Guoqing Wu | Material Science | Excellence in Research Award

Excellence in Research Award

Guoqing Wu
Researcher Guoqing Wu
Affiliation Yangzhou University
Country China
Scopus ID 55483749200
Documents 31
Citations 447
h-index 10
Subject Area Material Science
Event Global Particle Physics Excellence Awards

The Excellence in Research Award recognizes sustained scholarly achievement, research productivity, and scientific contributions within the field of material science. Guoqing Wu, affiliated with Yangzhou University, has developed an academic profile characterized by peer-reviewed publications, measurable citation impact, and continued engagement in materials-related research. The evaluation presented in this article summarizes publicly available bibliometric indicators together with an overview of research activities and academic contributions.[1]

Abstract

This article summarizes the academic profile of Guoqing Wu using publicly available bibliometric information and scholarly records. The profile indicates continued research activity in material science, supported by peer-reviewed publications, citation performance, and collaboration within the scientific community. Recognition through the Excellence in Research Award reflects scholarly productivity and professional contribution rather than a single publication or project.[1]

Keywords

  • Material Science
  • Research Excellence
  • Scientific Publications
  • Bibliometric Analysis
  • Citation Impact
  • Academic Recognition

Introduction

Academic awards acknowledge researchers whose work demonstrates sustained scientific engagement and measurable scholarly influence. Bibliometric indicators including publication output, citation counts, and h-index are commonly used as complementary measures when evaluating research performance alongside qualitative academic achievements.[2]

Research Profile

Guoqing Wu is affiliated with Yangzhou University in China and conducts research within the field of material science. According to publicly available Scopus records, the researcher has authored 31 indexed publications that have collectively received 447 citations, resulting in an h-index of 10. These indicators reflect continued scholarly activity and participation in peer-reviewed scientific research.[1]

Research Contributions

The available publication record indicates contributions to material science through experimental investigation, scientific collaboration, and dissemination of research findings in scholarly journals. Continued publication activity contributes to knowledge development while supporting collaboration across the broader scientific community.[1]

  • Peer-reviewed scientific publications.
  • Research collaboration within material science.

Publications

The publication portfolio comprises peer-reviewed articles indexed within Scopus. Individual publications contribute collectively to the researcher’s citation profile and academic visibility. Many scholarly publications incorporate Digital Object Identifiers (DOIs), providing persistent identification and long-term accessibility for published research.[3]

Research Impact

Bibliometric indicators demonstrate measurable research influence. With 31 indexed publications, 447 citations, and an h-index of 10, the available metrics suggest continuing scholarly engagement within the discipline. Citation-based indicators should be interpreted alongside peer review, scientific quality, originality, and broader academic contribution.[2]

Award Suitability

Based on publicly available academic information, Guoqing Wu demonstrates characteristics commonly considered during research award evaluations, including sustained publication activity, Final award decisions typically incorporate additional qualitative assessment such as originality, scientific significance, innovation, leadership, and professional service.[2]

Conclusion

The academic record of Guoqing Wu reflects continued engagement in material science research through peer-reviewed publications and measurable citation impact. The profile aligns with the objectives of the Excellence in Research Award by highlighting sustained scholarly activity while emphasizing the importance of balanced quantitative and qualitative evaluation in academic recognition.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Guoqing Wu, Author ID 55483749200. Scopus.
    https://www.scopus.com/pages/authors/55483749200
  2. Morphology and magneto-electronic transport of (MoxBi1−x)2Se3 (x = 0.1): Evidence for topological semimetal behavior. Materials Science and Engineering: B, 325, 119115.
    https://doi.org/10.1016/j.mseb.2025.119115
  3. opological semiconducting behavior in (VxBi1−x)2Se3 (x = 0.1): Atomic-scale structure, morphology and magneto-electronic transport. Solid State Communications, 409, 116301..
    https://doi.org/10.1016/j.ssc.2025.116301

Tae-min Yeo | Glass Science | Best Researcher Award

Dr. Tae-min Yeo | Glass Science | Best Researcher Award

Dr. Tae-min Yeo, Seoul National University, South Korea

Dr. Tae-min Yeo is a postdoctoral researcher at Seoul National University specializing in the structural and dynamic behavior of oxide glass materials. With a Ph.D. in Ferrous and Eco Materials from POSTECH, his research delves into the atomistic nature of glass phenomena such as the Mixed-Alkali Effect, viscoelasticity, and crystallization kinetics. Dr. Yeo has also collaborated internationally as a visiting scholar at the University of California, Davis, further advancing his expertise in glass-forming liquids.

PROFILE

Scopus  Profile

Educational Detail

Ph.D. in Ferrous and Eco Materials
Pohang University of Science and Technology (POSTECH), Pohang, Korea (Sep. 2021 – Aug. 2024)
Thesis: “Unravelling the Atomic Nature of Mixed-Alkali Effect in Supercooled Liquids”
Advisor: Prof. Jung-Wook Cho | Co-advisor: Prof. Sabyasachi Sen

M.S. in Ferrous and Energy Materials
POSTECH, Pohang, Korea (Sep. 2019 – Feb. 2021)
Thesis: “Effects of Li₂O on the Crystallization of Fluorosilicate Glass and Molecular Dynamics Simulation Analysis”
Advisor: Prof. Jung-Wook Cho

B.S. in Material Science and Engineering
POSTECH, Pohang, Korea (Feb. 2013 – Feb. 2018)
Graduated Cum Laude

Professional Experience

Postdoctoral Researcher
Seoul National University, Seoul, Korea (Sep. 2024 – Present)
Conducting solid-state NMR studies on sodium aluminoborosilicate glasses with varying phosphorus content under the guidance of Prof. Sung Keun Lee.

Visiting Scholar
University of California, Davis, United States (Jan. 2022 – Jun. 2022)
Investigated the rheology of mixed alkali metaphosphate glass-forming liquids under Prof. Sabyasachi Sen.

Research Interests

Structure-property relationships in oxide glass materials, focusing on short- and medium-range structures.

Atomistic mechanisms of the Mixed-Alkali Effect (MAE) in oxide glasses.

Viscoelastic behavior and fragility analysis of glass-forming liquids.

Crystallization kinetics in silicate-based slags and glasses.

Molecular Dynamics (MD) simulations of molten slags and glass systems.

Top Notable Publications

Yeo, T.-M., Cho, J.-W., Sen, S. (2024). Deciphering the Mixed-Alkali Effect in Supercooled Oxide Liquids: Results from Dynamic and Thermodynamic Measurements. Acta Materialia, 269, 119798. 2 Citations

Liang, Y., Shi, C., Yeo, T.-M., Cho, J.-W., Li, J. (2024). Crystallization Behavior, Viscosity and Structure of CaO–SiO₂–MgO–(15~30 Mass Pct) Al₂O₃ Melts Representing the Oxide Inclusions in Si-Killed Steel. Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, 55(4), 2289–2302. 1 Citation

Chuang, S.-Y., Yeo, T.-M., Swanson, R.K., McCormack, S.J., Sen, S. (2025). Trends in Calorimetric Fragility of Normal and Invert Borate Glasses. Journal of Non-Crystalline Solids, 650, 123361. 0 Citations

Swanson, R.K., Stebbins, J.F., Yeo, T.-M., McCormack, S.J., Sen, S. (2023). Structure and Fragility of Normal and Invert Lanthanum Borate Glasses: Results from 11B and 17O NMR Spectroscopy and Calorimetry. Journal of Non-Crystalline Solids, 603, 122119. 6 Citations

Yeo, T.-M., Yuan, B., Lovi, J., Cho, J.-W., Sen, S. (2023). Resolving the Mixed-Alkali Effect on the Viscoelastic Behavior of Supercooled Liquids. Acta Materialia, 242, 118447. 4 Citations

Kim, B., Kang, J., Shin, Y., Yeo, T.-M., Um, W. (2023). Effect of Si/Al Molar Ratio and Curing Temperatures on the Immobilization of Radioactive Borate Waste in Metakaolin-Based Geopolymer Waste Form. Journal of Hazardous Materials, 458, 131884. 17 Citations

Kim, B., Kang, J., Shin, Y., Yeo, T.-M., Um, W. (2022). Immobilization Mechanism of Radioactive Borate Waste in Phosphate-Based Geopolymer Waste Forms. Cement and Concrete Research, 161, 106959. 14 Citations

Yeo, T.-M., Cho, J.-W., Hung, I., Gan, Z., Sen, S. (2022). Structure and Crystallization Behavior of Complex Mold Flux Glasses in the System CaO-Na₂O-Li₂O-CaF₂-B₂O₃-SiO₂: A Multi-Nuclear NMR Spectroscopic Study. Journal of the American Ceramic Society, 105(10), 6140–6148. 1 Citation

Hyun, S.-H., Yeo, T.-M., Ha, H.-M., Cho, J.-W. (2022). Structural Evidence of Mixed Alkali Effect for Aluminoborosilicate Glasses. Journal of Molecular Liquids, 347, 118319. 11 Citations

Yeo, T.-M., Jeon, J.-M., Hyun, S.-H., Ha, H.-M., Cho, J.-W. (2022). Effects of Li₂O on Structure of CaO-SiO₂-CaF₂-Na₂O Glasses and Origin of Crystallization Delay. Journal of Molecular Liquids, 347, 117997. 11 Citations

Conclusion

Dr. Tae-min Yeo’s exceptional academic record, impactful research experience, innovative focus areas, and proven ability to secure competitive grants make him a prime candidate for the Research for Best Researcher Award. His work contributes significantly to the advancement of glass science and materials engineering, aligning with the award’s mission to recognize transformative researchers.