Research Excellence Award
| Sergey Knyazev | |
|---|---|
| Affiliation | National Technical University “Kharkiv Polytechnic Institute” |
| Country | Ukraine |
| Scopus ID | 57189493933 |
| Documents | 21 |
| Citations | 128 |
| h-index | 7 |
| Subject Area | Materials Science |
| Event | International Academic Excellence Awards |
| ORCID | 0000-0001-6422-3658 |
Sergey Knyazev
National Technical University “Kharkiv Polytechnic Institute”
Sergey Knyazev is affiliated with the National Technical University “Kharkiv Polytechnic Institute” in Ukraine and has established a recognized scholarly profile within the field of Materials Science. His research activities encompass advanced materials, engineering applications, and scientific investigations that contribute to the broader understanding of material behavior and performance. Based on documented scholarly outputs and citation indicators, his academic portfolio demonstrates sustained engagement in scientific research and publication activities.[1]
Abstract
This article presents an academic overview of Sergey Knyazev and evaluates his scholarly profile in relation to the Research Excellence Award. The assessment considers research productivity, citation performance, documented scientific contributions, and engagement within the field of Materials Science. Available bibliometric indicators demonstrate an active publication record and measurable academic influence through peer-reviewed research outputs and scholarly citations.[1]
Keywords
Materials Science, Research Excellence Award, Scientific Publications, Citation Analysis, Engineering Research, Academic Achievement, Scholarly Impact, Research Productivity, Materials Engineering, International Academic Excellence Awards.
Introduction
The Research Excellence Award recognizes individuals who demonstrate meaningful contributions to scientific advancement through research, publication, and scholarly engagement. Evaluation commonly includes publication output, citation impact, research quality, and contribution to disciplinary development. Sergey Knyazev’s academic profile reflects continued participation in materials-related research activities and publication efforts that contribute to contemporary scientific knowledge.[1]
Research Profile
Sergey Knyazev is associated with the National Technical University “Kharkiv Polytechnic Institute,” a recognized institution engaged in engineering and scientific education. His Scopus-indexed record identifies 21 scholarly documents and a cumulative citation count of 128, resulting in an h-index of 7. These metrics indicate sustained research activity and evidence of scholarly recognition within the academic community.[1]
- Institution: National Technical University “Kharkiv Polytechnic Institute”
- Country: Ukraine
- Subject Area: Materials Science
- Scopus Documents: 21
- Citation Count: 128
- h-index: 7
Research Contributions
Research contributions attributed to Sergey Knyazev are associated with the development, characterization, and engineering applications of advanced materials. Such investigations contribute to improving material performance, reliability, and practical implementation in industrial and technological environments. Through publication and dissemination of findings, his work supports ongoing scientific dialogue within the materials science community.[2]
- Materials characterization and analysis.
- Engineering applications of advanced materials.
- Scientific publication and knowledge dissemination.
- Contribution to interdisciplinary materials research.
Publications
The publication portfolio indexed under the author’s Scopus profile demonstrates participation in peer-reviewed scholarly communication. Published works collectively contribute to research visibility and academic engagement within the field of materials science and engineering.[1]
- Peer-reviewed journal publications indexed in Scopus.
- Research papers focused on materials engineering and applications.
- Collaborative scientific studies contributing to international research literature.
Research Impact
Bibliometric indicators provide evidence of scholarly influence through citations and publication performance. With 128 citations and an h-index of 7, the research record demonstrates measurable academic visibility. Citation activity indicates that published findings have been referenced by other researchers, supporting the relevance of the work within scientific literature.[1]
Research impact may also be evaluated through collaborative activity, knowledge transfer, publication quality, and contributions to emerging scientific challenges. These dimensions collectively support an assessment of academic excellence and long-term research value.[3]
Award Suitability
Based on the available scholarly indicators, Sergey Knyazev demonstrates characteristics commonly associated with candidates for research recognition programs. These include documented scientific output, measurable citation impact, participation in peer-reviewed publication, and continued engagement within the field of Materials Science. Such attributes align with the objectives of the International Academic Excellence Awards and support consideration for the Research Excellence Award.[1][4]
Conclusion
Sergey Knyazev’s academic profile reflects a sustained commitment to scientific inquiry within Materials Science. The combination of documented publications, citation performance, and scholarly engagement provides evidence of meaningful research activity. Based on available bibliometric information and research contributions, his profile aligns with recognized standards of academic achievement and supports eligibility for consideration within research excellence recognition frameworks.[1]
External Links
References
- Scopus author details: Sergey Knyazev, Author ID 57189493933. Scopus. https://www.scopus.com/authid/detail.uri?authorId=57189493933
- Development of a Base Material–Barrier Coating System Using Affordable Raw Materials for the Sustainable Production of Critical Railway Components. https://www.mdpi.com/2071-1050/18/9/4512
- Study of the Effects of Hardfacing Modes Carried out by FCAW-S with Exothermic Addition of MnO2-Al on Non-Metallic Inclusions, Grain Size, Microstructure and Mechanical Properties. https://www.mdpi.com/2673-4117/6/6/125
- Light element depth distribution by the intensity ratio of incoherent and coherent scattering. https://analyticalsciencejournals.onlinelibrary.wiley.com/doi/10.1002/xrs.3033
- Study of the effect of ion nitriding regimes on the structure and hardness of steel. https://journals.uran.ua/eejet/article/view/63659