Bong-Gyu Mun | Analytical Chemistry | Best Researcher Award

Assist. Prof. Dr. Bong-Gyu Mun | Analytical Chemistry | Best Researcher Award

Assistant Professor at Chungbuk National University, South Korea

Dr. Bong-Gyu Mun is an accomplished plant biologist and assistant professor at the Department of Environmental and Biological Chemistry, Chungbuk National University. With a strong foundation in plant functional genomics and applied life sciences, Dr. Mun has cultivated an impressive research portfolio focused on plant stress physiology, nano-biotechnology, and sustainable agriculture. His academic trajectory spans over a decade, during which he has significantly contributed to the understanding of plant responses to environmental stresses, particularly through innovative approaches such as the application of nanoparticles, phytohormones, and beneficial microbes. His interdisciplinary work integrates molecular biology, plant physiology, and biochemical studies, earning him recognition in both national and international scientific communities.

Profile

Google Scholar

Education

Dr. Mun earned his Ph.D. in Plant Functional Genomics from Kyungpook National University in August 2017, where he explored the genetic mechanisms governing plant responses to abiotic stresses. He previously received both his Master’s (2012) and Bachelor’s (2010) degrees in Applied Life Science from GyeongSang National University. His academic background has provided him with a robust understanding of the interplay between plant molecular pathways and external environmental stimuli, laying the groundwork for his future research in stress mitigation and crop improvement.

Experience

Dr. Mun’s professional experience encompasses a blend of academic research and applied plant science. Following his Ph.D., he undertook multiple postdoctoral positions at Kyungpook National University and the Temasek Life Sciences Laboratory, where he refined his expertise in agricultural biotechnology and stress physiology. From 2021 to 2023, he served as a research professor at the Institute of Agricultural Science and Technology, focusing on the integration of nanomaterials and plant signaling pathways. In September 2023, he joined Chungbuk National University as an assistant professor, where he continues to pursue cutting-edge research in plant-environment interactions and sustainable crop development.

Research Interest

Dr. Mun’s research interests lie at the intersection of plant molecular biology, environmental stress physiology, and nanotechnology. He is particularly focused on developing strategies to enhance crop resilience under abiotic stresses such as drought, salinity, and heavy metal toxicity. His work includes the use of nanoparticles (e.g., chitosan and GSNO carriers), plant growth-promoting rhizobacteria (PGPR), and natural compounds (e.g., melatonin and fulvic acid) to boost antioxidant defenses and reprogram plant transcriptional responses. Through these innovative approaches, Dr. Mun aims to develop sustainable agricultural practices that improve crop yield and environmental adaptation.

Award

Dr. Mun has been nominated for multiple academic awards and recognitions due to his impactful research contributions in the field of plant stress biology. His interdisciplinary approach, combining genomics, nano-biotechnology, and plant physiology, has led to several high-impact publications and international collaborations. His work is not only academically significant but also offers practical applications in agriculture, contributing to global food security under climate change conditions. His nomination reflects his leadership in research, dedication to academic excellence, and commitment to advancing sustainable agriculture.

Publication

Dr. Mun has authored numerous high-quality research papers, with several published in reputable journals. Selected key publications include:

  1. Enhancing Soybean Salt Tolerance with GSNO and Silicon: A Comprehensive Physiological, Biochemical, and Genetic StudyInternational Journal of Molecular Sciences, 2025.
  2. Deciphering Whether Illite, a Natural Clay Mineral, Alleviates Cadmium Stress in Glycine max Plants via Modulation of Phytohormones and Endogenous Antioxidant Defense SystemSustainability, 2024.
  3. Brown Garlic: A nutritionally improved garlic with therapeutic value in asthma treatment via modulation of S-NitrosothiolsHeliyon, 2024.
  4. Chitosan‐fulvic acid nanoparticles enhance drought tolerance in maize via antioxidant defense and transcriptional reprogrammingPhysiologia Plantarum, 2024.
  5. Fulvic Acid-releasing Chitosan Nanoparticles Promote the Growth and Drought Stress Tolerance of Rice PlantsJournal of Crop Health, 2024.
  6. Halotolerant Pseudomonas koreensis S4T10 mitigate salt and drought stress in Arabidopsis thalianaPhysiologia Plantarum, 2024.
  7. Chitosan-GSNO nanoparticles: a positive modulator of drought stress tolerance in soybeanBMC Plant Biology, 2023.

These publications have been cited by numerous studies, reflecting the high relevance and scientific impact of his research in plant biotechnology and environmental stress adaptation.

Conclusion

Dr. Bong-Gyu Mun exemplifies the qualities of a forward-thinking researcher committed to solving real-world agricultural challenges through scientific innovation. His extensive education, multifaceted research experience, and notable contributions to plant stress physiology underscore his suitability for recognition and support. With a vision for sustainable agriculture and a passion for scientific discovery, Dr. Mun continues to shape the field of plant functional genomics, offering promising solutions to ensure crop productivity and environmental resilience in the face of global climate change.

Zeena Pillai | Organophotochemistry | Best Researcher Award

Prof. Dr. Zeena Pillai | Organophotochemistry | Best Researcher Award

Professor at Amrita Viswa Vidyapeetham, India

Dr. Zeena S. Pillai is a distinguished Professor in the Department of Chemistry at the Amrita School of Physical Sciences, Amritapuri Campus, Amrita Vishwa Vidyapeetham. Her academic and research journey reflects an enduring dedication to advancing the fields of organic photochemistry, supramolecular chemistry, and nanomaterials. With over two decades of professional experience spanning teaching, research, and academic innovation, Dr. Pillai has made notable contributions to both national and international scientific communities. Her work in photophysical and photochemical studies of supramolecular systems, natural product chemistry, and sensor development underscores her role as a pivotal figure in contemporary chemical sciences.

Profile

Scopus

Education

Dr. Pillai commenced her academic journey with a Master’s degree in Chemistry from Mahatma Gandhi University in 1996. She earned her Ph.D. in Photochemistry from the Photonics and Photosciences Division at the National Institute for Interdisciplinary Science and Technology (NIIST), affiliated with the University of Kerala, in 2002. Her passion for research led her to pursue post-doctoral fellowships at two premier research institutions in the United States: the Radiation Laboratory at the University of Notre Dame (2001–2003), and the Department of Chemistry and Biochemistry at Florida State University (2003–2004). These international experiences enhanced her expertise in advanced photophysical techniques and interdisciplinary scientific collaboration.

Experience

Professionally, Dr. Pillai has held various academic positions across India and abroad. She joined Amrita Vishwa Vidyapeetham in January 2009 as a faculty member and currently serves as Professor of Chemistry. Prior to this, she served as visiting faculty at N.S.S. College for Women in Trivandrum and as a lecturer at R.V. College of Engineering, Bangalore. Her postdoctoral research appointments in the U.S. were crucial in shaping her scientific philosophy and introduced her to new frontiers in supramolecular and photochemical research. At Amrita, she has been instrumental in mentoring research scholars, guiding interdisciplinary projects, and contributing to curriculum development for integrated M.Sc. and Ph.D. programs.

Research

Dr. Pillai’s research interests are diverse and impactful. Her key areas include organic photochemistry, supramolecular chemistry, dendrimer systems, nanochemistry, phytochemistry, and applications of photodynamic therapy. She is also involved in the design of fluorescent sensors and studies involving bioactive natural products. Her projects have investigated dendrimers as ligands for lanthanide ions, hierarchical design of hemicyanines for sensing applications, and virtual laboratory development for remote science education. Her current research continues to explore the interface of supramolecular systems and nanomaterials with bio-sensing and photochemical functionalities.

Awards

Throughout her career, Dr. Pillai has received numerous awards and fellowships recognizing her academic excellence and research impact. In 2025, she was honored with the AIRA Award for Research by Amrita University. In 2023, she received the Best Academician Award from InAsc. Her prestigious academic recognitions include the Erasmus Mundus Visiting Professorship at the University of Bologna (2010, 2011), a CSIR Senior and Junior Research Fellowship (1997–2001), and selection through the CSIR-UGC NET in 1997. Additionally, she qualified for GATE 1997 and was a recipient of the National Talent Scholarship during her early academic years.

Publications

Dr. Pillai has authored 31 peer-reviewed journal articles and 7 book chapters. Among her notable publications are:

  1. “Supramolecular Assemblies of Hemicyanines as Heavy Metal Ion Sensors”, Journal of Molecular Liquids, 2021 – cited by 22 articles.

  2. “Photophysical Studies of Lanthanide-Dendrimer Complexes”, Dalton Transactions, 2020 – cited by 18 articles.

  3. “Natural Product-Derived Dyes for Photodynamic Therapy”, Photodiagnosis and Photodynamic Therapy, 2019 – cited by 25 articles.

  4. “Host–Guest Chemistry in Dendrimer-Based Systems”, New Journal of Chemistry, 2018 – cited by 15 articles.

  5. “Hierarchical Design of Hemicyanine Derivatives”, RSC Advances, 2017 – cited by 20 articles.

  6. “Virtual Lab Development for Chemical Education”, Education and Information Technologies, 2016 – cited by 30 articles.

  7. “Photochemical Properties of Bioactive Natural Products”, Journal of Photochemistry and Photobiology B: Biology, 2015 – cited by 28 articles.

These publications reflect her versatility in addressing fundamental and applied problems through interdisciplinary chemistry.

Conclusion

In conclusion, Dr. Zeena S. Pillai is an accomplished academic whose scholarly contributions extend across supramolecular chemistry, photodynamic therapy, and nanochemistry. Her innovative work, recognized nationally and internationally, reflects her deep commitment to scientific inquiry, education, and societal impact. Through mentoring, research, and curriculum innovation, she continues to inspire the next generation of scientists. Her ongoing work in supramolecular photochemistry and virtual education platforms further amplifies her vision of integrating fundamental science with real-world applications. Dr. Pillai’s exceptional profile makes her a strong candidate for prestigious academic awards and recognitions.

Serab Khan | Organic Chemistry | Best Researcher Award

Mr. Serab Khan | Organic Chemistry | Best Researcher Award

Research Fellow at H.E.J. Research Institute for Chemical and Biological Sciences, Pakistan

Dr. Serab Khan, Ph.D. (2024), is a dedicated researcher with an extensive background in organic and medicinal chemistry, focusing on the isolation, derivatization, and characterization of natural products, alongside the synthesis of heterocyclic compounds and a variety of peptides including linear, cyclic, and conjugate forms. His research has centered on developing new analogs of antimicrobial compounds and exploring phytochemicals from Salvadora persica L., making significant contributions to drug development and natural product chemistry. Dr. Khan’s academic journey has been rigorous and impactful, beginning with a Ph.D. at the International Center for Chemical and Biological Sciences (ICCBS), where his research explored novel phytochemicals and synthesized bioactive antimicrobial analogs. His M.Phil. research, also at ICCBS, delved into “Synthesis and Structural Studies of Biologically Important Peptides,” laying the groundwork for his future innovations in peptide synthesis and bioactivity studies. He holds an M.Sc. in Organic Chemistry from the Federal Urdu University of Arts, Science and Technology, a B.Sc. in Chemistry from Kohat University-affiliated college, an F.Sc. from Darra Adam Khel Degree College, and foundational SSC education from G.H.S under the Peshawar Board. In addition to his academic degrees, he also earned a CT from the Capital Institute of Education and a B.Ed. from Allama Iqbal Open University, reflecting his passion for education and pedagogy.

Education

Professionally, Dr. Khan is currently a Visiting Researcher at the University of Nizwa in Oman since October 2024, collaborating on advanced phytochemical analysis and spectroscopic techniques. Prior to this, he served as a Research Fellow at ICCBS in May 2024 and held a Junior Research Fellow position at the same center from April 2015 to May 2019, where he gained practical experience in molecular design and spectroscopic analysis. Earlier in his career, between 2011 and 2015, he was the Principal at Hira Model High School in FR Peshawar, demonstrating strong leadership and educational administration capabilities. His diverse career path reflects a blend of scientific inquiry and academic leadership, underlining his commitment to science and education.

Experience

Dr. Khan’s research interests span natural product chemistry, bioorganic synthesis, peptide chemistry, and antimicrobial compound development. His work on synthesizing novel analogs and bioactive molecules contributes to medical research targeting antimicrobial resistance, cancer, and enzyme inhibition. He has developed innovative methods, such as fluorescence spectroscopy coupled with chemometric models like Partial Least Square Regression (PLSR), for natural compound quantification, demonstrating his interdisciplinary skills bridging chemistry, biology, and analytical sciences.

Research Focus

His academic and scientific achievements have earned him several awards and recognitions. He actively participated in prestigious international symposiums such as the 7th MMDR in 2019, ISNPC-14 in 2018, ISNPF-2 in 2018, and MMDR-6 in 2017, where he presented posters and attended workshops. His scientific excellence was acknowledged with a laptop under the Prime Minister’s Scheme in 2018, and he earned a free GRE voucher and later cleared the GRE Chemistry test with an impressive score of 72.39% in 2016. He was also a recipient of the HEC Merit-Based Scholarship between 2015 and 2019, reinforcing his standing as a promising scholar in Pakistan’s research landscape.

Publications

Dr. Khan has authored several impactful publications in peer-reviewed journals. In 2022, he co-authored “Synthesis of non-ionic surfactants nano-vesicles for clarithromycin oral delivery,” exploring enhanced drug delivery systems. His 2021 publication in Medicinal Chemistry Research titled “Inhibition of jack bean urease by amphiphilic peptides” investigated enzyme inhibition mechanisms. In 2020, he contributed to Biomolecules with a study on “Furan-conjugated tripeptides as potent antitumor drugs”, reflecting his focus on cancer therapeutics. His 2019 paper in Journal of Molecular Liquids examined “Peptide-conjugated silver nanoparticles for selective detection of Hg²⁺ in human plasma and tap water,” merging nanotechnology and environmental monitoring. He also collaborated on a 2018 study in Journal of Asian Natural Products Research on “Leishmanicidal and antibacterial metabolites from Olea ferruginea.” Two of his most recent manuscripts—“Triterpenoid saponins from Tetrapleura tetraptera” and “Modulating Indanol Activity: Derivatization Strategies for Enhanced Enzyme Inhibition and Anticancer Potential”—have been submitted for publication. Collectively, his works have been cited 122 times with an h-index of 7 and an i10-index of 5, indicating his rising influence in the scientific community.

Conclusion

In conclusion, Dr. Serab Khan exemplifies a modern chemist with a passion for natural product research, bioorganic synthesis, and applied medicinal chemistry. His journey from academia to international research collaboration reflects a deep commitment to innovation and scientific contribution. With his expertise, interdisciplinary approach, and dedication to research excellence, Dr. Khan continues to push the boundaries of bioactive compound development and analytical methodology. His future promises impactful discoveries in natural therapeutics and molecular drug design, making him a strong contender for any award recognizing outstanding contributions in chemical and biological sciences.