Rahim Zahedi | Energy | Best Researcher Award

Best Researcher Award

Rahim Zahedi
University of Tehran

Rahim Zahedi
Affiliation University of Tehran
Country Iran
Google Scholar ID uMoggwwAAAAJ
Documents 168
Citations 5,188
h-index 38
Subject Area Energy
Award Best Researcher Award
Event International Invention Awards
ORCID 0000-0001-6837-8729

Rahim Zahedi is a researcher affiliated with the University of Tehran, Iran, whose identified subject area is energy. His academic profile reports 168 documents, 5,188 citations, and an h-index of 38. These indicators provide quantitative context for assessing research productivity and scholarly visibility. His profile is presented in connection with the Best Researcher Award at the International Invention Awards, recognizing documented academic activity and research contributions.
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Abstract

Rahim Zahedi is a researcher affiliated with the University of Tehran whose identified subject area is energy. His supplied academic profile reports 168 documents, 5,188 citations, and an h-index of 38, indicating sustained scholarly activity and measurable citation visibility. This article presents his research profile in relation to the Best Researcher Award associated with the International Invention Awards. The assessment considers publication activity, research contributions, scholarly impact, and academic suitability for recognition. Quantitative indicators are used as supporting evidence rather than definitive measures of research quality. A comprehensive evaluation should also consider originality, methodological rigor, relevance, authorship, and documented contributions to energy research and innovation.

Keywords

Rahim Zahedi; University of Tehran; Energy Research; Researcher; Best Researcher Award; International Invention Awards; Research Productivity; Scholarly Impact; Citation Analysis; h-index.

Introduction

Academic recognition generally considers research productivity, scholarly quality, disciplinary contribution, and influence within the research community. Rahim Zahedi is identified with the University of Tehran and the energy research field. His reported publication and citation indicators provide a quantitative foundation for describing his academic activity. However, bibliometric measures are most appropriately interpreted alongside qualitative evidence concerning originality, research methodology, relevance, and contribution to knowledge. [1] [2]

Research Profile

Rahim Zahedi’s supplied academic information identifies the University of Tehran as his institutional affiliation and Iran as his country. His research subject area is energy, with a reported record of 168 documents, 5,188 citations, and an h-index of 38. These figures describe a substantial level of documented scholarly activity and provide measurable context for reviewing his academic profile. [1]

Research Contributions

The research profile of Rahim Zahedi is situated within the broad field of energy research. Academic contributions in this area may address scientific analysis, energy systems, technological development, efficiency, sustainability, or related applications. A detailed evaluation of specific contributions requires examination of the underlying publications and research outputs, including their methodology, originality, relevance, and influence within the scientific literature.

Publications

The supplied profile reports 168 documents associated with Rahim Zahedi. This figure indicates sustained scholarly publication activity. Publication quantity alone does not determine academic quality, and appropriate evaluation should also consider the significance of individual studies, authorship contribution, research methodology, publication venues, originality, and relevance. Persistent researcher identifiers such as ORCID can assist in accurately associating scholarly outputs with individual researchers. [3]

Research Impact

The reported citation count of 5,188 and h-index of 38 provide quantitative measures of scholarly visibility. The h-index is designed to combine publication productivity and citation impact into a single indicator, although its interpretation differs between disciplines and career stages. [2] Accordingly, these values should be treated as contextual indicators and considered together with qualitative evidence concerning the researcher’s substantive academic contributions.

Award Suitability

The supplied academic profile provides several measurable indicators relevant to consideration for the Best Researcher Award. Rahim Zahedi’s affiliation with the University of Tehran, specialization in energy, reported publication record, citation count, and h-index collectively establish a documented scholarly profile. Final award evaluation should additionally consider verified research outputs, originality, scientific quality, contribution to the field, and the formal assessment criteria applied by the International Invention Awards.

Conclusion

Rahim Zahedi, affiliated with the University of Tehran, has a supplied academic profile reflecting sustained research activity in the energy field. The reported record of 168 documents, 5,188 citations, and an h-index of 38 provides quantitative context for evaluating his scholarly visibility. These indicators can support consideration for the Best Researcher Award, while a complete assessment should incorporate qualitative evidence concerning research originality, rigor, relevance, and contribution to the scientific community.

References

  1. Google Scholar. (n.d.). Rahim Zahedi, Author ID uMoggwwAAAAJ. Google Scholar author profile.
    https://scholar.google.com/citations?hl=en&user=uMoggwwAAAAJ
  2. Journal article. (2025).Technical and economic analysis of hydrogen production from pre combustion carbon capture by Rectisol process in combined cycle power plant..
    https://doi.org/10.1016/j.enconman.2025.120290
  3. ORCID. (n.d.). Rahim Zahedi, ORCID record 0000-0001-6837-8729. Open Researcher and Contributor ID.
    https://orcid.org/0000-0001-6837-8729
  4. Journal article. (2026).Enhancing power, water and biofuel multigeneration system through developed biomass-driven hybrid process with energy, exergy, economic and environmental (4E) analysis.
    https://doi.org/10.1016/j.renene.2025.124131
  5. International Invention Awards. (2026.). International Invention Awards official website.
    https://inventionawards.org/

Mr. Tengfei Cheng | Hydrogen Energy | Best Researcher Award

Mr. Tengfei Cheng | Hydrogen Energy | Best Researcher Award

Hefei General Machinery Research Institute Co., Ltd, China.

Mr. Tengfei Cheng is a materials scientist and engineer specializing in pressure vessel and pipeline technology. He is currently an Engineer at Hefei General Machinery Research Institute (China), focusing on basic research in materials science and hydrogen storage technologies. With previous experience as an Assistant Engineer at Yunnan Innovation Institute, his expertise spans advanced materials research, solid-state hydrogen storage, and lithium-ion battery technologies. His work has earned recognition through multiple research grants and international journal publications.

Profile

Orcid

Education 🎓

Mr. Tengfei Cheng holds a Master's degree in Materials Science and Engineering from Shanghai University, where he studied from 2018 to 2021. Prior to that, he earned his Bachelor's degree in the same field from Shanghai University, completing his undergraduate studies between 2014 and 2018. His academic background has provided him with a strong foundation in materials science, equipping him with expertise in advanced materials research and engineering applications.

Professional Experience 👨‍🔬

Mr. Tengfei Cheng is currently an Engineer at Hefei General Machinery Research Institute, China (2021–Present). Previously, he served as an Assistant Engineer at the Yunnan Innovation Institute of Beijing University of Aeronautics and Astronautics in 2021.

Research Interests 🔬

Mr. Cheng’s research is centered on materials science and engineering, particularly in:

Hydrogen storage technologies

Advanced battery materials (Li-ion, Na-ion, and solid-state)

Pressure vessel and pipeline technology

High-entropy alloys and corrosion mechanisms

Molecular dynamics simulation for material properties

Awards & Recognitions 🏆

China National Machinery Industry Corporation Award (2024) – Research on High-Density Adaptive Solid-State Hydrogen Storage

Hefei General Machinery Research Institute Award (2023) – Research on Hydrogen Storage Properties of Titanium-Based High-Entropy Alloys

Selected Publications 📚

Mr. Cheng has published extensively in high-impact journals, with contributions to energy storage, corrosion resistance, and molecular dynamics simulation.

Enhanced Lithium Polysulfide Conversion via Multi-Transition-Metal-Phosphides for Li–S Batteries
Industrial & Engineering Chemistry Research, 2025
DOI: 10.1021/acs.iecr.5c00371

Thiol-Assisted Regulated Electronic Structure of Ultrafine Pd-Based Catalyst for Formic Acid Electrooxidation
Journal of Environmental Chemical Engineering, 2025
DOI: 10.1016/j.jece.2024.115034

Topological Insulator Heterojunction with Electric Dipole Domain to Boost Polysulfide Conversion in Li–S Batteries
Angewandte Chemie International Edition, 2025
DOI: 10.1002/anie.202423357

Functionalized Polyethylene Separators for Fast-Charging Li-Ion Batteries
ACS Applied Materials & Interfaces, 2025
DOI: 10.1021/acsami.4c15898

Study on the Microstructure and Mechanical Properties of Al–Cu–Mg Aluminum Alloy Using Molecular Dynamics Simulation
Transactions of the Indian Institute of Metals, 2024
DOI: 10.1007/s12666-024-03410-z

Dr. Young Hun Jeong | Energy Harvesting | Best Researcher Award

Dr. Young Hun Jeong | Energy Harvesting | Best Researcher Award

Korea Institute of Ceramic Engineering and Technology, South Korea.

Dr. Young Hun Jeong is a Chief Researcher at the Electronic Convergence Materials Division of the Korea Institute of Ceramic Engineering and Technology. He specializes in piezoelectric sensors, actuators, acoustics, and energy harvesting, with a particular focus on wearable and flexible piezoelectrics for bio-sensors. His expertise extends to infrared sensor development, nano-architecture, and microwave dielectric thin-film growth. Young Hun is a highly skilled researcher proficient in designing high-k and low-k thin films for capacitors, PTCR materials, and advancing microwave dielectric materials for next-generation applications.

Profile

Scopus

Education 🎓

Young Hun Jeong holds a degree in Materials Science with a specialization in electronic materials. His academic foundation has empowered him to push the boundaries of materials innovation, particularly in the areas of piezoelectrics and energy harvesting technologies.

Experience 🛠️

With a proven track record, Young Hun has contributed significantly to over 21 ongoing research projects and 3 industry consultancy projects. He has developed key technologies and methodologies, such as the two-dimensionally dispersed templated grain growth (2DD TGG) technique, which has advanced the performance of piezoelectric materials. He is also a contributor to numerous patents (52 published) and has co-authored 57 SCI journal articles, solidifying his role as a leader in energy harvesting and sensing technologies.

Research Interests 🔬

Piezoelectric Sensors & Actuators

Young Hun Jeong enhances piezoelectric sensors and actuators for better efficiency and sensitivity in industrial and medical applications.

Acoustics and Energy Harvesting

His work in acoustics and energy harvesting focuses on capturing ambient energy for self-powered systems and sensors.

Wearable and Flexible Piezoelectrics for Bio-sensors

Jeong innovates in wearable and flexible piezoelectrics, advancing bio-sensor technologies for health monitoring and diagnostics.

Infrared Sensors and Nano-Architecture

He develops infrared sensors and nano-architecture for applications in environmental monitoring, security, and healthcare.

Microwave Dielectric Thin Film Growth & Characterization

Jeong contributes to microwave dielectric thin films, improving materials for communication systems and radar technologies.

High-k & Low-k Thin Films for Capacitors

His research on high-k and low-k thin films improves capacitor performance, enhancing energy storage in electronic devices.

PTCR Materials

Jeong advances PTCR materials for temperature sensing and self-regulating systems in energy management.

Microwave Dielectric Materials

His work on microwave dielectric materials supports high-frequency systems like 5G and satellite communications.

Impact on Sectors

His research impacts sensing technologies, bioelectronics, and energy harvesting, driving innovation in self-sustaining systems and wearable tech.

Publications Top Notes 📚

Low-temperature sintered 0.5Pb(Ni1/3Nb2/3)O3–0.16PbZrO3–0.34PbTiO3 piezoelectric textured ceramics by Li2CO3 addition

Authors: Cho, S.W., Na, Y.-H., Baik, J.M., Park, K.-I., Jeong, Y.H., Published: 2024, Journal of the American Ceramic Society, Citations: 3. Link

Piezoelectric Pb(Ni,Nb)O3-Pb(Zr,Ti)O3 multilayer ceramics using Cu-Ag electrodes reduced by hydrazine solution treatment

Authors: Lee, M.-S., Jeong, Y.H., Published: 2024, Materials Today Communications, Link

Enhanced energy harvesting performance of piezoelectric cantilever using (Bi,Sm)ScO3-PbTiO3 ceramics textured by microstructural engineering, Authors: Lee, M.-S., Song, H.-C., Jeong, Y.H., Published: 2024, Materials Letters, Citations: 2. Link

Phase transition behavior and electrical properties of (Bi0.97Sm0.03)ScO3-PbTiO3 textured ceramics MPB-modified by BaTiO3 templates for high temperature piezoelectric device applications, Authors: Lee, M.-S., Jeong, Y.H., Published: 2023, Ceramics International, 49(23), Citations: 2. Link

Effects of Sm-substitution on dielectric, ferroelectric, and piezoelectric properties of 0.36(Bi1-xSmx)ScO3-0.64PbTiO3 ceramics

Authors: Cho, S.W., Baik, J.M., Jeong, Y.H., Published: 2023, Ceramics International, 49(2), Link