Jean-Manuel Raimundo | Materials Science | Best Researcher Award

Prof. Dr. Jean-Manuel Raimundo | Materials Science | Best Researcher Award

Aix Marseille Univ, CINaM | France

Prof. Dr. Jean-Manuel Raimundo is an accomplished scientist in organic chemistry and nanoscience, recognized for his contributions to molecular materials, functional chromophores, and advanced nanostructured systems. He holds a Bachelor’s degree in Biochemistry, a Master’s degree in Chemistry, a PhD in Organic Chemistry, and a Habilitation à Diriger des Recherches, establishing a strong academic foundation for his multidisciplinary research. His professional journey includes roles as temporary lecturer, assistant professor, associate professor, professor, and full professor at leading French universities, along with postdoctoral research at globally renowned institutions such as ETH Zurich and Total Elf Fina. He also completed international research assignments and served as an invited professor in Japan, contributing to collaborative advancements in molecular engineering and nanoscience. His research spans organic materials, photoactive systems, molecular electronics, supramolecular chemistry, and functional nanomaterials, with sustained involvement in major research laboratories including CINaM and UMR units. Prof. Raimundo has been honored with multiple distinctions, including innovation prizes, scientific excellence bonuses, and competitive fellowships supporting high-level research. His career reflects a dedication to advancing molecular materials and nanoscience through innovative research, international collaboration, and impactful scientific leadership.

Profiles: Scopus | Google Scholar

Featured Publications

Raimundo, J.-M., Blanchard, P., Gallego-Planas, N., Mercier, N., Ledoux-Rak, I., Hierle, R., & Roncali, J. (2002). “Design and synthesis of push−pull chromophores for second-order nonlinear optics derived from rigidified thiophene-based π-conjugating spacers.” The Journal of Organic Chemistry.

Raimundo, J.-M., Blanchard, P., Frere, P., Mercier, N., Ledoux-Rak, I., Hierle, R., & Roncali, J. (2001). “Push–pull chromophores based on 2,2′-bi(3,4-ethylenedioxythiophene) (BEDOT) π-conjugating spacer.” Tetrahedron Letters.

Malytskyi, V., Simon, J.-J., Patrone, L., & Raimundo, J.-M. (2015). “Thiophene-based push–pull chromophores for small molecule organic solar cells (SMOSCs).” RSC Advances.

Liu, S.-G., Shu, L., Rivera, J., Liu, H., Raimundo, J.-M., Roncali, J., Gorgues, A., & Echegoyen, L. (1999). “A New Dyad Based on C60 and a Conjugated Dimethylaniline-Substituted Dithienylethylene Donor.” The Journal of Organic Chemistry.

Videlot, C., Ackermann, J., Blanchard, P., Raimundo, J.-M., Frère, P., Allain, M., de Bettignies, R., Levillain, E., & Roncali, J. (2003). “Field‐Effect Transistors Based on Oligothienylenevinylenes: From Solution π‐Dimers to High‐Mobility Organic Semiconductors.” Advanced Materials.

Raimundo, J.-M., Blanchard, P., Brisset, H., Akoudad, S., & Roncali, J. (2000). “Proquinoid acceptors as building blocks for the design of efficient π-conjugated fluorophores with high electron affinity.” Chemical Communications.

Edelmann, M. J., Raimundo, J.-M., Utesch, N. F., Diederich, F., Boudon, C., Gisselbrecht, J.-P., & Gross, M. (2002). “Dramatically enhanced fluorescence of heteroaromatic chromophores upon insertion as spacers into oligo(triacetylene)s.” Helvetica Chimica Acta.

Ms. Yufang Ma-Pharmaceutical Chemistry-Best Researcher Award

Ms. Yufang Ma-Pharmaceutical Chemistry-Best Researcher Award

Wuhan University - China

Author Profile

Early Academic Pursuits

Ms. Yufang Ma's academic journey began with a fervent interest in the biomedical sciences. She completed her undergraduate studies with a focus on pharmacology, where she developed a strong foundation in understanding drug interactions and biological systems. Her early research interests centered around natural compounds, particularly flavonoids, which are known for their diverse pharmacological properties. This interest led her to delve deeper into the conformational relationships of these compounds, exploring how their structures influence their biological activities. Her dedication to her studies was reflected in her academic excellence and active participation in various research initiatives.

Professional Endeavors

Following her undergraduate studies, Ms. Yufang Ma pursued a Master's degree at Wuhan University, one of the top institutions in China. Her professional endeavors have been marked by her commitment to advancing pharmacological research. At Wuhan University, she has been primarily engaged in studying the conformational relationships of flavonoids and their pharmacological effects. Her research aims to uncover the therapeutic potential of these natural compounds, particularly in the context of treating neurological disorders such as epilepsy. This work not only contributes to the scientific community's understanding of flavonoids but also has the potential to lead to the development of new, effective treatments for epilepsy.

Contributions and Research Focus

Ms. Yufang Ma's contributions to pharmacological research are centered on her in-depth studies of flavonoids. Her primary research focus involves investigating the conformational relationships of these compounds and how their structural variations impact their pharmacological properties. She is particularly interested in the therapeutic potential of flavonoids in treating epilepsy, a neurological disorder characterized by recurrent seizures. Through her research, she aims to identify specific flavonoids that can modulate neuronal activity and reduce seizure frequency. This focus on epilepsy research is a significant contribution to the field, as it addresses a critical need for new, effective treatments for this debilitating condition.

Accolades and Recognition

While Yufang Ma's work is ongoing, she has already garnered recognition for her contributions to pharmacological research. Her dedication to exploring the therapeutic potential of flavonoids has been acknowledged by her peers and mentors at Wuhan University. Although she has not yet published extensively or secured patents, her research on epilepsy is paving the way for significant advancements in the field. The recognition she has received serves as a testament to her potential to make impactful contributions to pharmacology and therapeutics.

Impact and Influence

The impact of Yufang Ma's research extends beyond the academic community. Her work on flavonoids and epilepsy has the potential to influence the development of new pharmacological treatments. By identifying specific flavonoids with anticonvulsant properties, her research could lead to the creation of novel therapies that offer better efficacy and fewer side effects compared to existing treatments. This potential impact highlights the broader significance of her work in improving patient outcomes and enhancing the quality of life for individuals with epilepsy.

Legacy and Future Contributions

Ms. Yufang Ma's legacy in pharmacological research is still in the making, but her ongoing work promises to leave a lasting impact on the field. As she continues to explore the therapeutic potential of flavonoids, her findings could pave the way for new treatment paradigms in epilepsy and other neurological disorders. Her future contributions are likely to extend beyond research, potentially influencing clinical practices and drug development strategies. With her dedication and innovative approach, Ms. Yufang Ma is poised to become a leading figure in pharmacology, contributing to the advancement of science and the improvement of human health.

Notable Publication

Apigenin analogs as α-glucosidase inhibitors with antidiabetic activity, 2024.

Diosmetin Ameliorates HFD-induced Cognitive Impairments via Inhibiting Metabolic Disorders, Mitochondrial Dysfunction and Neuroinflammation in Male SD Rats, 2024