Meenakshi Gusain | Energy | Innovative Research Award

Innovative Research Award

Researcher Information
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 whose scholarly profile is associated with the energy research domain. Her indexed research record comprises 44 documents, with 605 citations and an h-index of 14 according to the supplied Scopus profile information.The Innovative Research Award recognizes research contributions that demonstrate scientific relevance, methodological development, originality, and potential impact within their respective field.[1]

Abstract

Meenakshi Gusain’s academic profile is situated within the broader field of energy research, an area encompassing technologies and scientific approaches concerned with energy generation, conversion, storage, efficiency, and sustainable utilization. Based on the supplied bibliometric information, her Scopus-indexed record contains documents and has received  citations, with an h-index of 14.[1]

Keywords

Meenakshi Gusain; Innovative Research Award; Energy Research; Energy Science; Sustainable Energy; Renewable Energy; Energy Technology; Energy Innovation; Energy Storage; Scientific Publications; Scholarly Impact; Research Innovation; Sustainable Energy Research; Scientific Research; Research Achievement; International Research Award.[2]

Introduction

Energy research is an interdisciplinary scientific area that connects fundamental science, engineering, materials development, environmental considerations, and technological implementation. Research in this domain contributes to the development and evaluation of systems intended to improve energy conversion, storage, efficiency, reliability, and sustainability.[1]

Research Profile

The available bibliometric profile places Meenakshi Gusain within the Energy subject area. Her documented research output includes Scopus-indexed documents, while the reported 605 citations indicate that the publications have been referenced within the scholarly literature. An h-index of  indicates that at least publications in the indexed record have each received at least citations, subject to the methodology.[4]

Research Contributions

The combination of 44 indexed documents and 605 citations indicates a sustained publication record with measurable scholarly visibility in the indexed literature.The ORCID record provides a persistent researcher identifier that can support accurate attribution of scholarly outputs across research information systems.[3]

Publications

The supplied Scopus profile reports 44 documents associated with the researcher. A complete publication bibliography is not included in the supplied input data; therefore, individual article titles, journals, publication years, citation counts, and  identifiers are not asserted here without corresponding source records. [4]

Research Impact

These metrics should not be interpreted as a standalone measure of research quality. Citation practices vary between disciplines and publication types, and database coverage may change over time. Consequently, a balanced assessment of research impact should combine quantitative indicators with examination of the originality, rigor, relevance, and documented outcomes of individual contributions.[2]

Award Suitability

 Final award suitability should additionally be determined through qualitative assessment of the nominee’s specific research contributions, originality, methodological quality, significance, and demonstrated impact.The recognition is associated with the International Research Chemistry Awards. The event provides a context for acknowledging researchers whose work contributes to scientific advancement across relevant areas of chemistry.[3]

Conclusion

Meenakshi Gusain’s supplied academic profile reflects research activity in the Energy domain, with  Scopus-indexed documents,  reported citations, and an h-index. Her affiliation with Krishna Institute of Engineering & Technology and persistent ORCID identification provide additional context for scholarly attribution. [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.
    https://orcid.org/0000-0002-1180-8617
  3. International Research Chemistry Awards. (n.d.).
    https://researchchemistry.org
  4. Bassi, A., 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., 38, Article 114.
    https://doi.org/10.1186/s12302-026-01395-8

Assoc. Prof. Dr. Xinhong Qi – Solid electrolyte membranes – Best Researcher Award

Assoc. Prof. Dr. Xinhong Qi – Solid electrolyte membranes – Best Researcher Award

Dalian University of Technology, China

Author Profile

Scopus

🎓 Academic Background & International Exposure

Dr. Qi’s academic journey is marked by outstanding achievements. He earned his Doctorate in Chemical Engineering from Dalian University of Technology (2013-2018), gaining direct recommendation for the prestigious program. To enhance his global perspective, he pursued an international research collaboration as a Jointly Trained Doctoral Student at Pennsylvania State University, USA (2016-2017), specializing in Materials Science. His foundation in chemical engineering was laid with a Bachelor’s degree in Chemical Engineering and Technology (English Intensive) from Dalian University of Technology (2008-2013), which provided him with a strong technical and theoretical base.

👨‍🏫 Work Experience

Assoc. Prof. Dr. Xinhong Qi has built a strong career in chemical engineering and materials science. Since November 2022, he has been serving as an Associate Professor at the School of Chemical Engineering, Dalian University of Technology, where he focuses on cutting-edge research in solid electrolyte membranes. Prior to this, from January 2020 to June 2022, he worked as a Postdoctoral Fellow in Materials Science and Engineering at Zhejiang University, further refining his expertise in advanced materials and energy applications. His industrial experience includes a tenure at Sinopec Dalian Petrochemical Research Institute (December 2018 – December 2019), where he contributed to petrochemical innovations and technological advancements.

🔬 Research Focus – Advancing Solid Electrolyte Membranes

Dr. Qi’s research revolves around Solid Electrolyte Membranes, a critical area in energy storage and conversion. His work contributes significantly to developing high-performance batteries, fuel cells, and next-generation energy materials. By improving efficiency, durability, and safety, his research paves the way for sustainable energy solutions and cleaner technologies. His dedication to innovation in electrochemical materials is instrumental in shaping the future of energy storage systems.

Notable Publications📝


📝Synergistic Modulation of Iron Phosphide and Phosphorus-Doped Carbon to Boost Ammonia Electrosynthesis from Nitrate

Authors: Zihao Fan, Bo Pang, Wanting Chen, Weiming Yu, Gaohong He

Journal: Chemical Engineering Journal

Year: 2025