Arindam Ghosh | Chemistry and Materials Science | Innovative Research Award

Innovative Research Award

Arindam Ghosh
Assistant Professor, VIT Bhopal University, India

Arindam Ghosh
Affiliation VIT Bhopal University
Country India
Scopus ID 60090056600
Documents 27
Citations 425
h-index 11
Subject Area Chemistry and Materials Science
Event Top Teachers Awards
ORCID 0000-0002-3079-4855
Google Scholar b2a6vD8AAAAJ

Arindam Ghosh is an Assistant Professor in the Department of Chemistry at VIT Bhopal University, India. His academic profile is centered on organic chemistry, expanded porphyrinoids, Möbius aromaticity, molecular design, renewable energy materials, organometallic chemistry, biomolecular investigations, and computational chemistry. Through interdisciplinary research integrating synthesis, spectroscopy, crystallography, and theoretical calculations, he has established a scholarly record recognized through international publications, citations, and collaborative research activities.[1][2]

Abstract

This article presents an academic overview of Arindam Ghosh and evaluates his scholarly achievements in relation to the Innovative Research Award. His work spans expanded porphyrinoids, aromaticity studies, renewable energy applications, organometallic systems, and biomolecular investigations. The integration of experimental chemistry with computational methodologies has contributed to advances in molecular design and structure–property relationships, supported by a documented research record and international collaborations.[3][4]

Keywords

Expanded Porphyrinoids, Möbius Aromaticity, Organic Chemistry, Renewable Energy, Organometallic Chemistry, Biomolecules, Molecular Design, Computational Chemistry, DFT Studies, Spectroscopic Characterization, Materials Science, Academic Research.

Introduction

Arindam Ghosh completed doctoral research in chemistry with specialization in organic chemistry and porphyrinoid science. His academic activities encompass synthesis of functional organic molecules, spectroscopic characterization, single-crystal X-ray diffraction, and computational investigations. Beyond molecular chemistry, his teaching and research interests extend to environmental sustainability, renewable energy technologies, biodiversity, pollution control, and sustainable development, reflecting an interdisciplinary academic approach.[5]

Research Profile

The research profile of Arindam Ghosh demonstrates sustained scholarly engagement in chemistry and materials science. According to available scholarly metrics, his Scopus profile records 27 indexed documents, 425 citations, and an h-index of 11, while his Google Scholar profile reports 242 citations and an h-index of 8. His collaborations include researchers from NIIST Thiruvananthapuram, Yonsei University, Banaras Hindu University, Chandigarh University, and VIT Bhopal University, supporting international and interdisciplinary research activities.[1][3]

Research Contributions

His research contributions encompass four major domains. In expanded porphyrinoids, he has investigated molecular design, synthesis, aromatic switching, Möbius aromaticity, and structure–property relationships. In renewable energy research, he has explored porphyrinoid-based systems for solar energy conversion and photocatalytic applications. His organometallic chemistry studies include transition-metal complexes supported by crystallographic and computational analyses. Additionally, he has applied molecular and computational approaches to biomolecules with relevance to sensing and biomedical research.[5][6]

Publications

The publication record of Arindam Ghosh includes influential contributions to aromaticity and expanded porphyrinoid chemistry. Notable studies include investigations of bicyclic Baird-type aromaticity published in Nature Chemistry, and research on π-fused core-modified heptaphyrins and nonaphyrins demonstrating Möbius aromaticity and structural diversity. These publications have contributed to contemporary understanding of molecular topology, aromatic behavior, and advanced macrocyclic systems in modern chemistry.[4][5][6]

Research Impact

Research impact is reflected through citation performance, publication visibility, and scholarly influence. The documented citation record demonstrates that the research outputs have received recognition within the international scientific community. Contributions to aromaticity theory, macrocyclic chemistry, and molecular materials have been cited across related fields of chemistry and materials science. His academic work is further supported by a published book titled Medicinal Crops of India: Therapeutic Benefits and Applications, illustrating broader engagement with applied scientific themes.[1][4]

Award Suitability

Consideration for the Innovative Research Award is supported by a combination of scholarly productivity, interdisciplinary research contributions, citation impact, and international collaboration. The researcher has demonstrated expertise in fundamental chemistry while extending investigations toward renewable energy, environmental sustainability, and biomolecular applications. The integration of experimental and computational approaches, together with contributions to advanced aromatic systems, aligns with recognized criteria commonly associated with academic research excellence and innovation.[1][5]

Conclusion

Arindam Ghosh has established a research profile characterized by contributions to expanded porphyrinoid chemistry, aromaticity studies, renewable energy materials, and interdisciplinary scientific investigations. His publication record, citation metrics, collaborative research network, and educational contributions collectively reflect a sustained commitment to academic scholarship and scientific advancement. The documented achievements provide a strong scholarly foundation for recognition within research-oriented academic award frameworks.[1][4]

References

  1. Elsevier. (n.d.). Scopus author details: Arindam Ghosh, Author ID 60090056600. Scopus. https://www.scopus.com/authid/detail.uri?authorId=60090056600
  2. ORCID. (n.d.). ORCID profile: Arindam Ghosh. https://orcid.org/0000-0002-3079-4855
  3. Google Scholar. (n.d.). Scholar profile and citation metrics for Arindam Ghosh. https://scholar.google.com/citations?user=b2a6vD8AAAAJ&hl=en
  4. Cha, W. Y., Kim, T., Ghosh, A., Zhang, Z., Ke, X. S., Ali, R., Lynch, V. M., Jung, J., & Kim, D. (2017). Bicyclic Baird-type aromaticity. Nature Chemistry, 9(12), 1243–1248. https://www.nature.com/articles/nchem.2834
  5. Ghosh, A., Chaudhary, A., Srinivasan, A., Suresh, C. H., & Chandrashekar, T. K. (2016). π-Fused core-modified heptaphyrin with Möbius aromaticity. Chemistry – A European Journal, 22(12), 3942–3946. DOI: https://doi.org/10.1002/chem.201505116
  6. Ghosh, A., Srinivasan, A., Suresh, C. H., & Chandrashekar, T. K. (2016). π-Fused and nonfused core-modified nonaphyrins: Syntheses and structural diversity. Chemistry – A European Journal, 22(32), 11152–11155. DOI: https://doi.org/10.1002/chem.201602245

Alexander Agafonov | Chemistry and Materials Science | Research Excellence Award

Prof. Alexander Agafonov | Chemistry and Materials Science | Research Excellence Award

G.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences | Russia

Alexander Agafonov is a distinguished researcher in functional nanomaterials and advanced inorganic systems, with a strong focus on electrorheological fluids, ionogels, and photocatalytic heterostructures. His work spans catalysts for motor fuel production, porous oxide nanostructures, and innovative materials for adsorption and drug delivery applications. He has made significant contributions to the understanding of materials science fundamentals in nanotechnology and inorganic chemistry. With an extensive research output of 220 Scopus-indexed documents, 2,742 citations, and an h-index of 23, his scholarly impact reflects sustained excellence and influence in the field. His research continues to advance cutting-edge developments in nanomaterials and applied chemistry.

Citation Metrics (Scopus)

3000
2500
2000
1500
1000
500
0

Citations
2742

h-index
23

Documents
220

Citations

h-index

Documents

Featured Publications

Okram Mukherjee Singh | Chemical Sciences | Lifetime achievement Award

Prof. Okram Mukherjee Singh | Chemical Sciences | Lifetime achievement Award

Professor at Manipur University, India.

Dr. Okram Mukherjee Singh is a distinguished professor in the Department of Chemistry at Manipur University, India. With over three decades of teaching and research experience, he specializes in organic chemistry, particularly in heterocyclic compounds and spectroscopy applications. He has significantly contributed to chemistry education, research, and popularization through numerous publications, conferences, and workshops. As a mentor, he has guided many Ph.D. scholars, advancing research in bioactive molecules and catalysis. His international presence includes invited talks at global conferences, reflecting his esteemed reputation. Dr. Singh has also played a pivotal role in organizing national and international chemistry symposia. His contributions to the field have earned him prestigious awards and fellowships. Dedicated to sustainable chemical research, his work continues to impact medicinal chemistry and material sciences. With a passion for innovation, he remains committed to advancing the frontiers of organic chemistry.

professional profiles📖

GOOGLE SCHOLAR

SCOPUS

ORCID

Education 🎓

Dr. Okram Mukherjee Singh holds an M.Sc. and Ph.D. in Chemistry. His academic journey began with a strong foundation in organic chemistry, which led to his specialization in heterocyclic chemistry and spectroscopy. His doctoral research focused on developing novel methodologies for synthesizing bioactive heterocycles, laying the groundwork for his future contributions to medicinal chemistry. Over the years, he has expanded his expertise into catalytic processes and green chemistry. His educational background, combined with extensive postdoctoral research and collaborations, has positioned him as a thought leader in chemical sciences. He actively engages in academic curriculum development, ensuring the next generation of chemists is well-equipped with advanced knowledge. His scholarly achievements and commitment to academic excellence have earned him respect in the global chemistry community. Through continuous learning and research, Dr. Singh remains at the forefront of organic synthesis and chemical education.

work Experience💼

Dr. Okram Mukherjee Singh has an illustrious career spanning 30 years in academia, research, and scientific leadership. Currently a Professor at Manipur University, he has mentored numerous postgraduate and doctoral students. His expertise in organic chemistry, particularly in heterocyclic synthesis and spectroscopy, has led to groundbreaking research contributions. He has organized and chaired multiple national and international chemistry conferences, fostering collaboration among researchers. Beyond teaching, he has been an active participant in government-sponsored research projects, working on bioactive molecules and catalysts. Dr. Singh has delivered invited lectures worldwide, presenting his research in structural elucidation, green chemistry, and material sciences. His role as a research supervisor has resulted in several impactful publications. As a reviewer and editorial board member for prestigious chemistry journals, he ensures the dissemination of high-quality scientific knowledge. His dedication to education and research continues to inspire the scientific community.

Research Focus

Dr. Okram Mukherjee Singh’s research revolves around organic synthesis, heterocyclic chemistry, and spectroscopy. He has extensively worked on the development of novel heterocyclic compounds with potential medicinal applications, focusing on anticancer and antimicrobial agents. His expertise in infrared (IR) and nuclear magnetic resonance (NMR) spectroscopy has led to advancements in structural elucidation techniques. A key aspect of his research includes green chemistry approaches to sustainable organic synthesis, minimizing environmental impact. His studies on catalytic transformations aim to enhance efficiency in organic reactions. He has also explored the design of bioactive molecules for drug discovery, collaborating with interdisciplinary teams. His research extends to supramolecular chemistry and materials science, contributing to functional material development. By integrating computational chemistry tools, he has advanced the understanding of molecular interactions. His innovative work has resulted in numerous high-impact publications, positioning him as a thought leader in contemporary organic chemistry.

Awards & Honors🏆 

Dr. Okram Mukherjee Singh has received several prestigious awards and fellowships in recognition of his contributions to chemistry. His accolades include national and international honors for excellence in organic chemistry research, particularly in heterocyclic synthesis and spectroscopy. He has been awarded fellowships by reputed scientific organizations, highlighting his role as a leading researcher. His work in sustainable chemical processes has earned him special recognition from academic and industrial bodies. He has been an invited speaker at esteemed international conferences, reflecting his influence in the field. His contributions to chemistry education and research have been acknowledged through various institutional awards. Additionally, his mentorship of Ph.D. scholars has been recognized for fostering innovation in medicinal chemistry and catalysis. His extensive publication record and leadership in chemistry popularization efforts further cement his status as a respected scientist and educator. His dedication to advancing science continues to earn him accolades.

Conclusion✅

Professor Okram Mukherjee Singh is a highly suitable candidate for the Lifetime Achievement Award due to his outstanding contributions to chemistry education, research, and academic leadership. His dedication to advancing organic chemistry, mentoring young scientists, and organizing impactful academic events makes him a deserving nominee. Strengthening his international collaborations and industry engagements could further enhance his legacy in the field.

Publications to Noted 📚

Recent progress in biological activities of indole and indole alkaloids

Authors: TP Singh, OM Singh

Citations: 405

Year: 2018

Phytochemical and pharmacological profile of Zanthoxylum armatum DC.-an overview

Authors: TP Singh, OM Singh

Citations: 152

Year: 2011

Phytochemistry of Solanum xanthocarpum: an amazing traditional healer

Authors: OM Singh, TP Singh

Citations: 137

Year: 2010

Novel 3-alkanoyl/aroyl/heteroaroyl-2H-chromene-2-thiones: Synthesis and evaluation of their antioxidant activities

Authors: OM Singh, NS Devi, DS Thokchom, GJ Sharma

Citations: 136

Year: 2010

Application of β-Oxodithioesters in domino and multicomponent reactions: Facile route to dihydropyrimidines and coumarins

Authors: OM Singh, NS Devi

Citations: 105

Year: 2009

Synthesis and in vitro evaluation of the antifungal activities of dihydropyrimidinones

Authors: OM Singh, SJ Singh, MB Devi, LN Devi, NI Singh, SG Lee

Citations: 99

Year: 2008

A Facile Access to 2-Methylthio/Alkoxy/Amino-3-acylimidazo[1,2-a]pyridines Based on Cupric Chloride Promoted Oxidative Ring Closure of α-Oxoketene N,S-, N,O …

Authors: O Barun, H Ila, H Junjappa, OM Singh

Citations: 77

Year: 2000

Datura stramonium: An overview of its phytochemistry and pharmacognosy

Authors: LR Singh, OM Singh

Citations: 40

Year: 2013

Isolation of steroidal glycosides from Solanum xanthocarpum and studies on their antifungal activities

Authors: OM Singh, K Subharani, NI Singh, NB Devi, L Nevidita

Citations: 40

Year: 2007

Metathesis catalysts: Historical perspective, recent developments and practical applications

Authors: OM Singh

Citations: 35

Year: 2006

Facile synthesis of enantiopure chiral molecular rectangles exhibiting induced circular dichroism

Authors: N Das, A Ghosh, OM Singh, PJ Stang

Citations: 33

Year: 2006

Effect of nitrogen, phosphorus and potassium nutrition on herb, oil and artemisinin yield of Artemisia annua under semi-arid tropical condition

Authors: M Singh

Citations: 32

Year: 2000