Mr. Ritesh Sharma – Utilization of Waste to Wealth -Best Researcher Award

Mr. Ritesh Sharma - Utilization of Waste to Wealth -Best Researcher Award

Institute of Himalayan Bioresource Technology Council of Scientific and Industrial Research (CSIR-IHBT) - India

AUTHOR PROFILE

SCOPUS

EARLY ACADEMIC PURSUITS

Ritesh Sharma embarked on his academic journey with a Bachelor's degree in Chemistry (Medical) from Himachal Pradesh University, where he demonstrated a strong foundation in the field. He furthered his academic pursuits with a Master's degree in Chemistry from Bahra University, Shimla Hills, showcasing his commitment to advancing his knowledge and expertise in the subject.

PROFESSIONAL ENDEAVORS

Sharma's professional career in the research and pharmaceutical industry spans several roles, demonstrating his versatility and adaptability in diverse work environments. He has served as a QC Chemist at Morepen Laboratories, where he gained hands-on experience in analyzing active pharmaceutical ingredients and conducting wet lab testing. Additionally, his role as a QC Officer at Sun Pharmaceuticals Industries Ltd. equipped him with expertise in HPLC-based quantification and qualification, calibration of instruments, and adherence to pharmacopeia standards. Currently, as a Project Research Associate-I at CSIR-Institute of Himalayan Bioresource Technology, Palampur, Sharma contributes to research endeavors focused on medicinal chemistry, drug discovery, and natural product chemistry, showcasing his dedication to advancing scientific knowledge and innovation.

CONTRIBUTIONS AND RESEARCH FOCUS ON UTILIZATION OF WASTE TO WEALTH

Sharma's contributions to the field of medicinal chemistry and pharmaceuticals are notable, particularly in drug discovery, pharmacological and analytical characterization of drug substances, and isolation and characterization of primary and secondary metabolites. His expertise in handling analytical instruments such as UPLC, LC-MS, GC-MS, NMR, HPTLC, UV Spectrophotometer, Utilization of Waste to Wealth and Flash Chromatography underscores his proficiency in conducting detailed analyses and contributing to research projects aimed at advancing pharmaceutical science.

IMPACT AND INFLUENCE

Through his roles in the research and pharmaceutical industry, Sharma has made a significant impact on scientific endeavors, particularly in the areas of quality control, analytical characterization, and drug development. His expertise and contributions have influenced the advancement of pharmaceutical research and development, Utilization of Waste to Wealth enhancing the quality and efficacy of pharmaceutical products.

ACADEMIC CITES

While Sharma's academic citations may not be explicitly mentioned, his contributions to research projects and publications within the pharmaceutical industry likely contribute to the body of knowledge in medicinal chemistry, drug discovery, and natural product chemistry.

LEGACY AND FUTURE CONTRIBUTIONS

As Sharma continues to progress in his career, his legacy lies in his dedication to advancing scientific knowledge and contributing to the development of innovative pharmaceutical products. Through his future contributions, Sharma aims to further expand his expertise, mentor future professionals, and drive advancements in medicinal chemistry and pharmaceutical science, leaving a lasting impact on the industry and academia alike.

NOTABLE PUBLICATIONS

In-vitro antidiabetic and antimicrobial studies of volatile organic compounds  2024

Molecular and phytomedicinal stability of long term micropropagated Malaxis  2023(6)

 

Dr. Buddha Deka Boruah – Energy Storage – Best Researcher Award

Dr. Buddha Deka Boruah - Energy Storage - Best Researcher Award

University College London (UCL) - United Kingdom

AUTHOR PROFILE

SCOPUS

ORCID

GOOGLE SCHOLAR 

EARLY ACADEMIC PURSUITS

Buddha Deka Boruah's academic journey began with a Bachelor's degree in Physics from Cotton College, Assam, followed by a Master's degree in Physics from the Indian Institute of Technology Guwahati (IITG). His research during this period delved into the structural and optoelectronic properties of hydrogenated amorphous silicon thin films on flexible substrates, under the guidance of Prof. Pratima Agarwal. His pursuit of knowledge continued with a Ph.D. at the Indian Institute of Science (IISc) Bangalore, where he explored the coupled optical and electrochemical properties of ZnCo2O4 for radiation-sensitive supercapacitors, supervised by Prof. Abha Misra.

PROFESSIONAL ENDEAVORS

Boruah's professional journey spans various roles and institutions, starting as a Research Associate at the Institute for Manufacturing (IfM), University of Cambridge, under the supervision of Prof. Michael De Volder. He continued his research as a Newton International Postdoctoral Fellow, focusing on aqueous energy storage systems and photo-rechargeable energy storage systems. Currently, he serves as an Assistant Professor (Lecturer in Energy Storage) at the Institute for Materials Discovery (IMD), University College London (UCL), where he established his research group in 2022.

CONTRIBUTIONS AND RESEARCH FOCUS ON ENERGY STORAGE

Boruah's research contributions center around developing environmentally safe and cost-effective aqueous electrochemical energy storage systems, with a specific focus on zinc-ion-based systems. He explores various aspects, including V- and Mn-based oxide cathode materials, ceramic-based materials to suppress zinc dendrite growth, and in situ/operando measurements to analyze charge storage characteristics/kinetics. His research extends to understanding light-matter interaction in energy storage materials and utilizing optical energy to accelerate zinc-ion charge storage kinetics.

IMPACT AND INFLUENCE

Boruah's work has garnered recognition, including the Royal Society-Newton International Fellowships Award and the ACS Publications Peer Reviewer Certificate of Recognition & Appreciation. His contributions have implications for advancing energy storage technologies, addressing environmental concerns, and facilitating the transition towards sustainable energy solutions.

ACADEMIC CITATIONS

Boruah's research has been cited extensively, evident from awards such as the India 2018 Top Cited Author Award from IOP Publishing. His publications contribute to the scientific community's understanding of energy storage materials and their applications, influencing future research directions in the field.

LEGACY AND FUTURE CONTRIBUTIONS

As an emerging leader in the field of energy storage, Boruah's legacy lies in his innovative research endeavors and commitment to sustainable energy solutions. His future contributions are poised to further advance the development of aqueous electrochemical energy storage systems, paving the way for practical implementation and addressing global energy challenges.

NOTABLE PUBLICATIONS

Interrogating the Light-Induced Charging Mechanism in Li-Ion Batteries Using Operando   2023(3)

Porous Carbon Coated on Cadmium Sulfide-Decorated Zinc Oxide Nanorod Photocathodes  2023(6)

Photo-enhanced lithium-ion batteries using metal–organic frameworks   2023(3)

Photo-Enhanced Magnesium-Ion Capacitors Using Photoactive Electrodes   2022(10)

Visible-Light Augmented Lithium Storage Capacity in a Ruthenium(II) Photosensitizer    2022(2)

Dr. Xiaojun Sun – Resource and Environmental Economics – Best Researcher Award

Dr. Xiaojun Sun - Resource and Environmental Economics - Best Researcher Award

China University of Geosciences, Beijing - China

AUTHOR PROFILE

SCOPUS

EARLY ACADEMIC PURSUITS

Xiaojun Sun commenced his academic journey with a Bachelor's degree in Management from China University of Geosciences, Beijing, in 2019. Following this, he pursued higher education as a Ph.D. candidate in Economics at the same institution, focusing on resource and environmental economics, energy economics, and technological economics.

PROFESSIONAL ENDEAVORS

Throughout his academic career, Sun engaged in various research projects and collaborations with esteemed institutions and organizations. His professional endeavors include research roles in prestigious entities such as the China Academy of Natural Resources Economics, China Geological Survey, PipeChina, and the Daqing Government of Heilongjiang Province, demonstrating his commitment to advancing knowledge in his field.

CONTRIBUTIONS AND RESEARCH FOCUS ON RESOURCE AND ENVIRONMENTAL ECONOMICS

Sun's research primarily centers on resource and environmental economics, energy economics, and technological economics. His publications, including papers in renowned journals such as the Journal of Cleaner Production and Resources Policy, attest to his contributions to these fields. Notably, his work on input substitution impacted by technological progress and financial early warning systems for mining listed companies reflects his diverse research interests and expertise.

IMPACT AND INFLUENCE

Sun's contributions to academia extend beyond his publications, as evidenced by his involvement in national research and development programs and his recognition through the China Scholarship Council Joint Training Program. His research findings have the potential to influence policy-making and industry practices in resource management, environmental conservation, and energy sector sustainability.

ACADEMIC CITES

Sun's publications have garnered recognition within the academic community, evident from their inclusion in prestigious journals and their citation impact. Notably, his paper on financial early warning systems for mining listed companies has been identified as a highly cited paper, underscoring its significance and influence within the field of economics.

LEGACY AND FUTURE CONTRIBUTIONS

As a promising scholar in the field of economics, Xiaojun Sun's legacy lies in his dedication to advancing knowledge and addressing pressing issues in resource management and environmental sustainability. His future contributions are anticipated to further enrich the academic discourse and inform policy decisions aimed at promoting sustainable development and economic prosperity.

NOTABLE PUBLICATIONS

Research on financial early warning of mining listed companies based on BP neural network model  2021(40)