Mehdi Ghoabdi | Energy-efficient | Innovative Research Award

Innovative Research Award

Mehdi Ghoabdi
Conseil national de recherches Canada, Canada

Mehdi Ghoabdi
Affiliation Conseil national de recherches Canada
Country Canada
Scopus ID 57292578000
Documents 20
Citations 89
h-index 6
Subject Area Energy-efficient
Event World Green Energy Awards
ORCID 0000-0002-6158-9088

Mehdi Ghoabdi is a researcher affiliated with the Conseil national de recherches Canada in Canada whose documented scholarly profile is associated with energy-efficient research. The available bibliographic profile records 20 documents, 89 citations, and an h-index of 6, providing a quantitative indication of published research activity and scholarly visibility. [1] His research profile is presented in connection with the Innovative Research Award at the World Green Energy Awards.

Abstract

Mehdi Ghoabdi is associated with energy-efficient research and is affiliated with the Conseil national de recherches Canada. Bibliographic information identifies 20 scholarly documents, 89 citations, and an h-index of 6 in the Scopus author record. [1] These indicators provide a concise overview of his documented research output and citation impact. His professional profile is considered in relation to the Innovative Research Award under the World Green Energy Awards, with emphasis on research activity relevant to energy efficiency and the broader transition toward sustainable energy systems.[3]

Keywords

Mehdi Ghoabdi; energy efficiency; energy-efficient research; sustainable energy; energy systems; energy innovation; green energy; research impact; scholarly publications; World Green Energy Awards.[1]

Introduction

Energy efficiency is an important component of contemporary energy research because improvements in the use of energy resources can contribute to reduced energy demand, improved system performance, and progress toward more sustainable energy systems. Research in this area encompasses technological development, system optimization, energy management, modelling, and the evaluation of approaches designed to improve the efficiency of energy conversion and utilization. [2]

Research Profile

The available researcher profile identifies Mehdi Ghoabdi with the Conseil national de recherches Canada, Canada. His Scopus author identifier is 57292578000. The profile records 20 documents and 89 citations, with an h-index of 6. [1] These metrics should be interpreted as bibliometric indicators rather than as a comprehensive assessment of research quality, since citation patterns vary according to discipline, publication age, database coverage, and collaboration practices. [2]

Research Contributions

The documented subject classification of energy-efficient research provides the principal basis for describing Ghoabdi’s research profile. Energy-efficiency research can contribute to the development of approaches that reduce energy consumption while maintaining or improving the performance of technologies, buildings, industrial processes, transportation systems, and other energy-using applications. [2]

Publications

The Scopus author profile associated with Mehdi Ghoabdi records 20 documents. [1] The present recognition page does not assign individual publication titles or DOI identifiers without verified bibliographic records. This approach avoids attributing publications to the researcher without sufficient source confirmation.[3]

Research Impact

The available Scopus indicators show 89 citations across 20 documented research documents and an h-index of 6. [1] These indicators demonstrate measurable scholarly visibility within the indexed literature. The citation count and h-index should nevertheless be considered alongside qualitative evidence, including publication relevance, methodological contribution, research collaboration, practical applicability, and the significance of individual research outputs.[3]

Award Suitability

The Innovative Research Award associated with the World Green Energy Awards is relevant to researchers whose work demonstrates innovation and meaningful scholarly activity in areas connected with green energy and sustainable technological development. Mehdi Ghoabdi’s documented affiliation, energy-efficient research area, publication record, citation activity, and h-index provide objective elements that can be considered when assessing his suitability for recognition. [4]

Conclusion

Mehdi Ghoabdi is a Canada-based researcher affiliated with the Conseil national de recherches Canada and associated with energy-efficient research. His documented Scopus profile contains 20 documents, 89 citations, and an h-index of 6. These indicators establish a measurable record of scholarly activity and provide a quantitative foundation for considering his research profile.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Mehdi Ghoabdi, Author ID 57292578000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57292578000
  2. ORCID. (n.d.). ORCID record: Mehdi Ghoabdi, ORCID iD 0000-0002-6158-9088. ORCID.
    https://orcid.org/0000-0002-6158-9088
  3. World Green Energy Awards. (n.d.). World Green Energy Awards. Official award website.
    https://greenenergyaward.com/
  4. Ziaeemehr, B., Ghobadi, M., Lacasse, M., & Ge, H. (2026). Multi-objective optimization and decision-making in building retrofits: A systematic review of frameworks, trends, and research gaps. Building and Environment, 304, 115074. https://doi.org/10.1016/j.buildenv.2026.115074
  5. Dodanwala, T. C., Ghobadi, M., Patel, K., & Ruparathna, R. (2026). Enhancing residential building retrofit landscape in Canada: Perspectives from public policy professionals. Energy and Buildings, 368, 117821.
    https://doi.org/10.1016/j.enbuild.2026.117821

Jun Seo Kim | Nanotechnology for Renewable Energy | Best Researcher Award

Mr. Jun Seo Kim | Nanotechnology for Renewable Energy | Best Researcher Award

Graduate Researcher | Gachon University | South Korea

Mr. Jun Seo Kim is a Graduate Researcher at the Department of Materials Science and Engineering, Gachon University, South Korea, specializing in perovskite-based optoelectronic devices. He is currently pursuing a master’s degree with a focus on developing cesium-controlled triple-cation perovskite thin films for next-generation deep-ultraviolet (DUV) photodetectors. His professional experience includes extensive hands-on work in solution processing, thin-film deposition, and advanced characterization techniques such as XRD, UV–vis spectroscopy, and electrical performance measurements, which have enabled him to design and validate scalable processes for stable perovskite devices. His research interests include mixed-cation perovskite stability, photolithography-free patterning for UVC sensing applications, and improving material performance for industrial safety and optoelectronic applications. Mr. Jun Seo has authored an SCI-indexed journal article in MDPI Applied Sciences, demonstrating significant improvements in device stability and sensing performance through an innovative two-step post-treatment process. His ongoing project explores photolithography-free patterning techniques for perovskite thin films, aiming to simplify device fabrication and broaden practical applications. Although early in his academic career, Mr. Jun Seo has shown strong research potential by successfully bridging materials science and device engineering. He is actively preparing further publications, aiming for Q1-indexed journals and expanded international collaborations to enhance his global research impact. Awards and honors include recognition for his high-quality research contribution through acceptance in a reputable SCI journal at the master’s level, showcasing his commitment to advancing optoelectronics research. Mr. Jun Seo aspires to continue his academic journey toward a Ph.D., focusing on scalable perovskite device technologies, mentorship of junior researchers, and contributing to international conferences.

Profiles: Google Scholar | Scopus | ORCID

Featured Publication

1. Kim, J. S., Kim, S., & Choi, H. W. (2025). The effect of Cs-controlled triple-cation perovskite on improving the sensing performance of deep-ultraviolet photodetectors. Applied Sciences, 15(14), 7982.