Best Researcher Award
Young Yoon
Kwangwoon University, South Korea
| Young Yoon | |
|---|---|
| Affiliation | Kwangwoon University |
| Country | South Korea |
| Scopus ID | 55696143900 |
| Documents | 58 |
| Citations | 1,244 |
| h-index | 20 |
| Subject Area | Semiconductor Interconnects |
| Event | Global Mechanics Awards |
Young Yoon is a researcher affiliated with Kwangwoon University in South Korea whose listed subject area is electrochemistry. His Scopus author profile provides a bibliographic record associated with 58 documents, 1,244 citations and an h-index of 20, according to the supplied profile information. This article presents an overview of the available research-profile details and their relevance to consideration for the Best Researcher Award at the Global Mechanics Awards. The figures and affiliation should be checked against the current author profile before publication. [1]
Abstract
This article outlines the available academic profile of Young Yoon, affiliated with Kwangwoon University, South Korea, with electrochemistry identified as his subject area. The supplied Scopus profile information lists 58 documents, 1,244 citations and an h-index of 20. These bibliometric indicators provide a quantitative snapshot of the research record, but do not independently establish the originality, significance or practical impact of individual contributions. A full assessment of the researcher’s work would require examination of relevant publications, methods, findings and independent evidence of research influence. [1]
Keywords
Young Yoon; Kwangwoon University; South Korea; electrochemistry; electrochemical research; scientific publications; bibliometrics; research profile; citation analysis; Best Researcher Award; Global Mechanics Awards.
Introduction
Electrochemistry is the study of chemical processes involving the transfer of electrons and the relationship between chemical reactions and electrical energy. It has applications in areas such as energy storage, corrosion science, electrochemical sensing and materials development. Research in this field can involve experimental investigation, theoretical analysis and the development of technologies for specific applications.
Young Yoon’s supplied profile identifies electrochemistry as his subject area and Kwangwoon University as his institutional affiliation. The available bibliometric information offers a starting point for exploring his scholarly record. However, specific research themes, experimental methods, publication titles and research outcomes cannot be established from the profile statistics alone. [1]
Research Profile
The supplied profile information identifies Young Yoon as a researcher associated with Kwangwoon University in South Korea. His stated subject area is electrochemistry. The Scopus author identifier provided for the profile is 55696143900, which can be used to locate the associated bibliographic record. [1]
The listed bibliometric figures are 58 documents, 1,244 citations and an h-index of 20. These are profile-level values supplied for this article and may change as records are added, corrected or updated. Author-profile attribution and citation counts can also be affected by differences in indexing and author disambiguation. The figures should therefore be understood as a dated snapshot rather than permanent measures of scholarly activity.
Research Contributions
A detailed account of Young Yoon’s individual research contributions requires verified publication records and examination of the studies themselves. The information provided for this page establishes an association with electrochemistry but does not specify particular discoveries, research projects, experimental results or technological applications. No specific scientific achievement is attributed here without supporting publication evidence.
An evidence-based assessment of contributions in electrochemistry may consider several aspects of the research record:
- The originality and rigor of published research questions, experimental methods and analytical approaches.
- The reliability and reproducibility of reported findings, including the availability of supporting data where applicable.
- The relevance of research findings to established challenges and emerging applications in electrochemistry.
- The extent and nature of collaboration, including documented contributions to multi-author studies.
- Evidence of scholarly influence, interpreted alongside the research field, publication dates and citation context.
Publications
The supplied Scopus profile information reports 58 documents associated with the researcher. The individual publication titles, author lists, journal details and publication years have not been provided for this article. Readers can consult the linked Scopus author profile to inspect the indexed documents and verify bibliographic information. [1]
A publication review should distinguish original research articles from reviews, conference papers and other indexed document types. It should also verify author attribution and the publication record before drawing conclusions about research productivity or the specific nature of a researcher’s contributions. No individual DOI is included here because no publication-level DOI information was supplied or independently verified.
Research Impact
The supplied profile lists 1,244 citations and an h-index of 20. Citation counts represent recorded references to publications in a particular bibliographic database, while the h-index is a measure based on the number of publications that have each received at least a corresponding number of citations. These metrics can help describe aspects of scholarly visibility, but do not directly measure the quality or societal value of research. [1]
A more comprehensive evaluation of research impact would examine the influence of specific studies, their use by other researchers, independent replication, contributions to methods or technologies and evidence of application outside academia. Citation patterns should be interpreted in relation to field-specific practices, the age of the publications and the coverage of the database used.
Award Suitability
Young Yoon’s supplied research profile provides information relevant to an initial review for the Best Researcher Award associated with the Global Mechanics Awards. The stated electrochemistry subject area, institutional affiliation and reported bibliometric indicators can help identify the profile for further consideration. These details alone do not establish award eligibility or demonstrate that the research meets any particular judging criteria.
A complete award assessment should be based on the official eligibility requirements and evaluation process, together with verified evidence of research contributions and supporting documentation. Relevant materials may include a current curriculum vitae, selected publications, publication-level identifiers, a research summary and evidence of documented impact. The event’s official website provides the appropriate point of reference for current award information and submission requirements. Global Mechanics Awards
Conclusion
The available information identifies Young Yoon as a researcher affiliated with Kwangwoon University in South Korea, with electrochemistry listed as his subject area. The supplied Scopus figures indicate 58 documents, 1,244 citations and an h-index of 20. These details provide a concise overview of the profile but do not replace a review of individual publications, research methods and documented scientific contributions. Any award-related assessment should rely on verified records and the official criteria of the Global Mechanics Awards.
External Links
References
- Elsevier. (n.d.). Scopus author details: Young Yoon, Author ID 55696143900. Scopus. Profile and bibliometric figures supplied for this article; current database values and record attribution should be independently verified.
https://www.scopus.com/authid/detail.uri?authorId=55696143900 - Global Mechanics Awards. (n.d.). Official website. Event information and award-related details should be checked against the current official source.
https://globalmechanicsawards.com/