Galla V. Karunakar | Chemistry | Best Researcher Award

Dr. Galla V. Karunakar | Chemistry | Best Researcher Award

CSIR-Indian Institute of Chemical Technology, Hyderabad, India

Author Profile

Early Academic Pursuits 🎓

Dr. Galla V. Karunakar’s journey in the world of chemistry began at an early stage with his foundational studies at CSR Sarma College, Nagarjuna University, Ongole, Andhra Pradesh. After completing his Bachelor of Science (B.Sc.) in 1994, he pursued a Master of Science (M.Sc.) in Chemistry from the University of Hyderabad in 1997. His deep interest in chemistry led him to further his studies and obtain an M.Phil. from the University of Hyderabad in 1998. Not stopping there, Dr. Karunakar earned his Ph.D. in Organic Chemistry from the University of Hyderabad in 2006, where he worked under the guidance of eminent professors. His academic background laid a solid foundation for his future professional endeavors and research career.

Professional Endeavors 💼

Dr. Karunakar’s professional career began with a series of positions at prestigious institutions, where he gained invaluable experience and honed his skills. In August 1998, after completing his M.Phil., Dr. Karunakar joined the University of Hyderabad as a Research Fellow in the School of Chemistry. Here, he conducted pioneering research under the supervision of Professor M. Periasamy, which significantly contributed to the field of organic chemistry. His work involved complex chemical syntheses and the exploration of various molecular structures.In 2006, he transitioned to an international research environment as a Max-Planck Postdoctoral Fellow at the Max Planck Institute of Molecular Physiology, Dortmund, Germany, under the mentorship of Professor Herbert Waldmann. This opportunity allowed Dr. Karunakar to expand his research focus and collaborate with global experts, giving him a broader perspective on the chemical sciences.Returning to India in 2008, Dr. Karunakar worked as a Scientist at Neuland Laboratories Limited, Hyderabad, where he contributed to pharmaceutical research and development. His time at Neuland Laboratories was marked by innovative contributions to drug discovery and chemical processes, particularly in the field of medicinal chemistry.Dr. Karunakar’s career trajectory then took him to CSIR-Indian Institute of Chemical Technology (IICT), Hyderabad, where he initially joined as a Scientist in 2008. Over the years, he climbed the ranks, becoming Senior Scientist in 2014, and ultimately Principal Scientist in 2018. At IICT, Dr. Karunakar made significant contributions to the Organic Chemistry Division, focusing on synthetic organic chemistry and the development of novel compounds for industrial applications. His research at IICT continues to push the boundaries of organic chemistry, particularly in the areas of drug design, material science, and sustainable chemistry.

Contributions and Research Focus 🔬

Dr. Karunakar’s research primarily focuses on synthetic organic chemistry, with an emphasis on the development of novel chemical compounds and the exploration of their potential applications. His work has significant implications in various fields, including pharmaceuticals, materials science, and environmental chemistry. At CSIR-IICT, his research on green chemistry and sustainable chemical processes has gained widespread recognition. Dr. Karunakar has also worked extensively in the development of bioactive compounds, with potential applications in the pharmaceutical industry.One of Dr. Karunakar’s significant contributions is in the field of drug discovery, where he has explored new methodologies for the synthesis of bioactive molecules that could aid in the treatment of diseases such as cancer and infectious diseases. His work also includes developing chemical processes that are environmentally friendly and sustainable, which is a crucial aspect of modern chemistry.

Accolades and Recognition 🏆

Dr. Karunakar has received multiple accolades for his outstanding contributions to the field of organic chemistry. His research has not only advanced the understanding of organic reactions and molecular synthesis but also demonstrated significant commercial and industrial applications. As a result, Dr. Karunakar has been recognized both in India and internationally. His leadership and expertise in the Organic Chemistry Division at CSIR-IICT have made him a respected figure in the scientific community.Moreover, his postdoctoral work at the prestigious Max Planck Institute and his involvement with Neuland Laboratories in drug development further cement his status as a leader in his field. His academic contributions have also been widely cited in various high-impact scientific journals, contributing to the global body of knowledge in chemistry.

Impact and Influence 🌍

Dr. Karunakar’s impact extends beyond his individual research contributions. As a Principal Scientist at CSIR-IICT, he has mentored and guided numerous young researchers and scientists, fostering a culture of innovation and scientific rigor. His ability to bridge the gap between fundamental research and industrial application has been invaluable to the development of practical solutions in the chemical and pharmaceutical industries. His mentorship has inspired countless students and young scientists, helping to shape the next generation of chemists.Furthermore, Dr. Karunakar’s research has had a direct impact on the development of sustainable chemical processes, which have far-reaching implications for environmental conservation. By focusing on green chemistry, he has contributed to the reduction of toxic byproducts in chemical manufacturing, thus promoting more eco-friendly practices in industrial chemistry.

Legacy and Future Contributions 🔮

Dr. Karunakar’s legacy in the field of organic chemistry will likely continue for years to come through the ongoing research at CSIR-IICT and his contributions to the scientific community. His work in synthetic chemistry, particularly with regard to bioactive compounds and sustainable chemical processes, promises to leave a lasting imprint on both the scientific and industrial landscapes.Looking to the future, Dr. Karunakar’s research will likely expand into new areas of materials science and biochemistry, with continued focus on developing innovative solutions for real-world problems. His vision for sustainable and eco-friendly chemistry remains central to his future projects, and he is expected to play a key role in the ongoing evolution of green chemistry. Through his continued leadership and research contributions, Dr. Karunakar will undoubtedly shape the future of organic chemistry for the better.

Citations

A total of 1067 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations         1067
  • h-index           57
  • i10-index        19

Notable Publications 

  • Ru-nanoparticles supported on zeolite-Y for ortho-benzylation of phenols and activation of H2O2 for selective synthesis of BINOLs
    Authors: Biswas, S., Barman, D., Dutta, P., Zaki, M.E.A., Bania, K.K.
    Journal: Catalysis Science and Technology, 2024.
  • Gold(I)-Catalyzed Regioselective Synthesis of Indenylidene Derivatives via 1,5-Acryl Migration
    Authors: Karunakar, G.V., Bharath Kumar, P., Rami Reddy, P.V., Emmaniel Raju, C., Sridhar, B.
    Journal: Chemistry – An Asian Journal, 2024.
  • Rh(III)-Catalyzed Chemoselective [4 + 2] Annulations for the Synthesis of [1,3]Oxazinoindolones: A Combined Experimental and Computational Study
    Authors: Bharath Kumar, P., Raju, C.E., Roy, S., Sridhar, B., Karunakar, G.V.
    Journal: Organic Letters, 2024.
  • Dual gold-catalyzed regioselective synthesis of benzofulvenes via 5-endo dig cyclization
    Authors: Sreenivasulu, G., Sridhar, B., Karunakar, G.V.
    Journal: Organic and Biomolecular Chemistry, 2023.
  • Silver-catalyzed Regioselective Synthesis of N-aryl-1H-pyrazolyl-substituted Benzenesulfonamides from Ynamides and Pyrazoles
    Authors: Karunakar, G.V., Raju, C.E., Himaja, K.S.B.N., Kumar, P.B., Sridhar, B.
    Journal: Chemistry – An Asian Journal, 2023.

Kishan Shankarrao | Chemistry | Lifetime achievement Award

Prof. Kishan Shankarrao - Chemistry - Lifetime achievement Award 🏆

Shrikrishna Mahavidhyalya Gunjoti - India

Professional Profiles

Early Academic Pursuits

He embarked on his academic journey with a profound passion for chemistry, evident from his early years. Born on August 15, 1968, his fascination with the intricacies of chemical reactions and atomic structures fueled his educational pursuits. Graduating with distinction, he delved into the world of chemistry, laying the foundation for his illustrious career.

Professional Endeavors

With an impressive teaching experience spanning over 30 years, he has shaped countless minds as the Head of the Department of Chemistry at Shrikrishna Mahavidyalaya, Gunjoti. His dedication to fostering academic excellence and nurturing young talent has been instrumental in shaping the next generation of chemists.

Contributions and Research Focus in Chemistry

His research activities over 15 years have been marked by groundbreaking contributions to the field of chemistry. His focus on molecular compounds, chemical reactions, and atomic structures has led to significant advancements in our understanding of fundamental chemical principles. Through rigorous experimentation and scholarly inquiry, he has unearthed invaluable insights into the intricacies of chemical processes, paving the way for innovative applications in various domains.

Accolades and Recognition

The culmination of His tireless efforts and scholarly achievements has been duly recognized with numerous accolades and awards. His prolific publication record, comprising 71 publications (23 international and 48 national), stands as a testament to his scholarly prowess and unwavering commitment to advancing the frontiers of chemistry. Additionally, his receipt of 7 Ph.D. awards underscores his prowess as a mentor and researcher, shaping the future trajectory of the field.

Impact and Influence

His influence extends far beyond the confines of academia, permeating the realms of research, education, and community engagement. His major research project, sponsored by the UGC, exemplifies his ability to secure substantial funding and execute impactful research initiatives. Moreover, his mentorship of numerous Ph.D. students underscores his dedication to cultivating the next generation of scientific leaders, ensuring a lasting legacy of excellence in chemistry.

Legacy and Future Contributions

As he continues to chart new frontiers in chemistry, his legacy as a visionary researcher and educator remains indelibly etched in the annals of scientific history. His unwavering commitment to pushing the boundaries of knowledge and fostering interdisciplinary collaboration promises to shape the future trajectory of the field. With his steadfast dedication and pioneering spirit, he is poised to leave an indelible mark on the landscape of chemistry, inspiring generations to come to unravel the mysteries of the molecular world.

Citations

  • Citations               934
  • h-index                  14
  • i10-index               16

Notable Publications

 

Neetik Mukherjee | Chemistry | Best Researcher Award

Neetik Mukherjee | Best Researcher Award Winner 2023🏆

Dr. Neetik Mukherjee : Chemistry

Congratulations, Dr. Neetik Mukherjee, on winning the esteemed Best Researcher Award from Research! Your dedication, innovative research, and scholarly contributions have truly made a significant impact in your field. Your commitment to advancing knowledge and pushing the boundaries of research is commendable. Here's to your continued success in shaping the future of academia and making invaluable contributions to your field. Well done!

He is an accomplished and respected figure in the field of theoretical chemistry and quantum physics. With an extensive background in academia and research, he has held significant positions at various esteemed institutions. He has served as a Post-Doctoral Fellow at the Indian Institute of Science Education and Research (IISER) Kolkata, contributing profoundly to the understanding of quantum systems under extreme high-pressure conditions. His research primarily focuses on spectroscopic properties, information entropy, and dynamical studies of confined quantum systems. Over the years, he has published extensively in reputable scientific journals, presenting groundbreaking work on high-pressure-induced transformations in atoms and molecules. His research has not only expanded the fundamental knowledge in quantum physics and chemistry but also holds promise for applications in materials science and high-pressure physics. His commitment to advancing education and fostering innovative research methodologies reflects in his aspiration to build a robust theoretical chemistry facility. His influence and impact in the scientific community continue to grow as he pushes the boundaries of understanding in his field. Please note that there might have been developments in his career beyond my last update, so I recommend checking more recent sources for the most current professional details about him.

Professional Profiles:

Early Academic Pursuits :

He initiated his academic journey with a strong emphasis on the study of Quantum Physics, Chemical Systems, and Computational Methods. His foundational education began with a solid grounding in Mathematics and Physics, providing a robust base for his later academic explorations.

Professional Endeavors :

He has demonstrated an impressive trajectory in academia and research, beginning with his roles as a CSIR-NET JRF and CSIR SRF at the University of Calcutta. His research journey progressed through various significant roles, including Post-Doctoral Fellow at IISER Kolkata, SERB National Post-Doctoral Fellow, and CSIR Senior Research Associate. These experiences provided him with comprehensive exposure and expertise in his field.

Contributions and Research Focus in Chemistry:

His prolific contributions encompass a diverse array of research topics such as Quantum Systems under Extreme High-Pressure Conditions, Spectroscopic Properties of Confined Quantum Systems, DFT Studies of Phase Transitions, Superconductivity, and Bonding Patterns of Boron, Carbon, Nitrogen, and Silicon-containing Materials under High Pressure. His work on Multipole Oscillator Strength, Information Entropy, and Dynamical Studies of D-Dimensional Confined Quantum Systems has significantly expanded the realms of Quantum Physics, Chemistry, and Materials Science.

Accolades and Recognition :

His contributions have been widely acknowledged and recognized in the scientific community. His publications in reputable journals such as Quantum Reports, Journal of Physics B, and Physical Review A stand as testaments to the quality and significance of his research. Several of his manuscripts have been considered significant contributions by editors, further highlighting the impact of his work.

Impact and Influence :

His research on high-pressure-induced transformations in atoms and molecules, including altered chemical reactions, modification of chemical bonds, and compression of van der Waals interactions, has not only expanded fundamental knowledge but also holds promising applications in materials science, high-pressure physics, and quantum chemistry.

Legacy and Future Contributions :

His legacy lies in his pioneering research that bridges the gap between Quantum Spectroscopy, Information Theory, and High-Pressure Physics. His future contributions are anticipated to delve deeper into exploring confined quantum systems, extending existing formalisms, and incorporating quantum machine learning strategies to advance our understanding of matter's behavior in extreme environments. His commitment to education and his aspiration to build a robust theoretical chemistry facility reflect his dedication to nurturing future scientific talent and furthering innovative research methodologies.

Notable Publications :

Citations:

A total of  730 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations    380    350
  • h-index       11       11
  • i10-index    13       13