Jiang Wu | Medicinal Chemistry | Best Researcher Award

Prof. Jiang Wu | Medicinal Chemistry | Best Researcher Award

Wenzhou Medical University | China

Profile

Early Academic Pursuits

Jiang Wu began her academic journey in pharmaceutical sciences with a solid foundation in biology and chemistry, completing both undergraduate and doctoral studies at a leading Chinese university. Her early curiosity in material science and biomedical applications laid the groundwork for a lifelong interest in regenerative medicine. During her doctoral studies, she further enhanced her international academic exposure through a visiting research stint in the United States. This period catalyzed her exploration into biomaterials and biofunctional hydrogels research directions that would later become central to her career.

Professional Endeavors

Professor Wu embarked on her professional academic career as an assistant professor, quickly advancing through academic ranks due to her significant research output and dedication to teaching. She also gained international academic experience as a visiting professor in the United States, where she collaborated with global experts in drug delivery systems and regenerative medicine. Returning to China, she steadily rose through the academic hierarchy, eventually attaining full professorship. Her professional trajectory reflects a deep commitment to both institutional growth and global scientific collaboration.

Contributions and Research Focus

Professor Wu’s research contributions have significantly advanced the field of wound healing and regenerative medicine. Her core research interests revolve around three major themes: the underlying mechanisms of wound regeneration, the development of smart and functional biomaterials, and the design of hydrogel-based delivery systems. Her work frequently explores innovative uses of stimuli-responsive hydrogels, microneedles, and bioactive wound dressings to improve the treatment of diabetic wounds, burns, and spinal cord injuries. She has consistently focused on translational research bridging the gap between laboratory development and clinical application.

Impact and Influence

Professor Wu’s research has left a profound impact on the fields of biomedical engineering and pharmaceutics, particularly in the development of novel wound dressings and transdermal delivery systems. She has been instrumental in designing multifunctional materials that are both responsive to biological stimuli and effective in promoting tissue repair. Her work is often cited in studies related to polymer science, drug delivery, and regenerative therapies. Her influence is evident not only in academic literature but also in the development of practical medical solutions being explored for clinical applications.

Academic Citations 

Having authored over 40 high-impact publications in prestigious journals such as Advanced Healthcare Materials, Biomaterials, Small, and the Journal of Controlled Release, Professor Wu’s work has garnered widespread recognition. She frequently serves as a corresponding author, reflecting her leadership in collaborative research projects. Her publications are well-cited by peers, indicating the relevance and timeliness of her findings in fields ranging from material chemistry to tissue engineering. Her inclusion in regional talent and leadership programs further underlines her academic prestige.

Technical Skills

Professor Wu possesses deep technical expertise in polymer chemistry, nanofabrication, and biomaterial engineering. Her lab routinely employs techniques such as electrospinning, hydrogel synthesis, drug conjugation, and surface modification. She is proficient in the development of biodegradable scaffolds, microneedle systems, and zwitterionic hydrogels with tailored release profiles. These skills have allowed her to innovate across multiple domains, from antimicrobial dressings to spinal cord regeneration systems.

Teaching Experience and Mentorship

In parallel with her research, Professor Wu has been an active educator and mentor. She has taught both undergraduate and postgraduate courses in pharmaceutical sciences, materials science, and biomedical engineering. Known for fostering a research-driven learning environment, she has supervised numerous graduate theses and contributed to curriculum development. Many of her students have co-authored papers with her and gone on to pursue academic or industry careers, reflecting her dedication to shaping future scientists.

Awards and Honors

Professor Wu has received numerous honors for her academic excellence and leadership in science and technology. These include recognition by provincial and city-level government programs for leading talents and innovative researchers. Her appointment as a vice president for science and technology by a provincial authority highlights her influence in shaping regional innovation policy. These accolades underscore her dual role as a scholar and policy influencer.

Legacy and Future Contributions

Professor Wu’s legacy is characterized by a relentless pursuit of innovation in regenerative medicine and biomaterials. Her work has pushed boundaries in tissue engineering and smart material design, offering practical solutions for chronic wound care and therapeutic delivery. Looking ahead, she is poised to further impact the biomedical field through interdisciplinary collaborations, continued mentorship, and translational research aimed at clinical implementation. Her future endeavors are expected to focus on scalable biomaterials, personalized medicine approaches, and next-generation therapeutic platforms.

Notable Publications

General fabrication of bioactive dissolving microneedles from whole grain seeds derived starch for transdermal application

  • Authors: Zhang, J.; Xu, D.; Li, B.; Wang, K.; Ni, Y.; Xu, J.; Wu, J.; Li, X.; He, H.

  • Journal: International Journal of Biological Macromolecules

  • Year: 2025

Drug conjugates crosslinked bioresponsive hydrogel for combination therapy of diabetic wound

  • Authors: Zheng, M.; Song, W.; Huang, P.; Huang, Y.; Lin, H.; Zhang, M.; He, H.; Wu, J.

  • Journal: Journal of Controlled Release

  • Year: 2024

Bio-inspired aFGF modification functionalized piezoelectric chitosan films for promoting scald wound healing

  • Authors: Luo, Y.; Luo, H.; Yang, X.; Ding, X.; Wang, K.; Zhang, M.; Wei, J.; An, Y.; Xu, J.; He, H.; Wu, J.

  • Journal: International Journal of Biological Macromolecules

  • Year: 2024

Tissue-Adaptive BSA Hydrogel with Dual Release of PTX and bFGF Promotes Spinal Cord Injury Repair via Glial Scar Inhibition and Axon Regeneration

  • Authors: Zhu, S.; Wu, Q.; Ying, Y.; Mao, Y.; Lu, W.; Xu, J.; Cai, X.; He, H.; Wu, J.

  • Journal: Small

  • Year: 2024

Microneedle Patch for Transdermal Sequential Delivery of KGF-2 and aFGF to Enhance Burn Wound Therapy

  • Authors: He, H.; Huang, W.; Zhang, S.; Li, J.; Zhang, J.; Li, B.; Xu, J.; Luo, Y.; Shi, H.; Li, Y.; Xiao, J.; Ezekiel, O. C.; Li, X.; Wu, J.

  • Journal: Small

  • Year: 2024

Conclusion

Professor Jiang Wu stands as a distinguished scholar whose work bridges fundamental science and medical application. Her contributions to smart hydrogels, wound healing, and biomaterials reflect a harmonious blend of creativity, rigor, and purpose. With a strong publication record, a commitment to mentorship, and growing recognition in both national and international scientific communities, she is well-positioned to lead future advancements in pharmaceutical sciences and biomedical engineering. Her journey exemplifies the transformative potential of science when coupled with vision and dedication.

Aravind Nesaragi | Organic Chemistry | Young Scientist Award

Dr. Aravind Nesaragi | Organic Chemistry | Young Scientist Award

Dayananda Sagar College of Engineering, India

Profiles

Early Academic Pursuits

Dr. Aravind Nesaragi laid the foundation of his academic career in the field of chemistry, completing his undergraduate studies with distinction and progressing to earn a master’s degree in Organic Chemistry. He further enhanced his academic credentials with a Bachelor of Education, showcasing a parallel interest in teaching. His academic journey reflects a consistent commitment to excellence, culminating in a doctoral degree focused on nitrogen and oxygen heterocycles for pharmacological applications. His Ph.D. work involved synthetic and spectral studies under the supervision of an experienced mentor at a reputed Indian university.

Research Interests and Focus

Dr. Nesaragi’s research is deeply rooted in materials chemistry and organic synthesis, with a strong focus on the development of nanomaterials and conjugated luminescent molecules for applications in optics and energy devices. His interests span a broad spectrum, including fluorescence sensing, OLED applications, optoelectronics, dye-sensitized solar cells (DSSCs), covalent organic frameworks (COFs), and metal-organic frameworks (MOFs). He is particularly engaged in the design of nanocatalysts for organic transformations and the fabrication of functional materials for sensing and photovoltaic applications.

Professional Endeavors

Dr. Nesaragi has held postdoctoral research positions at premier Indian institutions. His most recent appointment was at the Indian Institute of Technology Dharwad, where he worked on π-conjugated molecules for sensing applications and conducted DFT computational studies. Prior to that, he served as a postdoctoral fellow at the Centre for Nano and Material Sciences, JAIN University, where he developed luminescent probes for heavy metal ion detection and OLED technologies. These postdoctoral experiences have strengthened his expertise in advanced molecular design, synthesis, and characterization for optoelectronic applications.

Research Contributions and Output

Over the course of his doctoral and postdoctoral research, Dr. Nesaragi has contributed significantly to the synthesis of highly conjugated molecules with potential applications in devices such as DSSCs, OLEDs, and supercapacitors. His work is distinguished by its practical relevance, bridging synthetic chemistry with material science and device engineering. His Ph.D. thesis focused on medicinally relevant heterocyclic compounds, combining both synthetic and spectral approaches to uncover their potential as pharmacological agents.

Awards and Fellowships

Dr. Nesaragi has received a prestigious Ph.D. fellowship from the Karnataka Science and Technology Promotion Society, recognizing the significance of his doctoral research. He also qualified the Graduate Aptitude Test in Engineering (GATE), a highly competitive national examination, further establishing his academic credentials.

Technical and Computational Proficiency

He has developed strong technical skills across a wide range of instrumental techniques, including NMR, GC-MS, microwave-assisted synthesis, FT-IR (ATR and KBr), UV-visible spectroscopy, and fluorescence spectrophotometry. His computational experience includes the use of Gaussian for DFT studies, along with software such as Origin, ChemDraw, Geol NMR, Mendeley, and EndNote for data analysis, visualization, and manuscript preparation.

Teaching Experience

Dr. Nesaragi has hands-on teaching experience, having worked as a lecturer in a pre-university science college for two years. During this tenure, he contributed to classroom instruction in chemistry and developed foundational science skills in young learners. This experience complements his research career and reflects his ongoing commitment to academic mentorship and education.

Legacy and Future Contributions

Looking forward, Dr. Nesaragi aims to further his contributions to organic and materials chemistry by developing novel compounds for use in flexible electronic devices and energy storage technologies. His research is aligned with emerging global priorities in sustainable energy and advanced sensing technologies. Through a combination of synthetic innovation, applied material development, and academic mentorship, he aspires to make impactful contributions to both science and education.

Notable Publications

Microwave assisted regioselective synthesis of quinoline appended triazoles as potent anti-tubercular and antifungal agents via copper (I) catalyzed cycloaddition
Authors: AR Nesaragi, RR Kamble, PK Bayannavar, SKJ Shaikh, SR Hoolageri, …
Journal: Bioorganic & Medicinal Chemistry Letters
Year: 2021

Green synthesis of therapeutically active 1,3,4-oxadiazoles as antioxidants, selective COX-2 inhibitors and their in silico studies
Authors: AR Nesaragi, RR Kamble, S Dixit, B Kodasi, SR Hoolageri, …
Journal: Bioorganic & Medicinal Chemistry Letters
Year: 2021

WELPSA: A natural catalyst of alkali and alkaline earth metals for the facile synthesis of tetrahydrobenzo[b]pyrans and pyrano[2,3‐d]pyrimidinones as inhibitors of …
Authors: AR Nesaragi, RR Kamble, SR Hoolageri, A Mavazzan, SF Madar, …
Journal: Applied Organometallic Chemistry
Year: 2022

Click chemistry based regioselective one‐pot synthesis of coumarin‐3‐yl‐methyl‐1,2,3‐triazolyl‐1,2,4‐triazol‐3(4H)‐ones as newer potent antitubercular agents
Authors: SM Somagond, RR Kamble, PK Bayannavar, SKJ Shaikh, SD Joshi, …
Journal: Archiv der Pharmazie
Year: 2019

A comprehensive overview of coumarinyl-triazole hybrids as anticancer agents
Authors: AR Nesaragi, JS Algethami, M Alsaiari, SA Alsareii, BS Mathada, …
Journal: Journal of Molecular Structure
Year: 2024

Jeba Reeda V S | Organic Chemistry | Best Researcher Award

Dr. Jeba Reeda V S | Organic Chemistry | Best Researcher Award

Easwari Engineering College, India

👨‍🎓Profiles

🎓 Early Academic Pursuits

Dr. Jeba Reeda V S embarked on her academic journey with a strong foundation in Physics, earning both her B.Sc. and M.Sc. degrees with distinction. Her passion for understanding the fundamental nature of materials and molecular interactions led her to pursue a Ph.D. in Physics at Manonmaniam Sundaranar University, Tirunelveli. Specializing in Density Functional Theory (DFT) and Spectroscopy, her doctoral research laid the groundwork for a deeper exploration of quantum chemistry and bioactive molecular systems.

🏛️ Professional Endeavors

Currently serving as an Assistant Professor at Easwari Engineering College, Chennai, Dr. Reeda plays a pivotal role in both teaching and institutional development. She teaches Engineering Physics and Materials Science, while also contributing to academic quality through her involvement in NBA and NAAC accreditation processes. Her commitment to student mentoring and academic coordination further reflects her dedication to nurturing the next generation of scientists and engineers.

🔬 Contributions and Research Focus

Dr. Reeda’s research is centered around computational physics, particularly the application of DFT and spectroscopy in the analysis of bioactive compounds. Her work integrates quantum chemical calculations, molecular docking, and simulation methods to investigate the structural and electronic properties of compounds with antimicrobial and antioxidant properties. She has published 31 peer-reviewed research papers in SCI and Scopus-indexed journals, making significant contributions to drug design, materials science, and molecular interaction studies.

🌍 Impact and Influence

Despite the absence of major funded projects or patents, Dr. Reeda’s scholarly impact is evident in her citation index of 415, indicating the relevance and quality of her published work. Her interdisciplinary approach bridges theoretical and applied sciences, and she has presented her findings at numerous national and international conferences. Her efforts in organizing and co-convening events like NCETEA-2024 have also facilitated greater collaboration across fields such as energy and environmental research.

📊 Academic Citations

With 31 published papers and 415 citations, Dr. Reeda’s academic footprint is growing steadily. Her work is frequently cited in studies related to molecular spectroscopy, quantum modeling, and bioactive material design. This growing citation index reflects both the technical rigor and applied relevance of her research within the scientific community.

🧪 Technical Skills

Dr. Reeda brings expertise in several high-level analytical and computational techniques. These include Density Functional Theory (DFT), molecular docking simulations, vibrational and electronic spectroscopy, and structural analysis of biomolecules. Her proficiency in these tools allows her to effectively investigate molecular behavior and predict functional properties of novel compounds.

👩‍🏫 Teaching Experience

With hands-on experience in teaching core undergraduate subjects like Engineering Physics and Materials Science, Dr. Reeda combines theoretical instruction with real-world relevance. She engages actively in curriculum development and fosters research-driven learning environments. Her dedication to mentoring students highlights her role as both educator and guide, supporting their academic growth and critical thinking.

🌟 Legacy and Future Contributions

Dr. Reeda’s scholarly journey is marked by persistence, quality, and innovation. Although she has not yet ventured into patenting or large-scale industrial collaborations, her current trajectory shows immense promise. In the years ahead, her goals include securing funded research, expanding into applied projects with societal impact, and building international collaborations. Her passion for inclusive learning and interdisciplinary science signals a bright and impactful future in academia and research.

📖Notable Publications

Conformational stability, quantum computational (DFT), vibrational, electronic and non-covalent interactions (QTAIM, RDG and IGM) of antibacterial compound N-(1-naphthyl …
Authors: VSJ Reeda, S Sakthivel, P Divya, S Javed, VB Jothy
Journal: Journal of Molecular Structure, Volume 1298, Article 137043
Year: 2024

Vibrational spectroscopic, quantum computational (DFT), reactivity (ELF, LOL and Fukui), molecular docking studies and molecular dynamic simulation on (6-methoxy-2-oxo-2H …
Authors: VSJ Reeda, VB Jothy
Journal: Journal of Molecular Liquids, Volume 371, Article 121147
Year: 2023

Synthesis, solvent polarity (polar and nonpolar), structural and electronic properties with diverse solvents and biological studies of (E)-3-((3-chloro-4-fluorophenyl) imino …
Authors: VSJ Reeda, VB Jothy, M Asif, M Nasibullah, NS Alharbi, G Abbas, …
Journal: Journal of Molecular Liquids, Volume 380, Article 121709
Year: 2023

Fungicide compound 2,3-dichloronaphthalene-1,4-dione: Non-covalent interactions (QTAIM, RDG and ELF), combined vibrational spectroscopic investigations using DFT approach …
Authors: P Divya, VSJ Reeda, VB Jothy
Journal: Journal of Molecular Liquids, Volume 400, Article 124544
Year: 2024

Molecular structure and quantum descriptors of cefradine by using vibrational spectroscopy (IR and Raman), NBO, AIM, chemical reactivity and molecular docking
Authors: MK Chaudhary, T Karthick, BD Joshi, P Prajapati, MSA de Santana, …
Journal: Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, Volume 246, Article 118976
Year: 2021

Sourav De | Medicinal Chemistry | Best Researcher Award

Dr. Sourav De | Medicinal Chemistry | Best Researcher Award

Eminent College of Pharmaceutical Technology, India

👨‍🎓Profiles

🎓 Education and Academic Background

Dr. Sourav De is a distinguished researcher and educator currently affiliated with Eminent College of Pharmaceutical Technology, India. He earned his Doctor of Philosophy (Ph.D.) in Chemistry from the School of Advanced Sciences, Vellore Institute of Technology (VIT), India (March 2017 – December 2020). Under the guidance of Dr. S. K. Ashok Kumar, Professor, his doctoral thesis focused on the design, synthesis, characterization, and anticancer evaluation of various heterocycles and Ru(II)-arene-N^N, N^O, N^S complexes. His strong academic foundation also includes an M.Pharm in Pharmaceutical Chemistry from West Bengal University of Technology (2010–2012), where he graduated with a CGPA of 8.79 (First Class), and a B.Pharm from the University of North Bengal (2006–2010), securing 74% (First Class).

🔬 Research Interests

Dr. Sourav De’s research interests span a diverse range of medicinal chemistry and organometallic chemistry, with a strong emphasis on the therapeutic applications of organic and organometallic complexes. His key areas of focus include: Molecular Modeling and In-Silico Studies for drug discovery and computational chemistry. Chromogenic and Fluorogenic Sensors for biomedical and pharmaceutical applications. Cancer Research, particularly in the treatment of cervical, colon, breast, and brain tumors.

🏆 Research Projects

Dr. De has actively contributed to multiple academic research and technology development projects, showcasing his expertise in cancer theranostics, drug discovery, and molecular design. Notable projects include: DST-SERB Sponsored Project: He worked as a Project Assistant on the Development of novel 2-aryl benzothiazole/benzoxazole, quinoxaline, and phenanthroline analogues as fluorescent probes and cancer theranostics applications (EMR/2017/000816). Grant-in-Aid SEED Fund Research Project: As a Principal Investigator, he led a research project titled “In silico analysis of some ruthenium complexes as potential anti-cancer agents,” funded by Rs. 85,000 (AU/REG/NOT/2021/04/003). With over 11 years and 9 months of research experience, Dr. De has made impactful contributions to the fields of drug development and computational chemistry.

🛠️ Technical Skills

Dr. Sourav De possesses strong technical expertise across various analytical instruments, imaging techniques, and computational tools. His skill set includes: Instruments Handled: UV, FL, FTIR, CD spectroscopy, ELISA reader, Gel Doc, and HPLC. Imaging Techniques: Fluorescent Microscopy, Scanning Electron Microscopy (SEM), and Flow Cytometry. Computational and Analytical Tools: Molecular Modeling & Docking: AutoDock 4.2, AutoDock Vina, Chimera 1.11rc, Open Babel GUI. Data Analysis: Python for scientific computing and data visualization. Plotting and Molecular Visualization: Origin, ChemDraw, ChemSketch. Hands-on Experience: Cell culture, molecular biology, and bioinformatics for drug-target interactions and cancer research.

📚 Teaching Experience

Dr. De is an experienced educator specializing in pharmaceutical and medicinal chemistry. He has taught various subjects, including: Pharmaceutical Chemistry & Medicinal Chemistry, Organic and Inorganic Chemistry, Pharmaceutical Analysis & Instrumental Analysis. His teaching methodology combines practical applications and research-driven insights, ensuring students gain both theoretical knowledge and hands-on experience.

🌟 Future Research and Contributions

Dr. Sourav De is committed to advancing therapeutic drug design, molecular diagnostics, and cancer research. His future work aims to develop targeted anticancer drugs, bioactive organometallic complexes, and AI-driven molecular modeling techniques. With his expertise in pharmaceutical sciences and computational chemistry, he continues to make significant contributions to drug discovery and medicinal research.

📖Notable Publications

  • Pyridine: the scaffolds with significant clinical diversity

    • Authors: S De, AK SK, SK Shah, S Kazi, N Sarkar, S Banerjee, S Dey
    • Journal: RSC Advances
    • Year: 2022
  • Critical role of dipeptidyl peptidase IV: a therapeutic target for diabetes and cancer

    • Authors: S De, S Banerjee, SKA Kumar, P Paira
    • Journal: Mini Reviews in Medicinal Chemistry
    • Year: 2019
  • Synthesis, characterisation, molecular docking, biomolecular interaction and cytotoxicity studies of novel ruthenium (II)–arene-2-heteroarylbenzoxazole complexes

    • Authors: S De, SR Chaudhuri, A Panda, GR Jadhav, RS Kumar, P Manohar, …
    • Journal: New Journal of Chemistry
    • Year: 2019
  • Amberlite IR-120 (H) mediated “on water” synthesis of fluorescent Ruthenium (II)-arene 8-hydroxyquinoline complexes for cancer therapy and live cell imaging

    • Authors: A Mondal, S De, S Maiti, B Sarkar, AK Sk, R Jacob, A Moorthy, P Paira
    • Journal: Journal of Photochemistry and Photobiology B: Biology
    • Year: 2018
  • Luminescent ruthenium (II)-para-cymene complexes of aryl substituted imidazo-1,10-phenanthroline as anticancer agents and the effect of remote substituents on cytotoxic activities

    • Authors: S De, RS Kumar, A Gauthaman, SKA Kumar, P Paira, A Moorthy, …
    • Journal: Inorganica Chimica Acta
    • Year: 2021

Ruby Raj Michael | Organic Chemistry | Best Researcher Award

Dr. Ruby Raj Michael | Organic Chemistry | Best Researcher Award

Yeungnam University, Republic of Korea, India

👨‍🎓Profiles

🎯 Objective

Dr. Ruby Raj Michael is a passionate and innovative researcher with expertise in organic chemistry, polymer chemistry, materials science, and chemical engineering. She is dedicated to pioneering cutting-edge research in energy storage materials, organic electronic materials, and polymer-based solar cells at prestigious research institutions and universities worldwide.

🎓 Academic Background

Dr. Ruby Raj Michael has a strong academic foundation in chemistry and materials science, with the following degrees:

✔️ Ph.D. in Chemistry (Materials Chemistry) (2008-2013) – National Institute of Technology, Tiruchirappalli, India.
🔹 Thesis: Design and Synthesis of Organic Polymers-Based Solar Cells
🔹 Supervisor: Prof. Dr. S. Anandan

✔️ M.Sc. in General Chemistry (2003-2005) – St. Joseph’s College (Autonomous), India.
✔️ B.Sc. in General Chemistry (2000-2003) – St. Joseph’s College (Autonomous), India.

🔬 Research Expertise & Interests

Dr. Michael specializes in designing and synthesizing novel materials for energy storage, organic electronics, and polymer chemistry, with research interests including:

✅ Energy Storage Materials & Batteries 🔋
✔️ Silicon-Encapsulated ZIF-67-Based Hollow Carbon Nanocubic Composites for Lithium-ion batteries.
✔️ Spinel Lithium Titanate (LTO) & Copper Cobalt Carbonate Hydroxide (CuCo CH) for advanced battery anodes.
✔️ Metal/Covalent Organic Frameworks (MOFs/COFs) for Lithium/Sodium/Potassium-ion batteries.
✔️ Organic Cathode Materials (Perylenediimide-based Polyimides & Redox-Active Macrocyclic Molecules) for Rechargeable Aluminum-ion Batteries.
✔️ Organic Polymer-Based Electrolytes for Lithium Organic Batteries.

✅ Organic Electronic Materials ⚡
✔️ Design and synthesis of small molecules & conjugated polymers for solar cells, perovskite solar cells, and polymer field-effect transistors (FETs).
✔️ Development of hole-transporting materials for next-generation organic electronic devices.

✅ Key Molecular Design Keywords:
🔹 Benzodithiophene (BDT), Thienyl-Substituted BDT (BDTT), Spiro[fluorene-9,9’-xanthene]-based 3D Oligomers, Thienoisoindigo Units.

📚 Academic Impact & Publications

Dr. Michael’s research has led to multiple high-impact SCI publications, contributing to the advancement of energy storage and organic electronics. Her work is widely cited, reflecting its influence in materials chemistry and polymer research.

🛠️ Technical Skills & Expertise

Dr. Michael has expertise in:
✔️ Organic & Polymer Synthesis – Development of functional materials for energy and electronic applications.
✔️ Electrochemical Characterization – Battery performance analysis, cyclic voltammetry, electrochemical impedance spectroscopy.
✔️ Materials Characterization – X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FTIR), UV-Vis Spectroscopy.
✔️ Device Fabrication & Testing – Polymer solar cells, perovskite solar cells, lithium-ion battery assembly.

🎓 Teaching & Mentorship

As a dedicated mentor and educator, Dr. Michael has guided students in organic chemistry, polymer science, and materials engineering, fostering the next generation of researchers in sustainable energy materials.

🌍 Future Research Vision

Dr. Michael’s research vision focuses on:
🔹 Developing next-generation energy storage materials for high-performance and sustainable batteries.
🔹 Innovating organic electronic materials for efficient and cost-effective solar cells.
🔹 Exploring hybrid polymer frameworks for multifunctional applications in energy and electronics.

📖Notable Publications

  • Fabrication of high-efficiency perovskite solar cells using benzodithiophene-based random copolymeric hole transport material

    • Authors: Vijay Srinivasan Murugesan, Michael Ruby Raj, Hock Beng Lee, Neetesh Kumar
    • Journal: Electrochimica Acta
    • Year: 2025
  • Recent Advances in Development of Organic Battery Materials for Monovalent and Multivalent Metal-Ion Rechargeable Batteries

    • Authors: Michael Ruby Raj, Gibaek Lee, Mogalahalli Venkatashamy Reddy, Karim Zaghib
    • Journal: ACS Applied Energy Materials
    • Year: 2024
  • Extraordinary Ultrahigh‐Capacity and Long Cycle Life Lithium‐Ion Batteries Enabled by Graphitic Carbon Nitride‐Perylene Polyimide Composites

    • Authors: Michael Ruby Raj, Jungwon Yun, Dong‐kyu Son, Gibaek Lee
    • Journal: Energy & Environmental Materials
    • Year: 2023
  • Oxygen vacancy-modulated zeolitic Li₄Ti₅O₁₂ microsphere anode for superior lithium-ion battery

    • Authors: Seohyeon Yeo, Michael Ruby Raj, Gibaek Lee
    • Journal: Electrochimica Acta
    • Year: 2023
  • Hollow Porous N and Co Dual-Doped Silicon@Carbon Nanocube Derived by ZnCo-Bimetallic Metal–Organic Framework toward Advanced Lithium-Ion Battery Anodes

    • Authors: Hongjung Kim, Jinhyuk Baek, Dong-Kyu Son, Michael Ruby Raj, Gibaek Lee
    • Journal: ACS Applied Materials & Interfaces
    • Year: 2022

Ghanshyam Teli | Medicinal Chemistry | Best Researcher Award

Mr. Ghanshyam Teli | Medicinal Chemistry | Best Researcher Award

School of Pharmacy, Sangam University, India

👨‍🎓Profiles

👨‍🎓 Early Academic Pursuits

Mr. Ghanshyam Teli’s academic journey began with a strong foundation in pharmacy. He earned his B. Pharmacy from Geetanjali University in 2019 with a commendable 73.7%. His academic pursuit continued with a M. Pharmacy from ISF College of Pharmacy in 2021, where he achieved an impressive 82%. Currently, he is pursuing his Ph.D. at Baba Farid University of Health Sciences, enhancing his expertise in the field. His early academic focus was on chemical synthesis and drug discovery, where he worked on several research projects related to anti-cancer agents and inhibitors of oncogenic pathways.

🧑‍🔬 Professional Endeavors

Mr. Teli has gained considerable professional experience, particularly in both academic and industrial settings. He has worked for 1.5 years as an Assistant Professor at the School of Pharmacy, Sangam University, Bhilwara, India, where he has been able to share his knowledge with students while continuing his research. His professional experience also includes 13 months at United Biotech Pvt Ltd as an Assistant R&D Chemist, where he contributed to several high-impact projects, including the synthesis of 4-Thiazolidinone derivatives and the development of Paclitaxel-HSA complex. Additionally, he spent 1 year as a Junior Research Fellow (JRF) at Acharya and B.M. Reddy College of Pharmacy in Bengaluru, further strengthening his research expertise.

🔬 Contributions and Research Focus

Mr. Teli's research contributions have primarily focused on drug design, synthesis, and evaluation, with a particular emphasis on creating compounds for anti-cancer treatment. His work on 4-thiazolidinone conjugates as potential anti-breast cancer agents is notable, along with his project on the discovery of triangular heterocyclic molecules to inhibit dual oncogenic pathways. His research aims to contribute to developing novel therapeutic strategies for cancer treatment, especially targeting HSP90 and BRAF kinases.

🌍 Impact and Influence

Mr. Teli's professional journey demonstrates his commitment to both academia and industry. His industrial experience has allowed him to engage in multi-step synthesis processes and biological evaluations, making a tangible impact on pharmaceutical development. As an educator, he strives to impart his knowledge and inspire the next generation of pharmacists, sharing insights from both his research and industry experience. His contributions aim to foster innovations in drug design and therapy, particularly in cancer treatments.

📚 Academic Cites and Recognition

While Mr. Teli’s academic work is still evolving, his research projects on drug discovery, particularly in the field of cancer, have the potential for future recognition and citations. His detailed work in the design and synthesis of bioactive compounds, particularly those related to anti-cancer and anti-breast cancer agents, is likely to gain traction and be cited by peers in the academic and research communities.

💻 Technical Skills

Mr. Teli is proficient in several technical aspects of pharmaceutical chemistry, including: Synthesis of chemical compounds and characterization through advanced spectroscopy techniques such as UV, IR, and 1H NMR. Docking studies and predicting ADMET properties (Absorption, Distribution, Metabolism, Excretion, and Toxicity) for potential drug candidates. Handling specialized equipment such as Flash Chromatography, Column Chromatography, Rota-evaporator, Vacuum dryer, UV-Vis Spectrophotometer, and pH meter. Expertise in computational tools like ChemDraw, Autodock, Molegro Virtual Docker (MVD), Pymol, and Discovery Studio, which aid in the structure-activity relationship (SAR) analysis and molecular modeling.

👩‍🏫 Teaching Experience

As an Assistant Professor at the School of Pharmacy, Sangam University, Mr. Teli has honed his teaching skills, fostering a rich learning environment. His ability to explain complex concepts in pharmacy and drug design to students reflects his deep knowledge and communication skills. His teaching approach emphasizes practical application and encourages critical thinking. By sharing his industrial and research experiences, he connects students with real-world pharmaceutical challenges, aiming to inspire future innovations.

🌱 Legacy and Future Contributions

Mr. Teli’s ongoing research and academic efforts hold significant promise for the future of pharmacy education and drug discovery. His work on the synthesis of novel anti-cancer agents, especially those targeting key oncogenic pathways, has the potential to drive breakthroughs in cancer therapy. As he continues to pursue his Ph.D., Mr. Teli is committed to growing as a researcher and educator. He seeks to expand his knowledge, hone his technical skills, and make valuable contributions to drug development while guiding the next generation of pharmaceutical professionals.

📖Notable Publications

  • Synthetic product-based approach toward potential antileishmanial drug development
  • Authors: Pal, R., Teli, G., Akhtar, M.J., Matada, G.S.P.
    Journal: European Journal of Medicinal Chemistry
    Year: 2024
  • An outlook of docking analysis and structure-activity relationship of pyrimidine-based analogues as EGFR inhibitors against non-small cell lung cancer (NSCLC)
  • Authors: Pal, R., Teli, G., Sengupta, S., Maji, L., Purawarga Matada, G.S.
    Journal: Journal of Biomolecular Structure and Dynamics
    Year: 2024
  • Explanatory review on pyrimidine/fused pyrimidine derivatives as anticancer agents targeting Src kinase
  • Authors: Teli, G., Pal, R., Maji, L., Purawarga Matada, G.S., Sengupta, S.
    Journal: Journal of Biomolecular Structure and Dynamics
    Year: 2024
  • Designing strategies, structural activity relationship and biological activity of recently developed nitrogen containing heterocyclic compounds as epidermal growth factor receptor tyrosinase inhibitors
  • Authors: Pal, R., Teli, G., Matada, G.S.P., Dhiwar, P.S.
    Journal: Journal of Molecular Structure
    Year: 2023
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    Journal: European Journal of Medicinal Chemistry
    Year: 2023