporium dehoogii biofilm
Citation: 19
Year of Publication: 2017

Title: Sensitive carbon fiber microelectrode for the quantification of diuron in quality control of a commercialized formulation
Citation: 12
Year of Publication: 2022

Conclusion:

Dr. Serge Mbokou Foukmeniok embodies excellence in research, innovation, and application of electroanalytical chemistry. His pioneering contributions to environmental monitoring, food safety, and sustainable energy systems place him at the forefront of scientific advancement. With his expertise in developing practical solutions such as electrochemical sensor boxes for pollutant detection, he bridges the gap between laboratory research and real-world implementation. His collaborative spirit, scholarly impact, and dedication to global challenges align perfectly with the vision of prestigious research awards. Recognizing Dr. Serge Mbokou Foukmeniok’s work not only honors his achievements but also underscores the importance of sustainable science for society.

Zhenpeng Hu | Chemistry | Best Innovation Award

Prof. Zhenpeng Hu | Chemistry | Best Innovation Award 

Professor at Nankai University | China

Prof. Zhenpeng Hu is a distinguished physicist at the School of Physics, Nankai University, specializing in condensed matter physics and computational materials science. His career has been marked by a blend of academic excellence, pioneering research, and impactful contributions to material innovation. Having earned both his Bachelor’s and Ph.D. degrees from the University of Science and Technology of China, he pursued postdoctoral research at the University of California, Santa Barbara, before joining Nankai University. Over the years, Prof. Hu has published extensively, supervised research projects of global importance, and achieved an reflecting his broad scientific influence.

Profile:

Orcid | Google Scholar

Education:

Prof. Zhenpeng Hu’s educational journey reflects a seamless trajectory of academic brilliance in physical sciences. He began with a Bachelor’s degree in Physics at the University of Science and Technology of China, where his foundational training emphasized theoretical and experimental physics. He then entered a direct Ph.D. program at the same institution, focusing on condensed matter physics. His doctoral work combined rigorous computational modeling with innovative material design. This strong academic foundation equipped him with the tools to explore the electronic, structural, and catalytic properties of novel materials, and continues to drive his multidisciplinary research endeavors at the intersection of physics and material innovation.

Experience:

Prof. Zhenpeng Hu’s professional journey spans prestigious institutions and international collaborations. Following his Ph.D., he undertook postdoctoral research at the University of California, Santa Barbara, where he deepened his expertise in computational material sciences. He then advanced to Associate Professor at Nankai University, later achieving full professorship. His tenure includes a Senior Visiting Fellowship at the University of Wollongong, which broadened his global perspective and collaborative networks. Currently, he leads high-impact projects in catalysis design, quantum materials, and machine learning applications in physics. His experience reflects an impressive balance of teaching, research leadership, and innovation across multiple interdisciplinary domains.

Research Interests:

Prof. Zhenpeng Hu’s research interests converge on materials physics, catalysis, and quantum properties of novel compounds. He has made significant advances in first-principles calculations, applying them to design catalytic materials with optimized electronic structures. His work delves into the dynamics of materials at ground and excited states, contributing to predictions of optical, electronic, and energy-related properties. More recently, he has embraced machine learning, pioneering methods to extract physically meaningful descriptors that accelerate material property predictions. His projects include studies on borene, ultrafast scintillation mechanisms, rare-earth crystals, and electrocatalysts, positioning him at the forefront of physics-driven material design and computational innovation.

Awards and Honors:

Prof. Zhenpeng Hu has been recognized with numerous honors for his academic and research contributions. His impactful work has garnered both national and international attention, cementing his reputation as a leader in computational materials science and condensed matter physics. His awards reflect excellence in innovation, research productivity, and contributions to collaborative scientific advancements. These accolades underscore his ability to integrate traditional physics principles with modern computational and machine learning techniques. Furthermore, his achievements in catalysis design and quantum property exploration highlight his role in shaping next-generation scientific methodologies and applications. He continues to be a strong contender for innovation-based distinctions.

Publications:

Title: Engineering surface atomic structure of single-crystal cobalt (II) oxide nanorods for superior electrocatalysis
Citation: 696
Year of Publications: 2016

Title: Direct seawater electrolysis by adjusting the local reaction environment of a catalyst
Citation: 605
Year of Publications: 2023

Title: CO₂ methanation on Ru-doped ceria
Citation: 451
Year of Publications: 2011

Title: Activating cobalt (II) oxide nanorods for efficient electrocatalysis by strain engineering
Citation: 438
Year of Publications: 2017

Title: Engineering electrocatalytic activity in nanosized perovskite cobaltite through surface spin-state transition
Citation: 427
Year of Publications: 2016

Title: Chemistry of Lewis acid–base pairs on oxide surfaces
Citation: 404
Year of Publications: 2012

Title: Choice of U for DFT+U Calculations for Titanium Oxides
Citation: 377
Year of Publications: 2011

Conclusion:

Prof. Zhenpeng Hu exemplifies excellence in academia and research through his deep commitment to advancing the field of physics and material sciences. His career seamlessly integrates rigorous theoretical foundations, international collaborations, and groundbreaking innovations in computational and experimental research. By bridging physical principles with cutting-edge tools like machine learning, he has accelerated discoveries in catalysis, quantum materials, and energy applications. His extensive publication record, high citation impact, and leadership in multiple research projects underscore his global influence. With a proven record of innovation, Prof. Hu stands as a highly deserving candidate for recognition through prestigious international research awards.

Toyin Abdulkareem | Chemistry | Best Researcher Award

Toyin Abdulkareem | Chemistry | Best Researcher Award

Phd at China University of Petroleum Beijing, Nigeria

Abdulkareem Toyin is an accomplished geoscientist with extensive expertise in hydrocarbon source rock evaluation, petroleum geochemistry, and basin modeling. He is currently completing his Ph.D. at China University of Petroleum, Beijing, where his research focuses on Cretaceous source rocks in Nigerian frontier basins. Toyin has published in prestigious journals like Organic Geochemistry and Marine and Petroleum Geology. With a strong academic background and practical experience in geological exploration, he has contributed to advancing knowledge in unconventional resources and carbon capture. His work has far-reaching implications for both academic research and energy sector applications.

📚 Profile

ORCID

🎓 Education

Abdulkareem Toyin holds a Ph.D. in Geology from China University of Petroleum, Beijing, completed in 2024. His doctoral thesis focuses on the geochemical characterization of Cretaceous source rocks in Nigeria, providing insights into new petroleum systems. He also earned an M.Sc. in Geology from the University of Ilorin, Nigeria, in 2011, where he studied sedimentology in the Sokoto Basin. His academic journey began with a B.Sc. in Geology and Mineral Sciences from the same institution in 2006, during which he explored underground water hydrogeochemistry in southwestern Nigeria.

💼 Experience

Abdulkareem Toyin has held both academic and industrial roles, providing a well-rounded career in geology. He served as an academic staff member at Federal University Lokoja, Nigeria (2012-2018), where he taught undergraduate geology courses, supervised research projects, and conducted field mapping training. Previously, he worked as a site geologist at Bito Nigeria Limited (2008-2012), gaining valuable hands-on experience in well logging, borehole supervision, and core sample analysis. His experience spans both theoretical knowledge and practical expertise in hydrocarbon exploration, making him highly proficient in geosciences and petroleum systems analysis.

🔬 Research Interests

Toyin’s research focuses on hydrocarbon source rock evaluation, petroleum geochemistry, and basin and petroleum system modeling. He has a keen interest in exploring unconventional resources, carbon capture utilization and storage (CCUS), and hydrogen gas. His expertise includes advanced techniques like open system pyrolysis, organic petrology, and stable carbon isotope analysis. His research contributes to understanding hydrocarbon generation, sedimentary basin development, and energy resource management, with implications for the future of sustainable energy exploration.

🏆 Awards and Honors

Abdulkareem Toyin has been recognized for his academic and research achievements. He participated in the prestigious American Association of Petroleum Geologists Imperial Barrel Award (AAPG-IBA) competition in 2009, representing the Africa region. His research has earned him opportunities to present at major international conferences such as the Goldschmidt Conference in the United States and the Afro-Asian Association of Petroleum Geochemists conference in China. These honors reflect his dedication to advancing petroleum geoscience and his commitment to contributing to the global energy sector.

🔚 Conclusion

Abdulkareem Toyin demonstrates an outstanding track record in geology, geochemistry, and energy-related research. His diverse academic background, prolific publication record, and expertise in advanced petroleum system modeling and carbon capture technologies position him as a strong candidate for the Best Researcher Award. With further expansion of his international collaborations and deeper integration into the energy industry’s research sphere, his work has the potential to make significant contributions to addressing global energy challenges.

Publications Top Notes 📚

  • Title: Stable Carbon Isotopic Composition of Selected Alkylnaphthalenes and Alkylphenanthrenes from the Tarim Oilfields, NW China
    Author: Abdulkareem Toyin
    Year: 2022
    Citation: Toyin, A. (2022). Stable Carbon Isotopic Composition of Selected Alkylnaphthalenes and Alkylphenanthrenes from the Tarim Oilfields, NW China. Energies, 15(19), 7145. https://doi.org/10.3390/en15197145
  • Title: Geochemical and Petrographic Evaluation of the Lower Cretaceous Abu Gabra Organic-Rich Shale in the Muglad Basin, Sudan, with Evidence of Suppression of Thermal Maturity
    Author: Abdulkareem Toyin
    Year: 2021
    Citation: Toyin, A. (2021). Geochemical and Petrographic Evaluation of the Lower Cretaceous Abu Gabra Organic-Rich Shale in the Muglad Basin, Sudan, with Evidence of Suppression of Thermal Maturity. Journal Article, July 13.
  • Title: Depositional Model for Mixed Carbonate-Clastic Sediments in the Middle Cambrian Lower Zhangxia Formation, Xiaweidian, North China
    Author: Abdulkareem Toyin
    Year: 2020
    Citation: Toyin, A. (2020). Depositional Model for Mixed Carbonate-Clastic Sediments in the Middle Cambrian Lower Zhangxia Formation, Xiaweidian, North China. Journal Article, November 20.
  • Title: Geochemical Assessment of Mudrock Intervals from Well-X Boundary of Nigeria and Benin Republic Sectors of the Offshore Dahomey Basin: Implication for Provenance Studies
    Author: Abdulkareem Toyin
    Year: 2020
    Citation: Toyin, A. (2020). Geochemical Assessment of Mudrock Intervals from Well-X Boundary of Nigeria and Benin Republic Sectors of the Offshore Dahomey Basin: Implication for Provenance Studies. Journal Article, August 17.
  • Title: Assessment of Chemical and Mineralogical Composition of Tertiary Shales from the Nigerian Sector of Iullemmenden Basin: Implication for Paleoclimate and Provenance
    Author: Abdulkareem Toyin
    Year: 2019
    Citation: Toyin, A. (2019). Assessment of Chemical and Mineralogical Composition of Tertiary Shales from the Nigerian Sector of Iullemmenden Basin: Implication for Paleoclimate and Provenance. Journal Article, March 1.
  • Title: Compositional Appraisal and Quality Implication of Emiworo Metacarbonate Deposit in Central Nigeria
    Author: Abdulkareem Toyin
    Year: 2017
    Citation: Toyin, A. (2017). Compositional Appraisal and Quality Implication of Emiworo Metacarbonate Deposit in Central Nigeria. Journal Article, April 18.
  • Title: Lithostratigraphic Description, Sedimentology and Depositional Environment of Rocks Penetrated by Illela Borehole, Sokoto Basin, NW Nigeria: A Connection between Gulf of Guinea Basins
    Author: Abdulkareem Toyin
    Year: 2016
    Citation: Toyin, A. (2016). Lithostratigraphic Description, Sedimentology and Depositional Environment of Rocks Penetrated by Illela Borehole, Sokoto Basin, NW Nigeria: A Connection between Gulf of Guinea Basins. Journal Article, April 20.
  • Title: Carbonate Sedimentology and Depositional Environment of Carbonate Rocks of the Kalambaina Formation, Penetrated by Illela Borehole, Sokoto Basin, NW Nigeria
    Author: Abdulkareem Toyin
    Year: 2015
    Citation: Toyin, A. (2015). Carbonate Sedimentology and Depositional Environment of Carbonate Rocks of the Kalambaina Formation, Penetrated by Illela Borehole, Sokoto Basin, NW Nigeria. Journal Article, April 19.
  • Title: Paleobiogeography and Depositional Environment of the Maastrichtian-Late Paleocene Dange Shale, Sokoto Basin, NW Nigeria
    Author: Abdulkareem Toyin
    Year: 2014
    Citation: Toyin, A. (2014). Paleobiogeography and Depositional Environment of the Maastrichtian-Late Paleocene Dange Shale, Sokoto Basin, NW Nigeria. Journal Article, April 19.

Fabrice Gritti | Chemistry | Excellence in Innovation

Fabrice Gritti | Chemistry | Excellence in Innovation

Research Scientist at Waters Corp, United States.

Dr. Fabrice Gilles Ernest Gritti is a highly accomplished consulting research scientist at Waters Corporation, where he leads pioneering research in separation sciences and liquid chromatography. With over 20 years of experience, Dr. Gritti has significantly contributed to the development of innovative chromatographic technologies for pharmaceutical and life sciences industries. His work focuses on improving the efficiency and resolution of chromatographic columns and instruments, leading to faster and more accurate bioanalytical methods. He has authored more than 305 peer-reviewed articles, earned over 10,000 citations, and holds 16 patents, underscoring his impact on both academia and industry. He collaborates extensively with leading institutions like Princeton University and Marburg University, ensuring his research remains at the cutting edge. With a deep commitment to innovation, Dr. Gritti continues to push the boundaries of chromatography and its applications in life sciences.

📚 Profile

ORCID

🎓 Education

Dr. Gritti’s educational foundation is rooted in physical chemistry and condensed matter physics. He earned a Bachelor’s degree in Physical Chemistry in 1995, followed by an Engineer’s degree from the School of Physics and Chemistry of Bordeaux in 1997. His academic pursuit culminated with a Ph.D. in Physics and Chemistry of Condensed Matter from University of Bordeaux I in 2001. His doctoral research laid the groundwork for his future specialization in chromatographic sciences. His strong foundation in chemistry and physics enables him to approach chromatography with a unique blend of theoretical insight and practical application. Postdoctoral work in chromatographic sciences from 2002 to 2014 further sharpened his expertise, allowing him to make groundbreaking contributions in both fundamental science and industrial applications.

💼 Experience

Dr. Gritti began his career with a strong focus on the fundamentals of chromatographic sciences, engaging in post-doctoral research from 2002 to 2014. During this period, he gained a deep understanding of liquid chromatography (LC) and its applications in separation sciences. In 2015, he joined Waters Corporation, where he has since worked on the development of next-generation chromatographic columns and instrumentation for the pharmaceutical industry. His current responsibilities include managing both internal and external research collaborations with prestigious institutions such as Princeton University and Marburg University. His role involves overseeing advanced research programs aimed at delivering innovative solutions for life sciences, such as fast, high-resolution bio-analyzers. His experience spans a balance of theoretical research, practical industrial applications, and cross-institutional collaborations, all contributing to his exceptional expertise.

🔬 Research Interests

Dr. Gritti’s research interests lie at the intersection of separation sciences and chromatography, with a focus on enhancing the performance and understanding of liquid chromatography. His work delves into the thermodynamics of liquid/solid adsorption, band broadening in chromatographic columns, and mass transfer in heterogeneous media. He is particularly interested in the development of new chromatographic methods that enable faster, more specific, and higher-resolution separations in bioanalytical applications. His ongoing research explores innovative techniques like slalom chromatography in cell and gene therapy, as well as advancements in mRNA characterization and dsRNA detection. By continuously refining chromatographic techniques, Dr. Gritti contributes to faster and more precise separation methods that are critical in pharmaceutical research and other life sciences fields.

🏆 Awards and Honors

Dr. Gritti has received numerous accolades throughout his career in recognition of his outstanding contributions to separation sciences and chromatography. His innovations in chromatographic column design and bioanalytical instrumentation have earned him multiple awards from industry and academic organizations. He holds 16 patents, which highlight his focus on practical innovations that have direct applications in pharmaceutical and life sciences research. In addition to his patents, Dr. Gritti has received over 10,000 citations and boasts an H-index of 56, underscoring the global impact of his work. His editorial appointment with the Journal of Chromatography A further demonstrates his influence in shaping the future direction of chromatographic research.

🔚 Conclusion

Dr. Fabrice Gritti’s substantial contributions to innovative chromatographic technologies and his leadership in industry-driven research make him an excellent candidate for the Research for Excellence in Innovation award. His work not only advances the field of separation sciences but also has real-world applications in life sciences and pharmaceuticals. With a few minor improvements, such as broader interdisciplinary focus and educational outreach, he could further solidify his standing in the global research community. Overall, he demonstrates the qualities that align well with the award’s focus on innovation and research excellence.

Publications Top Notes 📚

Title: “Theoretical predictions to facilitate the method development in slalom chromatography for the separation of large DNA molecules”
Author: Fabrice Gritti
Year: 2024
Citation: Gritti, F. (2024). Theoretical predictions to facilitate the method development in slalom chromatography for the separation of large DNA molecules. Journal of Chromatography A, 465379. https://doi.org/10.1016/j.chroma.2024.465379

 

Title: “Harnessing an elastic flow instability to improve the kinetic performance of chromatographic columns”
Author: Fabrice Gritti
Year: 2024
Citation: Gritti, F. (2024). Harnessing an elastic flow instability to improve the kinetic performance of chromatographic columns. Journal of Chromatography A, 465326. https://doi.org/10.1016/j.chroma.2024.465326

 

Title: “Understanding retention and intra-particle diffusivity of alkylsulfobetaine-bonded Ethylene Bridged Particles with different mesopore sizes for hydrophilic interaction liquid chromatography applications”
Author: Fabrice Gritti
Year: 2024
Citation: Gritti, F. (2024). Understanding retention and intra-particle diffusivity of alkylsulfobetaine-bonded Ethylene Bridged Particles with different mesopore sizes for hydrophilic interaction liquid chromatography applications. Journal of Chromatography A, 465232. https://doi.org/10.1016/j.chroma.2024.465232

 

Title: “Retention mechanism in combined hydrodynamic and slalom chromatography for analyzing large nucleic acid biopolymers relevant to cell and gene therapies”
Author: Fabrice Gritti
Year: 2024
Citation: Gritti, F. (2024). Retention mechanism in combined hydrodynamic and slalom chromatography for analyzing large nucleic acid biopolymers relevant to cell and gene therapies. Journal of Chromatography A, 465075. https://doi.org/10.1016/j.chroma.2024.465075

 

Title: “Preparation and investigation of two-component silica-modified hydrophobic layer for minimizing retention loss of reversed-phase chromatographic columns using fully aqueous mobile phases”
Author: Fabrice Gritti
Year: 2024
Citation: Gritti, F. (2024). Preparation and investigation of two-component silica-modified hydrophobic layer for minimizing retention loss of reversed-phase chromatographic columns using fully aqueous mobile phases. Journal of Chromatography A, 464766. https://doi.org/10.1016/j.chroma.2024.464766