Koshal Kishor | Battery | Electrochemistry Achievement Award

Electrochemistry Achievement Award

Koshal Kishor
Affiliation Institute of Advanced Research
Country India
Scopus ID 56954804600
Documents 20
Citations 407
h-index 10
Subject Area Battery
Event International Research Chemistry Awards
ORCID 0000-0002-3480-9479

Koshal Kishor is a researcher affiliated with the Institute of Advanced Research, India, whose indexed scholarly profile is associated with battery research and electrochemistry. The available bibliometric information records 20 documents, 407 citations, and an h-index of 10 in Scopus, providing a quantitative indication of the visibility and citation reach of the research output. [1]

Abstract

Koshal Kishor is an India-based researcher affiliated with the Institute of Advanced Research and associated with the subject area of battery research. His Scopus-indexed profile lists 20 documents, 407 citations, and an h-index of 10. These indicators provide a measurable overview of his scholarly publication activity and citation impact. [1]

Keywords

Electrochemistry; battery research; lithium-carbon dioxide batteries; energy storage; electrochemical energy storage; battery materials; electrochemical materials; nickel-cobalt catalysts; amine-based electrolytes; electrolyte chemistry; carbon dioxide electrochemistry; electrocatalysis; electrode materials; electrochemical interfaces. [2]

Introduction

Electrochemistry is an interdisciplinary field concerned with chemical processes involving the transfer of electrical charge and is central to technologies such as batteries, fuel cells, electrochemical sensors, corrosion control, and electrochemical synthesis. Battery research in particular incorporates electrochemical principles with materials science, chemical engineering, and device development. [1]

Research Profile

Koshal Kishor’s available scholarly profile identifies Battery as the principal subject area. His indexed record comprises 20 documents with 407 citations and an h-index of 10. The combination of publication activity and citation accumulation indicates that his research output has received measurable attention within the indexed scholarly literature.[4]

Research Contributions

The documented subject classification places Koshal Kishor’s research within the battery field, which is closely connected to electrochemical energy storage. Based on the available profile information, his scholarly activity can therefore be considered in the context of research addressing battery-related scientific and technological questions.Ā [3]

Publications

For publication-level evaluation, individual articles should be reviewed for their research objectives, methodology, originality, scientific contribution, citation performance, and relevance to electrochemistry and battery science. records, where available, provide persistent identifiers for individual scholarly works and should be associated only with the corresponding verified publication.[4]

Research Impact

The available bibliometric record reports 407 citations across 20 Scopus-indexed documents, together with an h-index of 10. These indicators suggest that the research output has achieved measurable visibility in the indexed academic literature. Citation metrics, however, can vary according to discipline, publication age, database coverage, collaboration patterns. [2]

Award Suitability

Final award suitability should be determined through the applicable nomination and evaluation process, including examination of the candidate’s verified publications, originality, scientific contribution, research quality, field relevance, and broader impact. The information presented on this page should therefore be regarded as a structured academic profile rather than an independent certification of award eligibility.Ā [3]

Conclusion

Koshal Kishor is an India-based researcher affiliated with the Institute of Advanced Research whose documented subject area is Battery. His Scopus profile records 20 documents, 407 citations, and an h-index of 10.These indicators establish a measurable scholarly profile relevant to consideration within an electrochemistry-focused recognition program. [4]

References

  1. Elsevier. (n.d.). Scopus author details: Koshal Kishor, Author ID 56954804600. Scopus.
    https://www.scopus.com/pages/authors/56954804600
  2. ORCID. (n.d.). Koshal Kishor: ORCID record 0000-0002-3480-9479. ORCID.
    https://orcid.org/0000-0002-3480-9479
  3. International Research Chemistry Awards. (n.d.).
    https://researchchemistry.org
  4. Shubhangi Deshmukh, Ganesh Bajad, Mandar S. Bhagat, Prakash Chandra, & Koshal Kishor. (2026). Nickel-cobalt catalyst and amine based electrolyte in lithium-carbon dioxide battery. Journal of Applied Electrochemistry, 56, Article 121.
    https://doi.org/10.1007/s10800-026-02499-y

Mrs. Guo Jin | Advanced Electrochemistry | Best Researcher Award

Mrs. Guo Jin | Advanced Electrochemistry | Best Researcher Award

Mrs. Guo Jin | Taiyuan University of Science and Technology | China

Guo Jin is a distinguished Senior Experimentalist and Master’s supervisor at the School of Materials Science and Engineering, Taiyuan University of Science and Technology. His primary research focuses on metal compound-based cathode materials for lithium-sulfur batteries, a field of significant relevance in advancing energy storage technologies.

Professional Profile

Orcid

šŸŽ“Academic and Professional Background

Guo Jin is a Senior Experimentalist at the School of Materials Science and Engineering, Taiyuan University of Science and Technology, and serves as a Master’s supervisor. His major research focus lies in metal compound-based cathode materials for lithium-sulfur batteries. With an impressive academic profile, he has authored 8 SCI-indexed papers and holds 2 authorized invention patents. Guo Jin has also received significant research funding, including grants from the Shanxi Province Basic Research Program Project (202203021222195) and Taiyuan University of Science and Technology Scientific Research Initial Funding (20192035).

šŸ« Professional Role and Institution

Guo Jin serves as a Senior Experimentalist and Master’s Supervisor at the School of Materials Science and Engineering, Taiyuan University of Science and Technology.

āš™ļø Research Areas

Guo Jin specializes in the theoretical and experimental study of electrode materials, with a primary focus on metal compound-based cathode materials for lithium-sulfur batteries. His work emphasizes design, catalytic mechanisms, and performance improvement of energy materials, contributing significantly to the field of new energy storage solutions.

🌟 Achievements and Contributions

Guo Jin’s dedication to advancing lithium-sulfur battery technology has significantly contributed to the development of high-specific-energy electrode materials. Their projects address critical challenges in modern energy solutions, solidifying their role as a pioneer in energy material research.

Publications Top NotedšŸ“š

Bismuth-based compounds as efficient sulfur hosts for novel lithium-sulfur batteries

Authors: Zhanlong Li, Kun Hu, Jin Guo, Yixuan Zhang, Mingang Zhang, Jinyi Lian

Journal: Journal of Materials Science

Year: 2023

Effect of acetylene black and carbon nanotube interlayer on polyethylene glycol–coated sulfur composite cathode

Authors: Jin Guo, Guohua Ma, Kun Hu, Lihong Song, Xiaoyan Yan, Yanan Gao, Mingang Zhang

Journal: Ionics

Year: 2022

A PEG-grafted carbon hybrid as sulfur host for high-performance lithium-sulfur batteries

Authors: Jin Guo, Mingang Zhang, Xiaoyan Yan, Shushan Yao, Xiangyu Cao, Jiansheng Liu

Journal: Journal of Nanoparticle Research

Year: 2019

Synthesis of oxidized acetylene black/sulfur@Ndā‚‚Oā‚ƒ composite as cathode materials for lithium-sulfur batteries

Authors: Jin Guo, Mingang Zhang, Shijian Yan, Yanan Gao, Guohua Ma, Jiansheng Liu

Journal: Journal of Nanoparticle Research

Year: 2018

Electrochemical properties of modified acetylene black/sulfur composite cathode material for lithium/sulfur batteries

Authors: Guo Jin, Zhang Mingang, Yan Shijian, Yan Xiaoyan, Wei Shiwei

Journal: Ionics

Year: 2018

Assist Prof Dr. Pan Zeng | Electrochemistry | Best Researcher Award

Assist Prof Dr. Pan Zeng | Electrochemistry | Best Researcher Award

Assist Prof Dr. Pan Zeng | Chengdu University | China

Professional Profiles

Google Scholar

Scopus

Orcid

šŸŽ“ Academic and Professional Background

Pan Zeng is an Assistant Professor at Chengdu University. He earned his Ph.D. in Materials Science from Sichuan University in 2019, where his research centered on Li–S batteries. From 2019 to 2022, he worked as a Postdoctoral Researcher at the Institute of Functional Nano & Soft Materials, Soochow University. His expertise lies in the development and application of in situ/operando synchrotron-based characterization techniques for studying energy storage materials. His academic journey highlights his dedication to advancing the frontiers of materials science and energy storage technology.

šŸ” Areas of Research

Pan Zeng’s research focuses on the development of high-performance secondary battery materials, including lithium-ion batteries, zinc-ion batteries, and lithium-sulfur batteries. He is also dedicated to advancing in situ synchrotron radiation spectroscopy techniques such as XAS, XES, XPS, and RIXS, enabling precise material characterization. Additionally, he is pioneering novel in situ synchrotron radiation spectroscopy and imaging technologies and applying them to new energy materials. His innovative work bridges materials science and cutting-edge spectroscopy, contributing to significant breakthroughs in energy storage technologies.

šŸ¤ Collaborations

Pan Zeng has actively collaborated on projects to enhance battery performance. One of his notable contributions includes the multi-doping modification of Mn-based sodium-ion battery cathode materials using in situ soft X-ray spectroscopy. This collaboration highlights his commitment to leveraging advanced analytical techniques for improving battery material efficiency and functionality.

🌐 Professional Memberships

As an active member of the Chinese Chemical Society and the Chinese Materials Research Society, Pan Zeng is connected to a broad network of researchers and innovators. These affiliations provide a platform for exchanging knowledge, fostering collaborations, and advancing research in materials science and chemistry.

šŸ› ļø Key Contributions

Pan Zeng has made significant contributions to the energy storage industry. He has designed and developed high-performance secondary battery materials tailored for advanced energy storage solutions. His innovations in in situ synchrotron radiation spectroscopy techniques, including XAS, XES, XPS, and RIXS, have unveiled material properties with unmatched precision. Furthermore, he has advanced new in situ synchrotron imaging technologies, applying them to energy materials to optimize their performance. Pan Zeng’s transformative work continues to drive the development of sustainable and efficient materials for the future.

Publications Top NotedšŸ“„

Chemomechanics Engineering Promotes the Catalytic Activity of Spinel Oxides for Sulfur Redox Reaction

Authors: Wang, L., Li, H., Yan, T., Zeng, P., Zhang, L.

Journal: Advanced Functional Materials

Year: 2024

Cationic and Anionic Redox of Battery Cathodes Investigated by Advanced Synchrotron-Based Mapping of Resonant Inelastic X-ray Scattering

Authors: Cheng, C., Zhuo, Z., Chen, S., Guo, J., Zhang, L.

Journal: Advanced Functional Materials

Year: 2024

Steering Sulfur Reduction Kinetics of Lithium-Sulfur Batteries by Interfacial Microenvironment Modulation

Authors: Yuan, C., Wang, L., Zeng, P., Chan, T.-S., Zhang, L.

Journal: Energy Storage Materials

Year: 2024

Achieving Structurally Stable O3-Type Layered Oxide Cathodes Through Site-Specific Cation-Anion Co-Substitution for Sodium-Ion Batteries

Authors: Shen, Y., Cheng, C., Xia, X., Zeng, J., Zhang, L.

Journal: Journal of Energy Chemistry

Year: 2024

Influence of Carbon Sources on Silicon Oxides for Lithium-Ion Batteries: A Review

Authors: Ling, Y., Zeng, P., Wang, B., Zhang, L., Wang, J.

Journal: Journal of Materials Chemistry A

Year: 2024