Xinwei Li | Electrocatalysis | Innovative Research Award

Innovative Research Award

Xinwei Li
National Center for Nanoscience and Technology, China.

Xinwei Li
Affiliation National Center for Nanoscience and Technology
Country China
Documents 15
Subject Area Electrocatalysis
Event Engineering Scientist Awards
ORCID 0009-0000-8724-8460

Xinwei Li is a researcher affiliated with the National Center for Nanoscience and Technology in China whose stated research subject area is electrocatalysis. The researcher profile supplied for this recognition page records 15 documents. Electrocatalysis is an interdisciplinary field concerned with catalytic processes at electrode interfaces and plays an important role in electrochemical energy conversion, chemical synthesis, and related nanoscience research. [1] This article presents a structured academic recognition profile in connection with the Innovative Research Award under the Engineering Scientist Awards event.

Abstract

The Innovative Research Award profile recognizes Xinwei Li of the National Center for Nanoscience and Technology, China, for research activity within the field of electrocatalysis. The supplied profile identifies 15 research documents and associates the researcher with a field that integrates electrochemistry, catalysis, materials science, surface science, and nanotechnology. Electrocatalytic research commonly addresses the design of active materials, control of electrode interfaces, reaction kinetics, selectivity, stability, and the development of efficient electrochemical systems. [1] The recognition presented here is based on the researcher information supplied for the award profile and does not independently infer additional bibliometric indicators beyond the stated document count.

Keywords

  • Electrocatalysis
  • Nanoscience
  • Electrochemical Catalysis
  • Catalytic Materials
  • Electrochemical Energy Conversion
  • Surface Chemistry
  • Materials Science

Introduction

Electrocatalysis refers to catalytic processes associated with electrochemical reactions and electrode interfaces. It is particularly relevant to technologies in which electrical energy is converted into chemical energy or chemical reactions are coupled to electricity. Research in this area includes catalyst composition and structure, reaction pathways, charge-transfer processes, electrode architecture, and the relationship between material properties and catalytic performance. [2] [3]

Research Profile

The supplied profile places Xinwei Li at the intersection of nanoscience and electrocatalysis. The recorded total of 15 documents provides a basic measure of documented research output for this profile. Bibliometric interpretation should nevertheless consider additional indicators, including citation counts, authorship patterns, journal quality, field normalization, publication chronology, and research collaboration, rather than treating document count as a standalone measure of scientific influence. [4]

Research Contributions

Research contributions in electrocatalysis can be evaluated through several complementary dimensions. These include the development of catalytic materials, improvement of reaction efficiency, investigation of catalyst–electrolyte and catalyst–electrode interfaces, mechanistic understanding of electrochemical reactions, and the translation of material-level findings into practical electrochemical systems. [2]

  • Development and investigation of functional materials relevant to electrochemical catalysis.
  • Study of structure–activity relationships that connect material characteristics with catalytic behavior.

Publications

The supplied profile records 15 documents for Xinwei Li. Because individual publication titles, journal information, publication dates, author lists, and DOI identifiers were not provided as part of the source profile, this page does not assign specific articles to the researcher without verification. A complete publication assessment should be based on an authoritative researcher identifier or bibliographic database record. Scopus provides author profiles and publication-level bibliographic information for this purpose. [5]

Research Impact

Research impact in electrocatalysis can extend from fundamental understanding of catalytic reaction mechanisms to applications in electrochemical energy conversion and sustainable chemical production. The significance of an individual research contribution is best assessed using multiple forms of evidence, including peer-reviewed publications, citations, collaboration, methodological innovation, reproducibility, technological relevance, and uptake by the wider scientific community. [4]

Award Suitability

Xinwei Li’s supplied research profile is aligned with the thematic scope of an Innovative Research Award because the identified subject area, electrocatalysis, is an active interdisciplinary research domain connecting materials science, electrochemistry, catalysis, and nanotechnology. The affiliation with the National Center for Nanoscience and Technology further places the profile within an institutional environment focused on nanoscale scientific research.

Conclusion

Xinwei Li is presented in the supplied profile as a researcher at the National Center for Nanoscience and Technology, China, working in electrocatalysis and associated with 15 research documents. The research area is scientifically significant because electrocatalysis provides a foundation for understanding and improving electrochemical reactions, while nanoscience offers tools for engineering materials and interfaces at relevant length scales. [1]

References

  1. International Union of Pure and Applied Chemistry. Electrocatalysis and electrochemical terminology resources. Compendium of Chemical Terminology.
    https://goldbook.iupac.org/
  2. Trasatti, S. (1972). Electrocatalysis in the anodic evolution of oxygen and chlorine. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry, 39(1), 163–184.
    https://doi.org/10.1016/S0022-0728(72)80485-6
  3. Chen, A., & Holt-Hindle, P. (2010). Platinum-based nanostructured materials: synthesis, properties, and applications in electrochemical catalysis. Chemical Reviews, 110(6), 3767–3804.
    https://doi.org/10.1021/cr9003893
  4. Hicks, D., Wouters, P., Waltman, L., de Rijcke, S., & Rafols, I. (2015). Bibliometrics: The Leiden Manifesto for research metrics. Nature, 520, 429–431.
    https://doi.org/10.1038/520429a
  5. Elsevier. (n.d.).  Abstract and citation database.

Innovative Research Award

Xinwei Li
National Center for Nanoscience and Technology, China

Researcher Profile
Researcher Xinwei Li
Affiliation National Center for Nanoscience and Technology
Country China
Documents 15
Subject Area Electrocatalysis
Event Engineering Scientist Awards
ORCID 0009-0000-8724-8460

Xinwei Li is a researcher affiliated with the National Center for Nanoscience and Technology in China whose academic profile is associated with the field of electrocatalysis. The researcher has 15 documented research publications according to the information supplied for this recognition profile. Electrocatalysis encompasses the study and development of catalytic processes at electrochemical interfaces and is relevant to areas including energy conversion, electrochemical synthesis, fuel cells, water splitting, and related technologies. The Innovative Research Award presented through the Engineering Scientist Awards provides a framework for recognizing research contributions and innovation within engineering and related scientific disciplines.

Abstract

This academic recognition profile presents Xinwei Li, affiliated with the National Center for Nanoscience and Technology, China, in connection with the Innovative Research Award of the Engineering Scientist Awards. The stated research subject is electrocatalysis, a multidisciplinary area connecting electrochemistry, catalysis, materials science, and energy-related engineering. The supplied profile records 15 research documents and identifies an ORCID researcher identifier for scholarly disambiguation. [1] The profile is intended to provide a structured overview of the researcher’s field, publication activity, potential research contributions, and suitability for recognition based on the information available.

Keywords

Xinwei Li; electrocatalysis; electrochemical catalysis; nanoscience; catalysis; materials science; electrochemical energy conversion; energy materials; National Center for Nanoscience and Technology; Innovative Research Award; Engineering Scientist Awards.

Introduction

Electrocatalysis is an important research area in modern electrochemical science because catalytic materials can influence reaction pathways, activity, selectivity, and energy requirements at electrode–electrolyte interfaces. Research in this field is closely connected with the development of technologies for sustainable chemical production and energy conversion. [2]

The present article therefore considers Xinwei Li’s supplied publication count and stated research field as the principal basis for this academic recognition profile. It does not infer unprovided citation or h-index values and does not attribute specific publications or discoveries without supporting bibliographic information.

Research Profile

Xinwei Li is identified with the research area of electrocatalysis and is affiliated with the National Center for Nanoscience and Technology in China. The supplied profile contains 15 research documents. An ORCID identifier, 0009-0000-8724-8460, is provided as an external scholarly identifier that can assist with distinguishing the researcher’s works from those of other researchers with similar names.

The available information does not provide a Scopus Author ID, total citation count, or h-index. These fields are consequently recorded as unavailable rather than estimated. Such bibliometric indicators should be verified against an authoritative researcher database before being used for quantitative assessment.

Research Contributions

Research in electrocatalysis commonly addresses the relationship between material properties and electrochemical reaction performance. Contributions may involve the preparation of catalytic materials, nanoscale structural engineering, investigation of active sites, electrochemical testing, reaction-mechanism analysis, and the optimization of catalyst performance. [2]

  • Development and investigation of catalytic materials for electrochemical reactions.
  • Application of nanoscale concepts to the understanding or improvement of electrocatalytic interfaces.
  • Study of structure–property relationships relevant to catalytic activity and electrochemical performance.

Publications

The supplied research profile reports 15 documents associated with Xinwei Li. Because individual publication titles, journals, publication dates, authorship records, and DOI identifiers were not supplied, a publication-by-publication bibliography is not included here. A complete scholarly publication list should be constructed from a verified bibliographic database or the researcher’s authoritative profile.

Research Impact

Research impact in electrocatalysis can be evaluated through multiple complementary dimensions, including peer-reviewed publication output, citations, methodological contributions, reproducibility, technological relevance, collaboration, and influence on subsequent research. Bibliometric indicators such as citations and h-index can provide quantitative evidence, but they should be interpreted in conjunction with publication quality and research context.

For Xinwei Li, the available profile establishes a documented output of 15 research documents in the stated field of electrocatalysis. The absence of supplied citation and h-index information means that a quantitative impact assessment cannot responsibly be calculated from the available data. Verification of these metrics through a current scholarly database would provide a stronger basis for evaluating research influence. [1]

Award Suitability

Based on the information supplied, Xinwei Li’s research area of electrocatalysis is relevant to an Innovative Research Award because the field involves the development and understanding of catalytic systems that can support advances in electrochemical science, materials engineering, and energy-related technologies. The affiliation with the National Center for Nanoscience and Technology further places the research within an interdisciplinary scientific environment.

The available record of 15 research documents provides evidence of sustained publication activity. However, award evaluation should additionally consider the originality of the research, methodological rigor, significance of findings, peer-reviewed publication quality, research collaboration, citation performance, and demonstrated scientific or technological outcomes. These criteria allow recognition decisions to remain evidence-based rather than relying solely on publication count..

Conclusion

Xinwei Li, affiliated with the National Center for Nanoscience and Technology in China, is presented in this profile as a researcher working in electrocatalysis, with 15 reported research documents. The field is scientifically relevant to electrochemical catalysis, advanced materials, energy conversion, and related areas. The supplied ORCID identifier provides an additional mechanism for scholarly identity verification.

The available information supports consideration of the researcher for an Innovative Research Award, while detailed bibliometric and publication-level assessment requires additional verified data. In particular, the Scopus Author ID, citation count, h-index, and individual DOI records were not supplied and should not be inferred. This distinction is important for maintaining an objective and transparent academic recognition profile.

References

  1. ORCID. (n.d.). ORCID record for Xinwei Li, ORCID 0009-0000-8724-8460.
    https://orcid.org/0009-0000-8724-8460
  2. International Union of Pure and Applied Chemistry.(n.d.).Electrocatalysis and electrochemical catalysis terminology. IUPAC.
    https://goldbook.iupac.org/
  3. National Center for Nanoscience and Technology. (n.d.). Institutional research information.
    https://english.nanoctr.cn/
  4. Engineering Scientist Awards. (n.d.). Engineering Scientist Awards official website.
    https://engineeringscientist.com/