Asit Baran Panda | Materials Chemistry | Best Researcher Award

Dr. Asit Baran Panda | Materials Chemistry | Best Researcher Award

CSIR_National Metallurgical Laboratory, India

Author Profile

Early Academic Pursuits 📚

Dr. Asit Baran Panda’s academic journey reflects his unwavering passion for science, especially in chemistry and material science. His foundation was laid with a B.Sc. in Chemistry (Hons.) from Vidyasagar University in 1995, followed by an M.Sc. in Chemistry from Kanpur University in 1998. Dr. Panda’s thirst for advanced knowledge led him to the prestigious Indian Institute of Technology (IIT), Kharagpur, where he completed his Ph.D. in 2004, specializing in nanostructured materials. This robust academic foundation positioned him as a future leader in material science research.

Professional Endeavors 🌍

Dr. Panda currently serves as a Senior Principal Scientist in the Functional Materials Group (FM) of the Advanced Materials and Processes (AMP) Division at CSIR-National Metallurgical Laboratory (CSIR-NML), Jamshedpur. His role involves spearheading cutting-edge research in nanomaterials, energy storage, and environmental solutions. Over the years, he has gained recognition for his innovative work in materials science, contributing significantly to the development of sustainable technologies.

Contributions and Research Focus 🔬

Dr. Panda’s research interests span diverse areas, focusing on the design and synthesis of size, shape, and morphology-selective nanostructured materials. His pioneering efforts include:

  • Energy Conversion and Storage ⚡
    Dr. Panda has made remarkable contributions to the development of Li-ion batteries and capacitors, essential for advancing renewable energy solutions. He has also worked extensively on visible-light-driven photocatalysis for clean energy generation and water splitting to produce sustainable hydrogen fuel.
  • Environmental Remediation 🌱
    He has developed innovative nanostructures for tackling environmental pollutants, contributing to eco-friendly and sustainable solutions.
  • Heterogeneous Catalysis for Green Chemistry ♻️
    Dr. Panda’s work in designing catalysts for green chemical processes aligns with global efforts toward reducing industrial carbon footprints.
  • Inorganic Pigments 🎨
    His expertise extends to inorganic pigments, driving advancements in materials for industrial applications.

Accolades and Recognition 🏆

Dr. Panda’s groundbreaking research has earned him numerous accolades and recognition. As a senior scientist at a leading national research institution, his contributions are widely acknowledged in academic and industrial circles. His innovations have significantly impacted material science and its applications in energy, environment, and industry.

Impact and Influence 🌟

Dr. Panda’s work has had a profound impact on the field of nanomaterials. His advancements in energy storage have the potential to revolutionize the renewable energy sector, enabling efficient and sustainable solutions. Moreover, his contributions to environmental remediation and green chemistry underscore his commitment to addressing pressing global challenges.

Legacy and Future Contributions 🌐

As a researcher, mentor, and innovator, Dr. Panda continues to inspire the next generation of scientists. His vision for creating sustainable and efficient materials aligns with global priorities for clean energy and environmental conservation. Future endeavors may include:

  • Expanding research in graphene-based nanomaterials for multifaceted applications.
  • Developing next-generation materials for solar energy harvesting.
  • Collaborating globally to tackle challenges in environmental sustainability and energy efficiency.

Citations

A total of 7434 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations        7434
  • h-index          50
  • i10-index       114

Notable Publications

  • Stimulus-Responsive, Biodegradable, Biocompatible, Covalently Cross-Linked Hydrogel Based on Dextrin and Poly(N-isopropylacrylamide) for in Vitro/in Vivo
    • Authors: D. Das, P. Ghosh, A. Ghosh, C. Haldar, S. Dhara, A. B. Panda, S. Pal
    • Journal: ACS Applied Materials & Interfaces
    • Year: 2015.
  • Dextrin and Poly(Acrylic Acid)-Based Biodegradable, Non-Cytotoxic, Chemically Cross-Linked Hydrogel for Sustained Release of Ornidazole and Ciprofloxacin
    • Authors: D. Das, P. Ghosh, S. Dhara, A. B. Panda, S. Pal
    • Journal: ACS Applied Materials & Interfaces
    • Year: 2015.
  • Dextrin Cross Linked with Poly(HEMA): A Novel Hydrogel for Colon-Specific Delivery of Ornidazole
    • Authors: D. Das, R. Das, P. Ghosh, S. Dhara, A. B. Panda, S. Pal
    • Journal: RSC Advances
    • Year: 2013.
  • Facile Low-Temperature Synthesis of Ceria and Samarium-Doped Ceria Nanoparticles and Catalytic Allylic Oxidation of Cyclohexene
    • Authors: N. Sutradhar, A. Sinhamahapatra, S. Pahari, M. Jayachandran, A. B. Panda
    • Journal: The Journal of Physical Chemistry C
    • Year: 2011.
  • Mesoporous Zirconium Phosphate Catalyzed Reactions: Synthesis of Industrially Important Chemicals in Solvent-Free Conditions
    • Authors: A. Sinhamahapatra, N. Sutradhar, B. Roy, A. Tarafdar, H. C. Bajaj, A. B. Panda
    • Journal: Applied Catalysis A: General
    • Year: 2010.

Thanasekaran Ponpandian | Organic Chemistry | Best Researcher Award

Assoc Prof. Dr. Thanasekaran Ponpandian | Organic Chemistry | Best Researcher Award

CSIR-Indian Institute of Chemical Technology, India

Author Profile

Early Academic Pursuits 📚🎓

Dr. Thanasekaran Ponpandian’s academic journey is a testament to his dedication and passion for organic chemistry. He began his educational path with a B.Sc. in Chemistry from V.H.N.S.N. College in Virudhunagar, Tamil Nadu, where he achieved a solid 74.9%. His undergraduate years laid the foundation for his deep interest in the intricacies of chemical processes. Continuing his academic excellence, Dr. Ponpandian pursued an M.Sc. in Chemistry, securing an impressive 79.8% and earning a University II rank at the prestigious V.H.N.S.N. College.

Dr. Ponpandian’s thirst for knowledge and commitment to his field propelled him further into advanced research, culminating in his Ph.D. in Organic Chemistry from Madurai Kamaraj University. His doctoral research, titled “Sequential Reactions in the Synthesis of Heterocyclic Compounds,” was supervised by the esteemed Dr. S. Muthusubramanian. The work focused on developing new methodologies for synthesizing complex heterocyclic structures, which has far-reaching implications in drug discovery and material science. The academic foundation laid in these early years has provided Dr. Ponpandian with the necessary tools to thrive in his professional career.

Professional Endeavors 💼🔬

Dr. Ponpandian’s professional career has been marked by significant contributions to both the pharmaceutical industry and academic research. Currently, he holds the position of Principal Scientist at the CSIR-Indian Institute of Chemical Technology (IICT) in Hyderabad, India, where he specializes in Organic Synthesis and Process Chemistry. His role involves leading cutting-edge research on the synthesis of novel chemical compounds, with applications in drug development and industrial chemistry. At IICT, Dr. Ponpandian continues to push the boundaries of sustainable chemistry and green synthesis.

Before his current position, Dr. Ponpandian played pivotal roles in the R&D divisions of leading pharmaceutical companies such as Mylan Laboratories Ltd. (a Viatris company) and Inogent Laboratories. His work spanned across multiple levels of responsibility, from Deputy Manager to Group Leader and Senior Group Leader, overseeing the development of Active Pharmaceutical Ingredients (APIs) and advancing processes for drug discovery, especially in the oncology therapeutic area. His contributions helped enhance the efficiency and safety of pharmaceutical products, directly impacting public health.

Dr. Ponpandian’s tenure in the pharmaceutical industry, particularly in oncology, has allowed him to work on the design of molecules that could become the backbone of future cancer therapies. His extensive work with drug synthesis and molecular optimization has positioned him as a thought leader in medicinal chemistry.

Contributions and Research Focus 🧬💡

Dr. Ponpandian’s primary research interests are rooted in organic chemistry, with a strong focus on heterocyclic chemistry, catalysis, and the development of new chemical reactions. His research on sequential reactions in heterocyclic compound synthesis has been groundbreaking, leading to the creation of compounds that are essential for pharmaceutical applications. His work on catalysis has opened up new avenues for creating more sustainable and efficient chemical processes, which are crucial for both the pharmaceutical and industrial sectors.

Additionally, Dr. Ponpandian’s research has contributed to the development of green chemistry processes, minimizing waste and improving the sustainability of chemical manufacturing. His efforts to advance drug discovery have had a significant impact on the design of molecules that exhibit therapeutic activity, particularly in oncology and infectious diseases.

Accolades and Recognition 🏆🌟

Throughout his career, Dr. Ponpandian has garnered recognition for his innovative research and leadership in the field of organic chemistry. His work has been published in high-impact journals, contributing significantly to the scientific community. His research contributions have not only advanced sustainable chemistry but have also set new standards for green chemical processes in the industry.

Dr. Ponpandian’s efforts have been acknowledged by his peers, and he continues to be a respected figure in the pharmaceutical and academic circles. His innovative research in drug development has made him a valuable asset in both industry and academia, bridging the gap between theoretical chemistry and practical application.

Impact and Influence 🌍💊

Dr. Ponpandian’s work has had a far-reaching impact on public health through his contributions to the development of new pharmaceutical compounds. His research on drug synthesis has the potential to lead to the creation of life-saving drugs, particularly in the fight against cancer. His commitment to green chemistry and sustainable practices in chemical synthesis has also influenced the way pharmaceutical and chemical industries approach product development, emphasizing the importance of environmentally friendly and cost-effective processes.

Furthermore, Dr. Ponpandian’s academic background and professional experience have allowed him to mentor the next generation of scientists. He continues to inspire young researchers and students, especially those interested in pursuing careers in organic chemistry and drug development.

Legacy and Future Contributions 🔮🌱

Dr. Ponpandian’s legacy will be defined by his contributions to drug discovery, organic synthesis, and sustainable chemistry. His work has already made an indelible mark on the pharmaceutical industry, and he continues to lead cutting-edge research that could transform healthcare worldwide. In the coming years, Dr. Ponpandian aims to continue expanding his research into bioactive compounds, with a particular focus on discovering novel drug candidates for oncological therapies.

Moreover, Dr. Ponpandian is dedicated to fostering innovation in green chemistry and sustainable manufacturing. He envisions a future where chemical synthesis is environmentally sustainable, ensuring that future generations can benefit from both cutting-edge drugs and a cleaner, safer planet.

Dr. Ponpandian’s continued work in organic chemistry promises to shape the future of medicinal chemistry and sustainable industrial practices. His contributions will undoubtedly leave a lasting legacy in both scientific research and the pharmaceutical industry, inspiring new solutions to global health challenges.

Citations

A total of 255 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations        255
  • h-index          13
  • i10-index       10

Notable Publications 

  • Title: On Water: Diastereoselective Synthesis of Functionalized 3-Nitrodihydroquinolin-4(1H)-ones Under Catalyst-Free Conditions
    Authors: Peter Raj, A.A., Ponpandian, T.
    Journal: European Journal of Organic Chemistry
    Year: 2024.
  • Title: Silver-Mediated Synthesis of 4H-Benzoxazin-4-ones by Intramolecular Decarboxylative O-Acylation Reactions with α-Oxocarboxylic Acid
    Authors: Bharathimohan, K., Ponpandian, T., Jafar, A.A.
    Journal: European Journal of Organic Chemistry
    Year: 2017.
  • Title: Gold-catalyzed Addition Reaction Between Creatinine and Isatin: A Sustainable and Green Chemistry Approach for the Diastereoselective Synthesis of 3-Substituted-3-Hydroxyisatins
    Authors: Parthasarathy, K., Ponpandian, T., Praveen, C.
    Journal: Cuihua Xuebao/Chinese Journal of Catalysis
    Year: 2017.
  • Title: Orally Available Stilbene Derivatives as Potent HDAC Inhibitors with Antiproliferative Activities and Antitumor Effects in Human Tumor Xenografts
    Authors: Kachhadia, V., Rajagopal, S., Ponpandian, T., Narayanan, S., Gopalan, B.
    Journal: European Journal of Medicinal Chemistry
    Year: 2016.
  • Title: Sequential Decarboxylative Azide-Alkyne Cycloaddition and Dehydrogenative Coupling Reactions: One-Pot Synthesis of Polycyclic Fused Triazoles
    Authors: Bharathimohan, K., Ponpandian, T., Ahamed, A.J., Bhuvanesh, N.
    Journal: Beilstein Journal of Organic Chemistry
    Year: 2014.

Ravinder Kumar | Organic Chemistry | Best Researcher Award

Dr. Ravinder Kumar - Organic Chemistry - Best Researcher Award 🏆 

Maharishi Markandeshwar (Deemed to be University), Mullana, Ambala - India

Professional Profiles

Early Academic Pursuits

He embarked on his academic journey with a fervent passion for Organic Chemistry. He pursued his Ph.D. at Kurukshetra University under the guidance of Dr. Raj Kamal, focusing on the synthesis of nitrogen-containing heterocyclic compounds with medicinal significance. His thesis titled "Synthesis of Some Nitrogen Containing Heterocyclic Compounds of Medicinal Importance" laid the foundation for his future research endeavors.

Professional Endeavors

After completing his doctoral studies, he transitioned into an academic role as an Assistant Professor of Organic Chemistry at Maharishi Markandeshwar (Deemed to be University). Here, he teaches courses on Reagents and Heterocyclic Chemistry, as well as Bioorganic and Medicinal Chemistry, imparting his knowledge and expertise to the next generation of chemists.

Contributions and Research Focus in Organic Chemistry

His research interests lie in the synthesis and characterization of novel organic compounds, particularly those with pharmaceutical applications. His work spans the design, synthesis, and structure-activity relationships (SAR) of pharmaceutically relevant scaffolds. Additionally, he is engaged in combinatorial parallel synthesis and diversity-oriented synthesis, aiming to develop innovative methodologies for important organic transformations.

Organic Chemistry is a branch of chemistry that focuses on the study of carbon-containing compounds and their properties, structures, Chemical Compounds, Molecular Structures, Organic Synthesis, Chemical Reactions, composition, reactions, and synthesis. It plays a vital role in understanding the fundamental principles underlying life processes, drug development, materials science, and environmental science.

Accolades and Recognition

Throughout his career, he has received recognition for his contributions to the field of Organic Chemistry. His dedication and scholarly achievements have earned him prestigious awards and memberships, including a lifetime membership in the Indian Science Congress Association (ISCA). Organic chemists investigate the structure, properties, and behavior of various organic molecules, including hydrocarbons, alcohols, acids, esters, and polymers. They explore methods for synthesizing organic compounds and developing new reactions and strategies to create complex molecular architectures. Organic chemistry is essential for advancing various industries, including pharmaceuticals, agriculture, materials science, and biotechnology.

Impact and Influence

His research and teaching efforts have had a significant impact on both academia and industry. His expertise in organic synthesis, compound characterization, and drug design has contributed to advancements in medicinal chemistry. Moreover, his mentorship of students and participation in professional societies have helped cultivate the next generation of chemists.

It encompasses diverse areas such as organic synthesis, spectroscopy, stereochemistry, and reaction mechanisms, contributing to the development of novel materials, medicines, and technologies.

Legacy and Future Contributions

Looking ahead, he aims to continue his pioneering work in Organic Chemistry, with a focus on addressing key healthcare challenges. He envisions establishing a Center of Research Excellence in Medicinal Chemistry to further his mission of developing therapies and vaccines against major public health pathogens. Through his dedication and innovative research, Dr. Kumar is poised to leave a lasting legacy in the field of Organic Chemistry.

Notable Publications

Hemavathi B | Organic Semiconductors for Energy | Best Researcher Award

Dr. Hemavathi B - Organic Semiconductors for Energy - Best Researcher Award 🏆

Dayananda Sagar College of Engineering - India

Professional Profiles

Early Academic Pursuits

Her academic journey is marked by a profound commitment to the field of Chemistry, with a focus on renewable energy and organic semiconductors. She obtained her Bachelor's degree in Polymer Science and Technology from Sri Jayachamarajendra College of Engineering, where she excelled with distinction. Her passion for research led her to pursue a Master's degree in Chemistry from Bhuvaneshwari College, followed by an M.Phil and Ph.D. in Chemistry from the Centre for Nano and Materials Science at Jain University. Her doctoral thesis, titled "Synthesis of conjugated small molecules and polymers for photovoltaic applications," reflects her early dedication to exploring the potential of organic semiconductors for energy generation.

Professional Endeavors

Her professional journey encompasses diverse roles in academia and industry, all centered around her expertise in organic semiconductors for energy applications. She has served as both a Junior and Senior Research Fellow at the Centre for Nano and Material Science, Jain University, where she focused on synthesizing organic molecules and polymers for solar cell applications. Additionally, she has contributed to the academic community as a Lecturer of Chemistry at CPP Junior College, Bangalore. Her industry experience includes roles at LM Glasfiber India Pvt. Ltd., where she worked in production technology application and planning.

Contributions and Research Focus in Organic Semiconductors for Energy

Her research is characterized by her pioneering work in designing and synthesizing conjugated organic molecules and polymers for renewable energy applications. She has made significant contributions to the fabrication of solar cell devices, including dye-sensitized solar cells (DSSCs) and organic photovoltaics (OPVs). Her expertise extends to a range of analytical techniques, including IR, UV, PL, CV, and interpretation of molecules using NMR and mass spectrometry. Through her research, She aims to advance the field of organic electronics and contribute to the development of sustainable energy solutions.Organic semiconductors for energy represent a promising avenue for advancing renewable energy technologies. These materials, derived from organic compounds, offer unique properties that make them attractive for applications such as photovoltaics, energy harvesting, and energy storage. Organic semiconductors hold the potential to revolutionize the renewable energy landscape by enabling the development of efficient, cost-effective, and environmentally friendly energy solutions.

Accolades and Recognition

Her contributions to the field of organic semiconductors for energy have been recognized through various accolades and acknowledgments. Her research publications and presentations have garnered attention within the scientific community, showcasing her innovative approaches and insights. Additionally, her hands-on experience with advanced analytical techniques has positioned her as a respected authority in the field of renewable energy research. Organic electronics, including organic photovoltaics (OPVs) and thin-film transistors (TFTs), are key areas of research within the field of organic semiconductors for energy. OPVs, in particular, hold great promise for solar energy conversion due to their lightweight, flexible, and potentially low-cost nature. By harnessing sunlight and converting it into electricity, organic solar cells pave the way for decentralized energy generation and offer a sustainable alternative to traditional fossil fuel-based power sources.

Impact and Influence

Her research has had a tangible impact on the advancement of renewable energy technologies, particularly in the realm of organic semiconductors. Her work has contributed to the understanding and optimization of materials for solar cell applications, paving the way for more efficient and cost-effective energy harvesting solutions. Furthermore, her mentorship and guidance have inspired future generations of researchers to pursue careers in sustainable energy and organic electronics.

Legacy and Future Contributions

Her legacy is defined by her dedication to pushing the boundaries of knowledge in the field of organic semiconductors for energy. As she continues her academic and research endeavors, she remains committed to exploring new avenues for enhancing the performance and scalability of renewable energy technologies. Her future contributions hold the promise of unlocking new insights and innovations that will shape the future of sustainable energy production and utilization. Her legacy will endure through her ongoing commitment to advancing the frontiers of renewable energy research and her influence on the next generation of scientists and engineers in the field.

Citations

  • Citations               249
  • h-index                   10
  • i10-index                10

Notable Publications