Muhammad Munaim Khan | Energy | Young Researcher Award

Young Researcher Award

Muhammad Munaim Khan
Affiliation Beijing Institute of Technology, China
Country Pakistan
Scopus ID 59671854200
Documents 2
Citations 21
h-index 2
Subject Area Energy
Event International Material Scientist Awards
ORCID 0009-0003-7503-2701

The Young Researcher Award recognizes an early-career research profile in an academic context. The information presented on this page summarizes the supplied bibliographic identifiers, institutional affiliation, research subject area, and indexed research metrics associated with Muhammad Munaim Khan. The award context is associated with the International Material Scientist Awards.[1]

Abstract

Muhammad Munaim Khan is affiliated with the Beijing Institute of Technology in China and is identified in the supplied academic records as a researcher from Pakistan working in the subject area of Energy. His Scopus profile lists documents, citations, and an h-index. A persistent ORCID identifier is also associated with the researcher. These identifiers provide mechanisms for distinguishing the researcher within scholarly communication and bibliographic databases.[1]

Keywords

Energy research focuses on advanced energy systems, energy materials, sustainable energy technologies, renewable resources, energy storage, conversion processes, efficiency, and innovative materials science. Research metrics and bibliometrics support the evaluation of scholarly impact, scientific productivity, research visibility, publication trends, citation performance, collaboration networks, technological development.[2]

Introduction

Academic recognition programs commonly consider a combination of research activity, scholarly output, subject-area relevance, and identifiable research records. In this context, Muhammad Munaim Khan’s supplied profile connects his academic affiliation with Beijing Institute of Technology and identifies Energy as his subject area. His Scopus Author ID and ORCID provide standardized identifiers that can be used to locate or distinguish his scholarly records.[1]

Research Profile

Muhammad Munaim Khan is affiliated with the Beijing Institute of Technology in China and is identified as a researcher from Pakistan specializing in Energy. His academic profile reflects research contributions indexed through Scopus, alongside an associated ORCID identifier. These scholarly identifiers and bibliographic records support the recognition, tracking, and evaluation of his research activities.[4]

Research Contributions

The available supplied information does not provide a complete list of research topics, experimental methods, datasets, or individual publication titles. Accordingly, the research contribution profile can be described at the level supported by the available metadata: the researcher has indexed scholarly documents associated with an Energy subject classification and has an identifiable bibliometric record in Scopus.[5]

Publications

The supplied Scopus metadata indicates indexed documents associated with the researcher profile. No individual publication titles, journal names, publication dates, article identifiers, or values were supplied for this article. Therefore, specific publications and records are not enumerated here to avoid attributing works without supporting bibliographic information.[2]

Research Impact

The supplied Scopus record reports citations and an h-index of for the researcher profile. These are bibliometric indicators describing indexed scholarly activity; citation counts and h-index values can change over time as databases are updated. They should therefore be interpreted in relation to the date and coverage of the underlying database.[3]

Award Suitability

The supplied profile information is relevant to a Young Researcher Award context because it documents an identifiable researcher, an institutional affiliation, an Energy subject area, and indexed scholarly activity. The event associated with the recognition is the International Material Scientist Awards.[4]

Conclusion

Muhammad Munaim Khan is a Pakistan-associated researcher affiliated with Beijing Institute of Technology, China, specializing in Energy. His academic profile reflects research contributions documented through Scopus and ORCID. These records establish his scholarly background, research identity, and academic engagement, supporting his inclusion in a Young Researcher Award profile for the International Material Scientist Awards.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Muhammad Munaim Khan, Author ID 59671854200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59671854200
  2. ORCID. (n.d.). Muhammad Munaim Khan: ORCID record 0009-0003-7503-2701. ORCID.
    https://orcid.org/0009-0003-7503-2701
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Khan, M., Yunsi, J., Khan, M. M., Ali, A., Liu, Q., Hussain, W., He, W., Mu, D., Li, L., Chen, R., & Wu, F. (2026). Coal-based hard carbon anodes for sodium-ion batteries: A review on fabrication, sodium storage mechanism, and defect engineering. Journal of Energy Storage, 179, 123924.
    https://doi.org/10.1016/j.est.2026.123924
  5. Khan, M., Liu, Q., Yiqing, L., Qayyum, Z., Khan, M. M., He, W., Mu, D., Li, L., Chen, R., & Wu, F. (2026). Structural characteristics, storage mechanisms, and rational design in carbon-based anodes for sodium-ion batteries. Journal of Power Sources, 693, 241100.
    https://doi.org/10.1016/j.jpowsour.2026.241100

Hamideh Talebi | Energy Science | Best Researcher Award

Best Researcher Award

Hamideh Talebi  Shiraz University of Technology, Iran

 Hamideh Talebi
Affiliation Shiraz University of Technology
Country Iran
Scopus ID 55934043100
Documents 6
Citations 86
h-index 5
Subject Area Energy Science
Event International Material Scientist Awards
ORCID 0000-0003-1662-9375

Hamideh Talebi is a researcher affiliated with Shiraz University of Technology, Iran, whose academic work is situated within the field of Energy Science and related areas of advanced materials and optoelectronics. Her documented research focuses on nanophotonics, plasmonic structures, perovskite solar cells, optical absorption enhancement, and infrared optoelectronic devices. Her studies investigate the interaction of light with nanoscale materials and structures to improve the optical and functional properties of emerging energy technologies. Particular attention is given to ultrathin photovoltaic architectures, surface plasmon polaritons, waveguide modes, metallic and dielectric nanostructures, and hybrid materials. This research direction connects materials science with nanoscale optical engineering and supports the development of advanced photovoltaic and photodetection technologies.[1]

Abstract

This academic recognition profile presents the research activities of Hamideh Talebi of Shiraz University of Technology, Iran. Her documented research includes perovskite solar cells, plasmonic light management, nanophotonics, optical absorption enhancement, ultrathin photovoltaic structures, and infrared photodetection. Her publications demonstrate the application of nanoscale optical structures to photovoltaic and optoelectronic technologies. [1]

Keywords

Hamideh Talebi; Shiraz University of Technology; Energy Science; perovskite solar cells; plasmonics; nanophotonics; photovoltaic devices; optical absorption; surface plasmon polaritons; waveguide modes; infrared photodetectors; graphene; PbSe nanorods. [2]

Introduction

Talebi’s documented research addresses these topics through studies involving plasmonic nanoparticles, metallic structures, waveguide modes, and hybrid nanomaterials. Her work also includes infrared photodetection using graphene and PbSe nanorod structures. [1]

Research Profile

Hamideh Talebi’s research contributions focus on plasmonic structures, ultrathin perovskite solar cells, surface plasmon polaritons, waveguide modes, and nanostructured materials for enhanced optical absorption. Her work also includes graphene–PbSe nanorod photodetection and SiO2–Au structures, supporting advances in photovoltaic and infrared optoelectronic technologies. [4]

Publications

Hamideh Talebi’s publications focus on perovskite solar cells, plasmonics, nanophotonics, and infrared photodetection. Her research examines optical absorption enhancement using nanoparticles, surface plasmon polaritons, waveguide modes, graphene–PbSe nanorods, and advanced nanostructures for photovoltaic and optoelectronic applications. [2]

Research Impact

Hamideh Talebi’s research profile reports 86 citations and an h-index of 5. Her work contributes to Energy Science through studies of optical absorption, plasmonic materials, and ultrathin perovskite solar-cell structures, supporting research in advanced photovoltaic and optoelectronic technologies.[3]

Award Suitability

Hamideh Talebi’s research profile aligns with the Best Researcher Award under the International Material Scientist Awards, particularly through her work in advanced materials, nanophotonics, photovoltaic technologies, and optoelectronic applications. Final eligibility and selection remain subject to the award’s official criteria and assessment process.[4]

Conclusion

Hamideh Talebi’s research profile reflects work at the intersection of Energy Science, nanophotonics, plasmonics, photovoltaic devices, and infrared optoelectronics. Her publications address strategies for controlling light absorption and optical interactions in nanoscale structures. The supplied bibliometric information and publication record provide a documented basis for academic recognition within the stated award category.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Hamideh Talebi, Author ID 55934043100. Scopus.
    https://www.scopus.com/pages/authors/55934043100
  2. ORCID. (n.d.). Hamideh Talebi.
    https://orcid.org/0000-0003-1662-9375
  3. Talebi, H.(2022). Design of ultrathin hole-transport-layer-free perovskite solar cell with near-infrared absorption enhancement using Ag NPs.Optics Communications, 520, 128553.
    https://doi.org/10.1016/j.optcom.2022.128553
  4. Talebi, H., & Emami, F. (2023). High performance ultra-thin perovskite solar cell by surface plasmon polaritons and waveguide modes. Optics & Laser Technology, 165, 109552.
    https://doi.org/10.1016/j.optlastec.2023.109552
  5. International Material Scientist Awards. (n.d.).
    https://materialscientists.com