Meenakshi Gusain | Energy | Women Researcher Award

Women Researcher Award

Meenakshi Gusain
Affiliation Krishna Institute of Engineering & Technology
Country India
Scopus ID 37060822700
Documents 44
Citations 605
h-index 14
Subject Area Energy
Event International Research Chemistry Awards
ORCID 0000-0002-1180-8617

Meenakshi Gusain is a researcher affiliated with Krishna Institute of Engineering & Technology, India, whose scholarly profile is associated with the energy research domain. The researcher record supplied for this recognition profile reports documents, 605 citations, and an h-index of 14. These bibliometric indicators provide a quantitative overview of publication activity and citation visibility and should be interpreted in the context of disciplinary practices, publication age, collaboration patterns, and research scope. [1]

Abstract

The Women Researcher Award profile recognizes Meenakshi Gusain for scholarly activity associated with the energy research field. The supplied academic record identifies Krishna Institute of Engineering & Technology as the institutional affiliation and reports a Scopus author profile containing 44 documents, 605 citations, and an h-index of 14. [1]

Keywords

Meenakshi Gusain; Women Researcher Award; Energy Research; Energy Science; Sustainable Energy; Energy Technology; Research Innovation; Scholarly Impact; Scientific Publications; Bibliometrics; Renewable Energy; Clean Energy; Energy Storage; Energy Efficiency; Energy Innovation; Women in Science; Research Excellence; Scientific Innovation; Energy Research Excellence; International Women Researcher Award.[2]

Introduction

Meenakshi Gusain’s supplied researcher information places her scholarly activity within the energy subject area and associates her with Krishna Institute of Engineering & Technology in India. The reported Scopus indicators offer a structured basis for describing the publication and citation dimensions of her research profile. [1]

Research Profile

The researcher profile supplied for this article records  documents, citations, and an h-index of 14. The Scopus author identifier is, while the associated ORCID identifier. Because bibliometric databases can change as records are indexed, corrected, merged, or updated, the figures presented here should be regarded as a profile snapshot rather than permanent measurements.[4]

Research Contributions

The available information identifies energy as the principal subject area associated with the researcher profile. Within this field, scholarly contributions may be evaluated through the relevance of research questions, methodological rigor, publication quality, reproducibility, technological applicability, and contribution to the broader scientific literature.[3]

Publications

The supplied information establishes a Scopus-indexed publication record of documents but does not provide a verified publication-by-publication bibliography, article titles, journal names, publication years. Accordingly, no specific publication or DOI has been attributed to the researcher without supporting bibliographic information. The complete publication record should be consulted through the researcher’s Scopus author profile.[4]

Research Impact

The reported 605 citations and h-index of indicate measurable citation visibility within the indexed scholarly record. Citation-based indicators can help describe the extent to which published research has been referenced by subsequent scholarly literature, although they should be interpreted with consideration for field-specific citation practices, career duration, publication types, collaboration patterns, and database coverage.[2]

Award Suitability

For the Women Researcher Award associated with the International Research Chemistry Awards, the supplied profile provides several objective elements relevant to an academic recognition assessment: an identified institutional affiliation, a defined energy research subject area, a documented publication count, citation activity, an h-index, and persistent scholarly identifiers. [3]

Conclusion

Meenakshi Gusain’s academic recognition profile presents a researcher affiliated with Krishna Institute of Engineering & Technology and working within the energy research domain. These indicators provide a concise quantitative description of scholarly activity and can be complemented by qualitative evaluation of research quality, originality, relevance, and contribution.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Meenakshi Gusain, Author ID 37060822700. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=37060822700
  2. ORCID. (n.d.). ORCID record: Meenakshi Gusain, ORCID iD 0000-0002-1180-8617. ORCID.
    https://orcid.org/0000-0002-1180-8617
  3. International Research Chemistry Awards. (n.d.).
    https://researchchemistry.org
  4.  Kaur, T., Gusain, M., Sheikh, I., Khan, S. S., Dutta, A., Kaur, S., Kour, H., Bajaj, P., & Alaneme, G. U. (2026). Synergizing ethnobotany and artificial intelligence: Exploring therapeutic frontier of Himalayan medicinal plants. Environmental Sciences Europe, 38, Article 114.
    https://doi.org/10.1186/s12302-026-01395-8

Dr. Siwen zhang – Electrochemistry – Best Researcher Award

Dr. Siwen zhang – Electrochemistry – Best Researcher Award

Liaoning University, China

Author Profile

Scopus

👩‍🎓 Educational Background 

Dr. Siwen Zhang, a native of Harbin, Heilongjiang, is a Party member and an accomplished researcher in the field of electrochemical energy storage. He obtained her Ph.D. in Chemical Engineering and Technology from the Harbin Institute of Technology in June 2020, under the supervision of Professor Wang Zhenbo. During her doctoral studies, He also undertook an 18-month joint research program at the National University of Singapore from August 2018 to March 2020, which enriched her academic experience with an international perspective.

🔬 Research Interests

Dr. Zhang has been dedicated to electrochemical energy storage research since 2013. Her core research areas include the controllable synthesis of transition metal oxides, design and fabrication of flexible devices, and development of self-supporting membrane electrodes. He is particularly focused on all-solid-state batteries, supercapacitors, and aqueous batteries, addressing both fundamental science and practical applications in energy storage technologies.

🏆 Honors and Awards

Throughout her academic career, Dr. Zhang has received numerous accolades. He was awarded the National Scholarship for Master’s Students and the National Scholarship for Doctoral Students for her outstanding performance. In 2024, he received the Second Prize of Shenyang Natural Science Academic Achievements, reflecting her influential contributions to regional science and technology development. Her achievements have been consistently recognized for their innovation and societal impact.

🏭 Technological Innovations

Dr. Zhang spearheaded the establishment of the first aqueous battery production line in Liaoning Province at Liaoning University, a significant milestone in provincial technology infrastructure. This innovation was presented as a model case to the Governor of Liaoning Province, along with top officials from the Science and Technology Department, earning her high praise. Her work has also been featured in exclusive interviews by People’s Daily and Guangming Daily, showcasing her influence beyond the academic realm.

✍️ Editorial Roles and Peer Review

Dr. Zhang actively contributes to the academic community as a Guest Editor for Polymers and serves on the Young Editorial Boards of Battery Energy and Carbon Neutralization. He is a review expert for the National Research Review Center and a technical consultant to various companies. He also serves as an independent reviewer for several top-tier journals including Advanced Energy Materials, Advanced Functional Materials, ACS Applied Materials & Interfaces, Chemical Engineering Journal, InfoMat, and International Journal of Hydrogen Energy, further underlining her role as a recognized expert in her field.

Notable Publications📄


Magnetic field-assisted synthesis of Co-doped Mn₃O₄/MnOOH multiphase manganese oxides for high-performance cathodes in aqueous rechargeable zinc-ion batteries

Authors: Ge, Rongyuan; Yang, Yang; Li, Hui; Yin, Bosi; Ma, Tianyi

Journal: Journal of Power Sources

Year: 2025


Regulation of Cobalt-Nickel-Based Compounds via Glucose-Induced Phase Transitions for Enhanced Performance in Zinc-Based Alkaline Batteries

Authors: Liu, Minghui; Feng, Xinyu; Yin, Bosi; Zhang, Siwen; Ma, Tianyi

Journal: Applied Surface Science

Year: 2025


MnS/MnO heterostructures with dual ion defects for high-performance aqueous magnesium ion capacitors

Authors: Liu, Minghui; Li, Mudi; Zhang, Siwen; Li, Hui; Ma, Tianyi

Journal: Journal of Magnesium and Alloys

Year: 2025


Organic-Inorganic Coupling Strategy: Clamp Effect to Capture Mg²⁺ for Aqueous Magnesium Ion Capacitor

Authors: Li, Mudi; Ding, Yaxi; Zhang, Siwen; Yin, Bosi; Ma, Tianyi

Journal: Angewandte Chemie – International Edition

Year: 2024


Lithium Doping Enhances the Aqueous Zinc Ion Storage Performance of V₃O₇·H₂O Nanorods

Authors: Hu, Yingfang; Zhang, Siwen; Ren, Yujin; Yin, Bosi; Ma, Tianyi

Journal: ChemElectroChem

Year: 2024


Five-Axis Curved-Surface Multi-Material Printing on Conformal Surface to Construct Aqueous Zinc-Ion Battery Modules

Authors: Meng, Fanbo; Ren, Yujin; Ping, Bu; Yin, Bosi; Ma, Tianyi

Journal: Advanced Materials

Year: 2024