Madhukumar R | Nanomaterials | Material Scientist Award

Material Scientist Award

Madhukumar R
Affiliation R.T.E.Society’s Arts Science & Commerce Degree College, Ranebennur-581115, Karnataka, India
Country India
Scopus ID 56422225000
Documents 19
Citations 214
h-index 7
Subject Area Nanomaterials
Event International Material Scientist Awards

Madhukumar R is a researcher affiliated with R.T.E.Society’s Arts Science & Commerce Degree College, Ranebennur, Karnataka, India, whose indexed research record is associated with the field of nanomaterials. The available bibliographic profile records 19 documents, 214 citations, and an h-index of 7 in Scopus. This page presents a structured academic recognition profile in relation to the International Material Scientist Awards.[1]

Abstract

Madhukumar R is a researcher working in the broad area of nanomaterials. His indexed scholarly record includes documents with citations and an h-index of , according to the supplied Scopus author information. The profile provides a bibliometric basis for considering his research activity within the scope of material science and nanomaterial-related research. The recognition profile is associated with the International Material Scientist Awards.[1]

Keywords

Madhukumar R; Material Scientist Award; International Material Scientist Awards; Nanomaterials Research; Materials Science Research; Nanoscience and Nanotechnology; Advanced Nanomaterials; Functional Nanomaterials; Nanomaterial Characterization; Nanostructured Materials; Materials Chemistry; Material Science Innovation; Research Publications; Scientific Publications; Peer Reviewed Research; Scholarly Research.[2]

Introduction

Nanomaterials research concerns materials and structures whose properties can be significantly influenced by nanoscale dimensions, interfaces, composition, and morphology. Related disciplines. Within this research landscape, publication records and citation indicators can provide quantitative information about scholarly activity and relevance of individual contributions.[1]

Research Profile

The research profile of Madhukumar R is categorized under Nanomaterials. The available bibliometric information indicates an established body of indexed scholarly output, with 19 documents and 214 citations. The reported h-index of 7 indicates that at least seven indexed publications have each received at least seven citations within the database measurement represented by the supplied profile.[4]

Research Contributions

The available information places Madhukumar R’s scholarly activity within nanomaterials, an interdisciplinary area relevant to the development, and application of materials at the nanoscale. A complete assessment of specific research contributions requires examination of the individual publication, experimental findings, and research outcomes associated with the author’s indexed documents.[3]

Publications

The supplied profile identifies indexed documents for Madhukumar R. These publications constitute the documented scholarly output used in the bibliometric overview presented on this page. Identifiers were not supplied with the profile data and are therefore not inferred here.Where individual publications have identifiers, those persistent identifiers can be used to verify article metadata and provide direct access to the corresponding scholarly records.[4]

Research Impact

These indicators provide a quantitative view of the visibility of the research output represented in the database. Citation counts can vary over time and between bibliographic databases; consequently, the values should be understood as a snapshot of the supplied Scopus record rather than a complete measure of research quality or influence. [2]

Award Suitability

The International Material Scientist Awards provide a recognition context for researchers working across material science and related research areas. Madhukumar R’s stated subject area of Nanomaterials is directly relevant to the broader materials science domain. The supplied record of indexed documents, citations, and an h-index of provides measurable evidence of scholarly activity that may be considered as part of an academic recognition profile. [3]

Conclusion

Madhukumar R is an India-based researcher affiliated with R.T.E.Society’s Arts Science & Commerce Degree College, with a research profile categorized under Nanomaterials. The supplied Scopus information records documents, citations, and an h-index of . These data establish a documented scholarly profile relevant to the materials science recognition context represented by the International Material Scientist Awards.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Madhukumar R, Author ID 56422225000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56422225000
  2. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  3. Lakshmeesha Rao, B., Madhukumar, R., Sharath Chandra, K., Neelakandan, R., Wang, Y., & Sangappa, Y. (2018). Physicochemical and antimicrobial properties of gamma irradiated HPMC-ZnO BNC films. Materials Today: Proceedings, 5(10, Part 1), 21398–21405.
    https://doi.org/10.1016/j.matpr.2018.06.546
  4. Shetty, G., Madhukumar, R., Rao, B. L., & Asha, S. (2015). Preparation and characterization of silk fibroin/HPMC blend film. AIP Conference Proceedings, 1665(1), 070023.
    https://doi.org/10.1063/1.4917887

Yen Po Liu | Oxides | Editorial Board Member

Editorial Board Member

Yen Po Liu
Affiliation Peter Grünberg Institute (PGI), Forschungszentrum Jülich
Country Germany
Scopus ID 57216618974
Documents 15
Citations 143
h-index 8
Subject Area Oxides
Event International Material Scientist Awards
ORCID 0000-0003-0144-0991

The profile is presented in the context of the International Material Scientist Awards, with emphasis on research activity relevant to materials science and oxide-related materials. The information on this page is based on the supplied researcher identifiers and bibliographic profile data and should be interpreted as a snapshot rather than a permanent measure of research performance. [1]

Abstract

Yen Po Liu is affiliated with the Peter Grünberg Institute (PGI), Forschungszentrum Jülich, Germany, and is associated with research in materials science, particularly within the area of oxide materials. According to the supplied Scopus author information, the researcher has 15 indexed documents, 143 citations, and an h-index of 8. [1]

Keywords

Yen Po Liu; oxide materials; materials science; functional materials; oxide nanostructures; thin films; nanodots; Fe₃O₄; Nb:STO; materials characterization; electronic materials; nanomaterials; Peter Grünberg Institute; Forschungszentrum Jülich; Scopus; scientific research; International Material Scientist Awards.[2]

Introduction

Oxide materials constitute an important class of materials investigated across condensed-matter physics, chemistry, energy technologies, electronics, catalysis, and related fields. Their structural, electronic, magnetic, optical, and chemical properties can be strongly influenced by composition, defects, interfaces, and processing conditions.[1]

Research Profile

These indicators are commonly used to describe aspects of research productivity and scholarly visibility. Publication counts provide an indication of indexed research output, while citation counts reflect the number of citations associated with indexed publications.[3]

Research Contributions

Oxides are technologically relevant because their properties can be tailored through chemical composition, crystal structure, defects, interfaces, and synthesis conditions. Research in this area can support fundamental investigations as well as the development of materials for electronic, energy, magnetic, optical, and other technological applications.[4]

Publications

The supplied Scopus profile records 15 documents associated with Yen Po Liu. The documents form the publication component of the researcher’s indexed scholarly record. A complete assessment of the publication portfolio would normally consider article titles, journals, publication dates, co-authorship, citation patterns, research topics, and the methodological or technological significance of individual studies.[1]

Research Impact

These figures indicate that the researcher’s publications have received measurable scholarly attention within the indexed literature. Citation indicators, however, are influenced by discipline, publication age, collaboration patterns, database coverage, and citation practices and should therefore be interpreted in conjunction with qualitative evidence.[2]

Award Suitability

The researcher’s affiliation with a major research institution, identified subject area in oxides, indexed publication record, citation activity, and h-index provide relevant information for an academic recognition review. For a formal award assessment, eligibility should be determined according to the official criteria of the event, while research merit should be evaluated using verifiable scholarly evidence.[3]

Conclusion

The available evidence supports consideration of the researcher within an academic recognition context, while a final award determination should be based on the official eligibility requirements and a comprehensive review of the underlying publications, research contributions, and supporting documentation.Together, these details establish a documented scholarly profile relevant to materials-science recognition.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Yen Po Liu, Author ID 57216618974. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57216618974
  2. ORCID. (n.d.). Yen Po Liu — ORCID record 0000-0003-0144-0991. ORCID.
    https://orcid.org/0000-0003-0144-0991
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Xu, Y., Bednarski-Meinke, C., Liu, Y.-P., & Wang, E. (2026). From thin films to nanodots: Bottom-up integration of Fe₃O₄ on Nb:STO for functional oxide nanostructures. Advanced Materials, 38(10).
    https://doi.org/10.1002/adma.202517938

 

Hadiqa Naaz | Termoelectric | Innovative Research Award

Innovative Research Award

Hadiqa Naaz
Affiliation Nicolaus Copernicus University in Torun
Country Poland
Scopus ID 59545789800
Documents 2
Citations 9
h-index 1
Subject Area Thermoelectric
Event International Material Scientist Awards
ORCID 0009-0006-6425-3965

Hadiqa Naaz is a researcher affiliated with Nicolaus Copernicus University in Torun, Poland, whose scholarly profile is associated with the thermoelectric subject area. The available Scopus profile records 2 documents, 9 citations, and an h-index of 1, providing a concise bibliometric overview of the researcher’s indexed scholarly output and citation activity.[1]

Abstract

This academic recognition profile presents Hadiqa Naaz, affiliated with Nicolaus Copernicus University in Torun, Poland, in relation to the Innovative Research Award. The researcher is associated with the thermoelectric subject area, a field concerned with materials and devices capable of converting heat differences into electrical energy and, conversely, using electrical energy for thermal management. The documented Scopus profile reports 2 indexed documents, 9 citations, and an h-index of 1.[1]

Keywords

Hadiqa Naaz; Nicolaus Copernicus University in Torun; Poland; thermoelectric materials; thermoelectric research;  energy harvesting; doped ZnO films; semiconductor materials; materials science; scientific publications; Scopus; citation impact; h-index; research profile; research excellence; Innovative Research Award; Thermoelectric Research Award; International Material Scientist Awards.[2]

Introduction

Within this scientific context, research profiles can provide useful evidence about a scholar’s indexed publication activity and citation visibility. Scopus author records are one source of bibliometric information and can be used alongside publication-level assessment to understand research output and influence. Hadiqa Naaz’s documented profile identifies thermoelectric research as the relevant subject area.[1]

Research Profile

The available bibliometric information identifies Hadiqa Naaz with Nicolaus Copernicus University in Torun, Poland. The Scopus author record associated with Author ID 59545789800 reports 2 documents and 9 citations, with an h-index of 1. These figures represent indexed output and citation activity recorded by the database and may change as additional publications are indexed or citation records are updated.[3]

Research Contributions

Because the supplied profile data do not identify specific publication titles, experimental systems, material compositions, or quantitative thermoelectric performance values, no additional publication-level technical claims are made here. Such details should be established from the corresponding full-text publications before being attributed to the researcher.[4]

Publications

For formal academic evaluation, the publication record should be reviewed at the individual article level, including bibliographic accuracy, journal or conference venue, peer-review status, DOI, citation context, authorship contribution, and relevance to the researcher’s stated subject area. DOI records can provide persistent identifiers for individual scholarly publications when such identifiers are available.[1]

Research Impact

The available bibliometric record indicates 9 citations associated with 2 Scopus-indexed documents and an h-index of 1. Citation counts are useful indicators of scholarly visibility, but they should be interpreted in relation to publication age, field-specific citation practices, article type, collaboration patterns, and the size and maturity of the research portfolio. Consequently, the reported metrics provide quantitative evidence of indexed research activity rather than a standalone measure of scientific quality.[2]

Award Suitability

The Innovative Research Award is considered in relation to the researcher’s documented academic profile, subject-area alignment, and available bibliometric evidence. Hadiqa Naaz’s association with thermoelectric research provides a relevant connection to materials science and energy-related research, while the Scopus record supplies independently identifiable indicators of indexed scholarly activity.[3]

Conclusion

Hadiqa Naaz is affiliated with Nicolaus Copernicus University in Torun, Poland, and is associated with the thermoelectric subject area. The supplied Scopus profile records 2 documents, 9 citations, and an h-index of 1. These data establish a documented early-stage scholarly profile within a research field relevant to materials science, energy conversion, and thermal management.[4]

References

Mohsen Mhadhbi | Materials | Material Scientist Award

Material Scientist Award

Mohsen Mhadhbi
Affiliation National Institute of Research and Physicochemical Analysis
Country Tunisia
Scopus ID 24280679900
Documents 29
Citations 434
h-index 11
Subject Area Materials
Event International Material Scientist Awards
ORCID 0000-0003-1488-8699

Dr. Mohsen Mhadhbi is a materials-science researcher affiliated with the National Institute of Research and Physicochemical Analysis in Tunisia. His documented research activities encompass materials engineering, ceramics, composites, powder technology, energy-related materials, simulation, and modelling. His scholarly profile is associated with research involving nanostructured and advanced materials, including studies of carbide systems and nanoparticle-based materials. [1]

Abstract

The supplied research metrics associated with his profile are 29 documents, 434 citations, and an h-index of 11. These figures provide quantitative indicators of scholarly output and citation impact, while individual publications and their associated records provide additional evidence of research activity.[1]

Keywords

Mohsen Mhadhbi, Materials Science, Materials Engineering, Nanomaterials, Ceramics, Composites, Mechanical Alloying, Powder Technology, TiCrC Nanocarbide, Advanced Materials, Materials Characterization, Nanotechnology, Materials Research, Spark Plasma Sintering, Research Excellence, Scopus Researcher, Scientific Publications, International Material Scientist Awards. [2]

Introduction

Materials science combines chemistry, physics, engineering, and characterization techniques to understand and develop materials with controlled structures and properties. Within this broad field, research on ceramics, composites, powders, alloys, and nanostructured materials contributes to applications in energy, manufacturing, mechanical systems, and advanced technologies.[1]

Research Profile

The research profile of Mohsen Mhadhbi is associated with materials engineering and the development and characterization of advanced materials. Available biographical information identifies him as an Assistant Professor and researcher at the National Institute of Research and Physicochemical Analysis in Tunisia.[4]

Research Contributions

A notable component of Mhadhbi’s research concerns the processing and characterization of advanced carbide materials. A 2024 publication on TiCrC nanopowders investigated their microstructural and morphological characteristics following mechanical alloying, illustrating the application of powder-processing methods to advanced materials development. [3]

Publications

Selected publications by Mohsen Mhadhbi include research on TiCrC nanopowders produced by mechanical alloying, spark plasma sintering of TiCrC nanocarbide, and phytosynthesis of zinc oxide nanoparticles. His publication record reflects interdisciplinary work in materials processing, nanomaterials, mechanical alloying, modelling, microstructural characterization, and advanced materials development. [4]

Research Impact

The supplied bibliometric profile records 434 citations and an h-index of 11 across 29 documents. These indicators suggest that the research output has accumulated measurable citation activity within the indexed scholarly literature. The values are presented as profile-level metrics and should be considered time-sensitive because citation databases are continuously updated. [2]

Award Suitability

Based on the supplied profile information and publicly documented research activity, Mohsen Mhadhbi’s research aligns with the broad scope of materials science recognition. His work addresses materials engineering, ceramics, composites, powder technology, nanostructured materials, and advanced material processing, all of which are established areas within contemporary materials research. [3]

Conclusion

Mohsen Mhadhbi’s documented academic profile reflects research activity in materials science with particular emphasis on materials engineering, nanomaterials, ceramics, composites, powder technology, mechanical alloying, and advanced materials characterization.These indicators should be evaluated alongside the complete scholarly record and the formal criteria of the International Material Scientist Awards. [4]

References

  1. Elsevier. (n.d.). Scopus author details: Mohsen Mhadhbi, Author ID 24280679900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=24280679900
  2. ORCID. (n.d.). ORCID record for Mohsen Mhadhbi, ORCID iD 0000-0003-1488-8699. ORCID.
    https://orcid.org/0000-0003-1488-8699
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Mhadhbi, M.Azabou, M. (2008). Characterization of Al and Fe nanosized powders synthesized by high energy mechanical milling. Materials Characterization, 59(7), 944–950.
    https://doi.org/10.1016/j.matchar.2007.08.001

Peter Hess | Nanomaterials | Nanomaterials Achievement

Nanomaterials Achievement

Peter Hess
Affiliation University of Heidelberg
Country Germany
Scopus ID 57204340042
Documents 3
Citations 31
h-index 1
Subject Area Nanomaterials
Event International Material Scientist Awards

Nanomaterials Achievement recognizes the research profile of Peter Hess of the University of Heidelberg, Germany, whose documented scholarly activity is associated with the field of nanomaterials. The profile records three Scopus-indexed documents, 31 citations, and an h-index of 1. These bibliometric indicators provide a concise quantitative context for evaluating the researcher’s scholarly visibility and contribution within the stated subject area. [1]

Abstract

Peter Hess is affiliated with the University of Heidelberg in Germany and is profiled in the research area of nanomaterials. Available bibliometric information identifies three Scopus-indexed documents associated with the researcher, together receiving 31 citations and producing an h-index of 1. The Nanomaterials Achievement recognition places this documented research activity within the context of the International Material Scientist Awards. [1]

Keywords

Nanomaterials, materials science, nanoscience, material characterization, functional materials, material innovation, scientific research, emerging materials, interdisciplinary research, scholarly impact, and scientific advancement represent key concepts associated with nanomaterials research and its broader role in modern materials science and technological development.[2]

Introduction

Nanomaterials research encompasses the investigation, design, characterization, and application of materials whose structural features occur at the nanoscale. The field connects materials science with chemistry, physics, engineering, and related disciplines, providing a foundation for the development and understanding of materials with distinctive structural and functional properties.[1]

Research Profile

Peter Hess is associated with the University of Heidelberg, Germany, and the subject area identified for this recognition is nanomaterials. The available Scopus author record lists three documents, 31 citations, and an h-index of 1. These figures describe the indexed scholarly record available under the specified author profile and should be interpreted in relation to publication history, field-specific citation practices, and database coverage.[3]

Research Contributions

A balanced assessment of research contributions should therefore consider the underlying publications,  and influence within the relevant research community in addition to bibliometric indicators. Such contextual evaluation can complement database-derived measurements when assessing academic recognition.[2]

Publications

The specified Scopus profile records three indexed documents for Peter Hess. Individual publication titles, journal information, publication dates.Where verified publication records become available, each work can be evaluated according to its research question, methodology, findings, journal venue, citation history, and contribution to nanomaterials research.[3]

Research Impact

Citation indicators should be interpreted cautiously because citation practices vary substantially among disciplines, publication types, research communities, and stages of an academic career. Consequently, citation counts and h-index values are best considered alongside the quality, originality, relevance, and broader significance of the underlying research.[1]

Award Suitability

The Nanomaterials Achievement recognition is aligned with the stated subject area of nanomaterials and is presented as part of the International Material Scientist Awards. The documented affiliation, indexed research activity, citation record, and subject-area alignment provide objective profile information that may be considered in an academic recognition process. [2]

Conclusion

Peter Hess, affiliated with the University of Heidelberg in Germany, has a documented research profile in nanomaterials with three Scopus-indexed documents, 31 citations, and an h-index. The Nanomaterials Achievement recognition provides a structured context for presenting this scholarly activity within the International Material Scientist Awards. [3]

References

  1. Elsevier. (n.d.). Scopus author details: Peter Hess, Author ID 57204340042. Scopus.
    https://www.scopus.com/pages/authors/57204340042
  2. Hess, P. (2025). Bonding, structure, and performance of two-dimensional materials.
     https://doi.org/10.1007/978-3-031-74161-6
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com

 

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

 

Jinhang Bai | Electrochemical | Best Researcher Award

Best Researcher Award

Jinhang Bai
Affiliation Xi’an Shiyou University
Country China
Subject Area Electrochemical
Event International Material Scientist Awards
ORCID 0009-0009-9561-6695

Jinhang Bai is a researcher affiliated with Xi’an Shiyou University, China, whose supplied academic profile identifies electrochemical research as the relevant subject area. The researcher is associated with the Best Researcher Award presented within the International Material Scientist Awards framework. The available information identifies an ORCID record  therefore, such bibliometric values are not stated here. [1]

Abstract

Jinhang Bai is associated with Xi’an Shiyou University in China and is identified in the supplied profile with an academic focus in electrochemical research. The researcher is recognized in connection with the Best Researcher Award under the International Material Scientist Awards. [1]

Keywords

Jinhang Bai, Xi’an Shiyou University, China, electrochemical research, electrochemistry, electrochemical materials, materials science, electrode materials, electrochemical interfaces, energy storage, nanomaterials, materials characterization, scientific research, research innovation, Best Researcher Award, International Material Scientist Awards, academic excellence, scholarly research.[2]

Introduction

Electrochemical research examines chemical and electrical phenomena at interfaces and is an important area within contemporary materials science. Research in this field may encompass electrochemical reactions, electrode materials, energy-related systems, corrosion processes, sensors, catalysis, and other applications in which charge transfer and chemical transformations are closely coupled.[1]

Research Profile

The available researcher profile identifies Jinhang Bai with Xi’an Shiyou University, China, and lists electrochemical research as the principal subject area. The profile also supplies the ORCID identifier 0009-0009-9561-6695. ORCID identifiers are designed to provide persistent identification for researchers and to help distinguish individual scholarly records.[3]

Research Contributions

Because individual publications, research projects, experimental results, and quantitative performance indicators were not supplied, specific technical contributions cannot be attributed to Jinhang Bai without additional documentary evidence. This approach maintains a distinction between the research field identified in the profile and specific claims that would require supporting publications.[2]

Publications

The supplied information does not include a verified publication list for Jinhang Bai. Consequently, individual articles, journal titles, publication dates, citation counts, and DOI identifiers are not listed in this section. A publication bibliography should be added only after the relevant scholarly records have been verified through authoritative databases or the researcher’s institutional and persistent-identifier records.[3]

Research Impact

The absence of supplied citation and publication metrics should not be interpreted as evidence of limited research activity. Rather, it indicates that the relevant quantitative data were not included in the source information used to prepare this profile. Persistent researcher identification through ORCID can provide an additional basis for connecting scholarly outputs to the correct researcher. [1]

Award Suitability

The Best Researcher Award is presented in the context of the International Material Scientist Awards. Based on the supplied information, Jinhang Bai’s affiliation with Xi’an Shiyou University and research area in electrochemical science are relevant to a materials-science recognition framework. The award association is therefore presented as a recognition profile rather than as an independently verified ranking of research achievement.[2]

Conclusion

Jinhang Bai is identified as a researcher affiliated with Xi’an Shiyou University, China, with electrochemical research listed as the relevant subject area. The profile is associated with the Best Researcher Award under the International Material Scientist Awards .  Further publication and bibliometric information would be required to provide a comprehensive quantitative assessment of the researcher’s scholarly impact.[3]

References

  1. ORCID. (n.d.). ORCID record: Jinhang Bai, ORCID iD 0009-0009-9561-6695. ORCID.
    https://orcid.org/0009-0009-9561-6695
  2. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  3.  Bai, J. (2026). New electrochemical energy storage electrode materials mechanism, system, key advances and future prospects. Journal of Materials Engineering and Performance.
    https://doi.org/10.1007/s11665-026-14818-7