Shaheer Akhtar | Energy | Sustainable Materials Recognition

Sustainable Materials Recognition

Shaheer Akhtar
Affiliation Jeonbuk National University
Country South Korea
Scopus ID 18933527100
Documents 318
Citations 10,665
h-index 58
Subject Area Energy
Event International Material Scientist Awards
ORCID 0000-0001-7698-2619

Shaheer Akhtar is a researcher affiliated with Jeonbuk National University in South Korea whose academic profile is associated with the energy research area. The recognition titled Sustainable Materials Recognition provides a structured context for presenting research activity related to sustainable materials, energy technologies, and related scientific applications. Bibliographic information supplied for the researcher records documents, citations, and an h-index of in the stated Scopus profile. These metrics are bibliographic indicators and should be interpreted in relation to the coverage, indexing practices, and update status of the underlying database. [1]

Abstract

This academic recognition profile presents the research record of Shaheer Akhtar, affiliated with Jeonbuk National University, South Korea, within the subject area of Energy. The profile emphasizes sustainable materials as a research-oriented theme connecting materials development, energy-related technologies, and scientific applications. The supplied bibliographic record identifies documents, citations, and an h-index of in Scopus.[1]

Keywords

Sustainable Materials, Energy Research, Materials Science, Sustainable Energy Technologies, Advanced Materials Research, Energy Conversion Materials, Energy Storage Materials, Renewable Energy Materials, Functional Materials, Sustainable Materials Development, Advanced Energy Materials, Materials Engineering, Energy Technology Research, Sustainable Materials Innovation, Materials Applications, Emerging Energy Technologies, Green Materials Research, Clean Energy Materials, Sustainable Energy Solutions, Energy.[2]

Introduction

The academic profile of Shaheer Akhtar is presented in this context through the supplied institutional affiliation, subject area, and bibliometric indicators. The recorded Scopus profile identifies Jeonbuk National University as the researcher’s affiliation and Energy as the subject area. Scopus author profiles are designed to associate indexed scholarly documents with individual researchers and provide bibliographic indicators for their publication records.[1]

Research Profile

The supplied research profile identifies Shaheer Akhtar with Jeonbuk National University in South Korea and associates the research activity with Energy. The Scopus Author ID is , while the reported record contains documents, 10,665 citations, and an h-index. These figures describe the bibliographic record provided for the profile and may change as databases are updated or as additional publications and citations are indexed.[2]

Research Contributions

The sustainable materials theme provides a framework for considering materials-based approaches to contemporary energy challenges. Such research can involve the design and characterization of functional materials, evaluation of performance under defined operating conditions, and investigation of relationships between material properties and energy-related applications. The precise contribution of individual publications should be assessed from the original articles, rather than inferred solely from bibliometric indicators.[3]

Publications

The supplied information identifies documents in the Scopus profile associated with author ID. Because individual publication titles, journals, publication years, co-authors, and identifiers were not included in the source data supplied for this page, specific article-level references are not asserted here. Publication details should be verified directly against the relevant bibliographic records before being used for formal citation or evaluation.[4]

Research Impact

Citation counts and h-index values are bibliometric measures that can assist in describing scholarly visibility, but they do not independently measure the quality, societal relevance, originality, or practical effectiveness of individual research contributions.In the context of sustainable materials and energy research, research impact may also be considered through factors such as reproducibility, technological application, interdisciplinary collaboration, contribution to scientific knowledge, and relevance to sustainable energy development.[2]

Award Suitability

The Sustainable Materials Recognition profile is presented in connection with the International Material Scientist Awards and the research area of Energy. The supplied academic information provides several elements commonly included in an academic recognition profile, including institutional affiliation, subject area, persistent researcher identification, publication count, citation count, and h-index.[3]

Conclusion

Shaheer Akhtar’s academic recognition profile identifies an Energy-focused research record associated with Jeonbuk National University, South Korea. The supplied bibliographic information records documents, citations, and an h-index. in Scopus, together with ORCID. The sustainable materials theme provides a suitable scholarly framework for presenting research at the intersection of materials development and energy-related applications, while detailed assessment should remain grounded in the underlying publications and documented evidence.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Shaheer Akhtar, Author ID 18933527100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=18933527100
  2. ORCID. (n.d.). ORCID record: Shaheer Akhtar, ORCID iD 0000-0001-7698-2619. ORCID.
    https://orcid.org/0000-0001-7698-2619
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Rahman, F., Phung, M. T., Cho, J. W., Kong, I., Lee, S. B., Akhtar, M. S., & Yang, O.-B. (2026). High-accuracy LSTM combined with multi-head attention for forecasting PV power generation in vertical bifacial panels. Journal of Atmospheric and Solar-Terrestrial Physics, 285, 106903. https://doi.org/10.1016/j.jastp.2026.106903

Sadia Ameen | Energy | Emerging Technologies Award

Emerging Technologies Award

Sadia Ameen
Affiliation Jeonbuk National University
Country South Korea
Scopus ID 15047388000
Documents 203
Citations 6,494
h-index 41
Subject Area Energy
Event International Material Scientist Awards
ORCID 0000-0001-7776-6539

These bibliometric indicators provide a quantitative description of her indexed research activity and scholarly visibility.Her academic recognition is presented in connection with the International Material Scientist Awards under the Emerging Technologies Award category. The profile combines researcher identification information, bibliometric indicators, research-area classification, and persistent researcher identifiers to provide a structured academic overview. [1]

Abstract

Sadia Ameen is a researcher affiliated with Jeonbuk National University, South Korea, whose stated subject area is Energy. The supplied academic profile records Scopus-indexed documents, citations, and an h-index. Her researcher identity is additionally represented through an ORCID record, providing a persistent identifier for scholarly activities and publications.[1]

Keywords

Sadia Ameen of Jeonbuk National University is associated with Energy Research, Emerging Technologies, and Energy Technologies, with interests spanning Materials Science and advanced energy applications. Her Scopus Research Profile reflects scholarly activity, while recognition through the International Material Scientist Awards highlights her academic contributions to emerging technologies, energy research, and materials science.[2]

Introduction

Research in energy and emerging technologies focuses on innovative materials, devices, and processes for addressing modern energy challenges. Sadia Ameen’s research profile is associated with Energy and Jeonbuk National University, South Korea.Bibliometric information can provide one method for describing a researcher’s publication and citation history.[1]

Research Profile

Sadia Ameen’s supplied academic profile is associated with Jeonbuk National University, South Korea, and identifies Energy as the principal research subject area. Her Scopus Author ID is , while her ORCID identifier is 0000-0001-7776-6539. Persistent identifiers such as Scopus Author IDs and ORCID iDs facilitate the identification and organization of scholarly records across academic information systems.[5]

Research Contributions

The available profile information places Ameen’s research within the Energy subject area. In this context, her academic record can be considered within the broader interdisciplinary landscape of emerging energy technologies, where advances in materials, engineering, chemistry, physics, and technology development may contribute to energy-related research and applications.[2]

Publications

The supplied Scopus information reports documents associated with Sadia Ameen’s author profile. Because individual publication titles, journal information, publication dates, and identifiers were not provided in the source data for this article, specific publications are not listed here to avoid introducing unverified bibliographic information. [4]

Research Impact

Bibliometric indicators should be interpreted alongside disciplinary context, publication practices, collaboration patterns, career stage, and the characteristics of the indexing database. Accordingly, the reported metrics provide descriptive evidence of indexed research activity rather than a comprehensive assessment of the scientific significance or societal impact of individual contributions.[3]

Award Suitability

The Emerging Technologies Award profile is associated with the International Material Scientist Awards and identifies Energy as the relevant subject area. The documented information supplied for this profile includes an established institutional affiliation, a Scopus-indexed research record, and persistent researcher identifiers. [4]

Conclusion

The profile is presented in relation to the Emerging Technologies Award within the International Material Scientist Awards. The information provides a structured overview of the researcher’s affiliation, field, identifiers, and reported bibliometric indicators while maintaining a distinction between descriptive research metrics and broader assessments of scholarly contribution.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Sadia Ameen, Author ID 15047388000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=15047388000
  2. ORCID. (n.d.). ORCID record: Sadia Ameen, ORCID iD 0000-0001-7776-6539. ORCID.
    https://orcid.org/0000-0001-7776-6539
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Malik, S., Singh, J., Goyat, R., Saharan, Y., Chaudhry, V., Umar, A., Ibrahim, A. A., Akbar, S., Ameen, S., & Baskoutas, S. (2023). Nanomaterials-based biosensor and their applications: A review. Heliyon, 9(9), e19929.
    https://doi.org/10.1016/j.heliyon.2023.e19929
  5. Akhtar, M. S., Ameen, S., Srivastava, P., & Singh, G. (2015). Green synthesis of CuO nanoparticles with leaf extract of Calotropis gigantea and its dye-sensitized solar cells applications. Journal of Alloys and Compounds, 632, 321–325.
    https://doi.org/10.1016/j.jallcom.2015.01.172

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

Ayush Pundir | Energy | Energy Materials Recognition

Energy Materials Recognition

Ayush Pundir
Affiliation Indian Institute of Technology Roorkee
Country India
Scopus ID 58778002900
Documents 3
Citations 42
h-index 2
Subject Area Energy
Event International Material Scientist Awards
ORCID 0009-0001-5389-7291

Ayush Pundir is a researcher affiliated with the Indian Institute of Technology Roorkee, India, whose indexed research profile is associated with the subject area of Energy. The supplied bibliographic profile records 3 documents, 42 citations, and an h-index of 2. These indicators provide a concise bibliometric snapshot of the researcher’s documented scholarly output and citation visibility within indexed literature. Bibliometric databases such as Scopus are commonly used to organize scholarly records and support quantitative assessment of research activity. [1]

Abstract

Energy Materials Recognition presents a scholarly profile of Ayush Pundir, affiliated with the Indian Institute of Technology Roorkee, India. The profile identifies Energy as the principal subject area and records 3 indexed documents, 42 citations, and an h-index of 2 according to the supplied Scopus profile information. [1]

Keywords

Energy Materials; Energy Research; Materials Science; Sustainable Energy; Energy Storage; Energy Conversion; Renewable Energy; Battery Materials;  Materials Engineering; Clean Energy Research; Sustainable Materials; Energy Innovation; Research Impact; Scopus-Indexed Research; Academic Research; Research Recognition; International Material Scientist Awards; Indian Institute of Technology Roorkee; Energy Materials Research.[2]

Introduction

Energy materials research encompasses the development, characterization, and application of materials relevant to energy generation, conversion, storage, transport, and efficiency. The field intersects materials science with electrochemistry, physics, chemistry, engineering, nanotechnology, and related disciplines.[1]

Research Profile

The supplied research profile identifies Ayush Pundir with the Indian Institute of Technology Roorkee in India and lists Energy as the principal subject area. The Scopus Author ID provided for the profile is 58778002900. The reported record contains 3 documents, 42 citations, and an h-index of 2.[3]

Research Contributions

The supplied profile places Ayush Pundir’s research within the Energy subject area. On the basis of the available information, the profile can therefore be considered in the context of energy-oriented materials research and its associated scientific applications. Specific research contributions should be assessed from individual publications, collaborations, and demonstrated technological relevance rather than from bibliometric indicators alone.[4]

Publications

The supplied Scopus profile reports 3 documents associated with Ayush Pundir. Because individual publication titles, journal information, publication years, and DOI identifiers were not provided in the input data, this article does not assign specific publications or DOI numbers to the researcher without independent bibliographic verification. Scopus records can be used to review indexed documents and associated citation information. [1]

Research Impact

The reported citation count indicates that the research outputs represented in the supplied profile have been cited in the indexed literature. The h-index of 2 further indicates that at least two indexed publications have reached a citation threshold of two citations under the reported profile. Such indicators are dynamic and may change as databases are updated and additional publications or citations are indexed. [2]

Award Suitability

 comprehensive award assessment should consider the quality and originality of the nominee’s publications, research contribution, technical significance, evidence of innovation, collaboration, citation context, academic progression, and relevance to the award category. Bibliometric indicators can complement, but should not replace, qualitative expert evaluation. [3]

Conclusion

Ayush Pundir is affiliated with the Indian Institute of Technology Roorkee and is represented in the supplied scholarly information within the Energy subject area. The reported profile includes 3 documents, 42 citations, and an h-index of 2, together with Scopus Author ID 58778002900 and ORCID 0009-0001-5389-7291. These indicators establish a concise bibliometric profile of documented research activity.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Ayush Pundir, Author ID 58778002900. Scopus.
    https://www.scopus.com/pages/authors/58778002900
  2. ORCID. (n.d.). ORCID record: Ayush Pundir, ORCID iD 0009-0001-5389-7291. ORCID.
    https://orcid.org/0009-0001-5389-7291
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Pundir, A. C., & Sil, A. (2025). Synergetic effect of 2D-MoS₂ nanoflakes functionalised separator supported by hierarchical porous carbon/sulfur nanoparticle composite cathode for improved polysulfide conversion in Li-S battery. Journal of Energy Storage, 112, 115594.
    https://doi.org/10.1016/j.est.2025.115594

 

Can Li | Materials for Energy Applications | Best Researcher Award

Can Li | Materials for Energy Applications | Best Researcher Award

Prof Can Li, Dalian Institute of Chemical Physics, China

Professor Can Li is a distinguished chemist and chair professor at the Dalian Institute of Chemical Physics (DICP), CAS, where he directs the Fundamental Research Center for Artificial Photosynthesis. 🌱 He earned his Ph.D. in Physical Chemistry from DICP with a joint program at Tokyo Institute of Technology. 🌏 A postdoctoral stint at Northwestern University further honed his expertise. Prof. Li is a CAS member, TWAS fellow, Academia Europaea foreign member, and RSC fellow. 🔬 His groundbreaking work in photocatalysis and CO2 reduction for solar fuel production has earned him global accolades, including the International Catalysis Award and Japan Photochemistry Prize. 🏅

Publication Profile

Scopus

Academic and Professional Background 🎓

Prof. Can Li is a renowned chair professor and director of the Fundamental Research Center for Artificial Photosynthesis at the Dalian Institute of Chemical Physics (DICP), Chinese Academy of Sciences (CAS). 🌟 He completed his Ph.D. in Physical Chemistry in 1988 through a prestigious joint program between DICP CAS and Tokyo Institute of Technology, Japan. 🌏 He further advanced his expertise with post-doctoral research at Northwestern University, USA. 🔬 Prof. Li’s exceptional academic background and training at world-class institutions emphasize his profound expertise and global influence in catalysis and artificial photosynthesis, driving innovations in sustainable energy solutions. 🌱⚡

Awards and Distinctions 🏆🌍

Prof. Can Li has been honored with numerous prestigious awards, reflecting his groundbreaking contributions to catalysis and artificial photosynthesis. 🌟 These include the International Catalysis Award, the Japan Photochemistry Prize, the Hong Kong “Qiu-Shi” Prize, and the National Catalysis Award of China. 🏆🎖 His exceptional achievements underscore his role as a pioneer in these transformative fields, driving innovations in sustainable energy and catalytic technologies. 🌱⚡ Prof. Li’s accolades highlight his global recognition and unwavering dedication to advancing scientific research and its applications for a more sustainable future. 🌍🔬

Research Focus Area 🌱🧬

Prof. Can Li is a leading researcher in the field of catalysis, photocatalysis, and renewable energy materials. 🌱⚡ His work spans groundbreaking advancements in areas such as perovskite solar cells, CO₂ fixation for α-amino acid synthesis, and photocatalytic water splitting for sustainable energy production. 🔬🔋 Prof. Li’s research also explores facet-engineered catalysts, plasmonic nanomaterials, and wastewater treatment, showcasing his interdisciplinary approach to addressing energy and environmental challenges. 🌍♻️ His innovative studies combine physical chemistry, material science, and catalytic engineering, driving solutions for clean energy and environmental sustainability. 🌞🌊

Leadership and Professional Service💼

Prof. Can Li has demonstrated exceptional leadership in the scientific community. 🌟 He served as the president of the International Association of Catalysis Societies from 2008 to 2012 and is currently the president of the Catalysis Society of China. 🇨🇳🌐 Additionally, he holds the position of Dean of the Materials and Chemical Science School at the University of Science and Technology of China (USTC). 🏫 His leadership roles underscore his influential contributions to advancing catalysis research and material science both at a national and international level, shaping the future of these critical fields. 🔬🌍

Publication Top Notes📚🌐

Electrochemical CO2 fixation with amines to synthesize α-amino acids

Diastereo-divergent synthesis of chiral hindered ethers via a synergistic calcium(II)/gold(I) catalyzed cascade hydration/1,4-addition reaction

Stabilizing initial phase for efficient and stable FAPbI3 perovskite solar cells

Visualizing Ultrafast Photogenerated Electron and Hole Separation in Facet-Engineered Bismuth Vanadate Crystals

Photon-induced regeneration of Pd catalyst for carbonylation of amines to ureas

Facet-Engineered BiVO4 Photocatalysts for Water Oxidation: Lifetime Gain Versus Energetic Loss

Modulating crystal facets of photoanodes for photoelectrocatalytic scalable degradation of fluorinated pharmaceuticals in wastewater

Achieving Visible Light Triggered Overall Water Splitting over Plasmonic Au/SrTiO3:Al Photocatalyst

Conclusion 🔍

Prof. Can Li’s exceptional academic achievements, groundbreaking research contributions, global recognition, and leadership roles in the field of catalysis and artificial photosynthesis make him an exemplary candidate for the Best Researcher Award. His work addresses critical global challenges, positioning him as a deserving recipient of this honor.