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. [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. [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

Dr. Yi Zhao – Aqueous rechargeable batteries- Best Researcher Award

Dr. Yi Zhao – Aqueous rechargeable batteries- Best Researcher Award

Beijing University of Chemical Technology – China

Author Profile

Scopus

Orcid

🎓 Education Background

Zhao Yi pursued her Ph.D. in Materials Physics and Chemistry at Beihang University (BUAA) from 2014 to 2020, under the supervision of Professor Liu Jinzhang. Prior to that, she completed her Bachelor of Engineering in Metal Materials at Yanshan University (2010-2014), where she was guided by Academician Tian Yongjun and Professor Jing Qin. Her academic journey has been marked by excellence, laying a strong foundation for her research in advanced materials.

🏛️ Professional Experience

After obtaining her doctorate, Zhao Yi worked as a Postdoctoral Fellow (2020-2022) at the School of Materials Science and Engineering, Beijing Institute of Technology, where she was mentored by Academician Wu Feng and Professor Chen Renjie. Since November 2022, she has been serving as an Associate Professor at the School of Chemistry, Beijing University of Chemical Technology, continuing her research in energy storage and materials chemistry.

🔬 Research Projects

Zhao Yi has led several prestigious research projects as a Principal Investigator. She is currently leading a National Natural Science Foundation of China for Distinguished Young Scholars (2023-2025, Grant No. 60171009), along with projects funded by the Shandong Provincial Natural Science Foundation and the Talent Introduction Project of Beijing University of Chemical Technology. She has also successfully completed significant research projects, including the China Postdoctoral Science Foundation General Program (2020-2022) and the Open Project of Guangdong Provincial Key Laboratory of Power Battery Safety (2021-2022). Additionally, she is an active participant in the National Natural Science Foundation of China – National Science Fund for Distinguished Young Scholars (2022-2025).

🏆 Awards and Honors

Zhao Yi’s academic excellence and contributions have been widely recognized through numerous awards and honors. She received the National Scholarship for Doctoral Students (2018) and was named an Outstanding Postgraduate of Beijing University of Aeronautics and Astronautics (2018). In 2019, she was awarded the Doctoral Student Excellence Academic Funding at Beijing University of Aeronautics and Astronautics and was later honored as an Outstanding Graduate from the same university in 2020. In 2022, she won the Second Prize at the National Postdoctoral Academic Achievement Forum for her outstanding contributions in the field of Frontier Intersecting Science and Future Stereoscopic Transportation.

🧪 Main Research Fields

Zhao Yi’s research primarily focuses on energy storage materials and devices, including the development of aqueous zinc batteries, supercapacitors, and other advanced energy storage systems. Her work aims to enhance the efficiency, stability, and performance of these technologies to support sustainable energy solutions. Another key area of her research is the design of carbon-based organic materials, where she explores organic-inorganic composite electrodes to improve energy applications. By integrating novel materials, she seeks to optimize electrode performance, conductivity, and durability, contributing to the advancement of next-generation energy storage devices. Additionally, Zhao Yi is actively involved in fuel cells and catalysts research, focusing on the development of fuel cells and catalytic materials for energy conversion technologies. Her work in this field is crucial for improving the efficiency, longevity, and scalability of fuel cells, which play a significant role in clean energy applications. Through her research, she aims to drive innovative advancements in sustainable energy storage and conversion technologies.

Notable Publications📄


📝Thermodynamic and kinetic insights for manipulating aqueous Zn battery chemistry: towards future grid-scale renewable energy storage systems
  • Authors: Yajun Zhao, Yueyang Wang, Jinze Li, Jiawei Xiong, Qi Li, Kovan Khasraw Abdalla, Yi Zhao, Zhao Cai, Xiaoming Sun
    Journal: eScience
    Year: 2024

📝High-energy and durable aqueous Zn batteries enabled by multi-electron transfer reactions
  • Authors: Qi Li, Kovan Khasraw Abdalla, Jiawei Xiong, Zhihang Song, Yueyang Wang, Yajun Zhao, Mengyao Liu, Yanchen Fan, Yi Zhao, Xiao-Ming Sun
    Journal: Energy Materials
    Year: 2024

📝Regenerated Graphite-Derived Cellular-Inspired Polydopamine@NiO@Graphite toward Robust Lithium Storage
  • Authors: Qiaoyi Yan, Liqianyun Xu, Yi Zhao, Feng Wu, Renjie Chen, Li Li
    Journal: ACS Applied Materials & Interfaces
    Year: 2023

📝Unraveling factors affecting performance of quinone‐based polymer cathode in aqueous Zn‐ion battery
  • Authors: Xiao Yang, Yi Zhao, Qiuju Xu, Xiangcheng Yuan, Jinzhang Liu
    Journal: Batteries & Supercaps
    Year: 2022

📝Mo doping provokes two electron reaction in MnO2 with ultrahigh capacity for aqueous zinc ion batteries
  • Authors: Xiaoyu Xia, Yajun Zhao, Yi Zhao, Minggui Xu, Wen Liu, Xiaoming Sun
    Journal: Nano Research
    Year: 2022