Yura Choi | Chemistry and Materials Science | Innovative Research Award

Innovative Research Award

Yura Choi
Soonchunhyang University, South Korea

Yura Choi
Affiliation Soonchunhyang University
Country South Korea
Scopus ID 57220855960
Documents 10
Citations 50
h-index 4
Subject Area Chemistry and Materials Science
Event International Forensic Scientist Awards
Google Scholar ID 1AgSdeEAAAAJ

Yura Choi is a researcher affiliated with Soonchunhyang University whose scholarly work focuses on chemistry and materials science, particularly advanced polymeric materials, photocurable resins, additive manufacturing, and functional nanomaterials. Through interdisciplinary collaborations, the researcher has contributed to investigations involving stereolithography, perovskite stabilization, biomaterials, and energy-related polymer systems. Publications indexed in Scopus demonstrate a growing research profile characterized by methodological development and practical applications in biomedical engineering and advanced manufacturing.[1]

Abstract

Yura Choi has established an emerging research profile centered on polymer chemistry, photocurable materials, and advanced manufacturing technologies. Published studies address the design of stereolithography resins, enhancement of mechanical properties for biomedical applications, stabilization of perovskite materials, and optimization of polymer systems for energy conversion. These investigations demonstrate integration of material synthesis with engineering applications while contributing to knowledge supporting sustainable and functional material development.[2]

Keywords

Polymer Chemistry, Materials Science, 3D Printing, Stereolithography, Photocurable Resin, Biomaterials, Nanomaterials, Perovskites, Solar Cells, Advanced Manufacturing.

Introduction

Modern materials research increasingly combines chemistry, engineering, and manufacturing technologies to create functional solutions for healthcare and industrial applications. Yura Choi’s publications reflect this multidisciplinary direction through studies emphasizing polymer formulation, mechanical performance, and scalable fabrication techniques. Collaborative research has contributed to improved understanding of photocurable materials and additive manufacturing systems while supporting innovation in biomedical and energy-related technologies.[3]

Research Profile

The research portfolio includes ten Scopus-indexed publications with fifty citations and an h-index of four. Principal research interests include polymer synthesis, photocurable materials, stereolithography, nanocomposites, biomaterials, and functional coatings. Published work demonstrates consistent participation in multidisciplinary collaborations involving chemistry, materials engineering, and biomedical device development.[1]

Research Contributions

  • Developed bisphenol-A-glycidyl-methacrylate and trimethylolpropane-triacrylate based stereolithography materials.
  • Investigated phase-transition strategies for improving lead halide perovskite stability.
  • Enhanced photocurable 3D printing materials using potassium titanate additives for craniofacial applications.
  • Contributed to polymer-based solar cell material development.
  • Studied swelling behavior of advanced acrylate-based photoresist polymers.

Publications

  • Polymers (2022): Development of stereolithography 3D printing materials.
  • Nanomaterials (2022): Stability improvement of ball-milled lead halide perovskites.
  • Biomimetics (2024): Mechanical strengthening of photocurable 3D printing materials.
  • Polymers (2021): Benzotriazole-based materials for inverted solar cells.
  • Materials (2024): Swelling behavior of acrylate-based photoresist polymers.

Research Impact

Research outputs demonstrate measurable academic visibility through peer-reviewed publications, citation performance, and interdisciplinary collaborations. The work supports technological progress in additive manufacturing, functional polymers, biomedical materials, and renewable energy applications. These contributions provide useful scientific evidence for future material optimization and practical engineering implementations.[4]

Award Suitability

Based on the available scholarly record, Yura Choi demonstrates research activity consistent with the objectives of the Innovative Research Award. Contributions to advanced polymer systems, photocurable materials, biomedical engineering applications, and materials innovation illustrate sustained scientific engagement and collaborative research productivity within chemistry and materials science.[5]

Conclusion

Yura Choi’s academic profile reflects continued contributions to materials science through research on polymers, additive manufacturing, nanomaterials, and biomedical applications. The documented publication record and collaborative research activities indicate an evolving scholarly career that contributes to both scientific understanding and practical technological advancement within modern materials research.

References

  1. Elsevier. (n.d.). Scopus author details: Yura Choi, Author ID 57220855960. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57220855960
  2. Choi, Y., et al. (2022). Development of bisphenol-A-glycidyl-methacrylate-and trimethylolpropane-triacrylate-based stereolithography 3D printing materials. Polymers.
    https://doi.org/10.3390/polym14235198
  3. Kim, J., et al. (2022). Improving the stability of ball-milled lead halide perovskites. Nanomaterials.
    https://doi.org/10.3390/nano12060920
  4. Choi, Y., et al. (2024). Enhancing the mechanical strength of a photocurable 3D printing material. Biomimetics.
    https://doi.org/10.3390/biomimetics9110698
  5. Lee, C.J., et al. (2024). Swelling Behavior of Acrylate-Based Photoresist Polymers Containing Cycloaliphatic Groups of Various Sizes. Materials.
    https://doi.org/10.3390/ma17225465

Xingmei Guo | Chemistry and Materials Science | Research Excellence Award

Prof. Xingmei Guo | Chemistry and Materials Science | Research Excellence Award

Jiangsu University of Science and Technology | China

Prof. Xingmei Guo is an accomplished researcher in materials chemistry with expertise in electrochemical energy conversion, catalysis, and advanced functional materials. She has published 102 Scopus-indexed research articles, contributing significantly to the development of innovative energy materials. Her work has garnered 3,115 citations with an h-index of 32, reflecting strong academic impact. Her research includes multiple completed and ongoing projects, along with 10 patents demonstrating innovation in electrochemical technologies. She actively engages in collaborative research and serves on an editorial board, supporting scientific dissemination. Her contributions advance sustainable energy solutions through novel material design, electrochemical performance optimization, and applied research outcomes.

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Featured Publications

Olukorede Adewole | Management | Best Researcher Award

Dr. Olukorede Adewole | Management | Best Researcher Award

Literary Edifice | Italy

Olukorede Olumayowa Adewole is a multidisciplinary researcher with expertise in Physics, Chemical Engineering, Marketing, and Finance. Holding dual doctorates (Chemical Engineering, AIU; Marketing, Ligs University), he is currently pursuing a PhD in Finance Management at Walden University. His research spans numerical modeling, stochastic processes, consumer behavior, and climate change, with a passion for teaching and literary projects.

Professional profile👤

ORCID

Strengths for the Awards✨

  1. Multidisciplinary Expertise:

    • Holds doctoral degrees in Chemical Engineering (AIU) and Marketing (Ligs University), with ongoing PhD work in Finance Management (Walden University) and Economics (Institute de’ Avrio).

    • Demonstrates exceptional versatility across physics, engineering, economics, marketing, and finance, aligning with modern interdisciplinary research trends.

  2. Extensive Publication Record:

    • 20+ peer-reviewed publications in diverse fields (e.g., stochastic modeling, environmental science, optics, finance, and numerical methods).

    • Publications in journals like Research Journal of Applied SciencesNew York Science Journal, and International Journal of Computer Science.

    • Authored books on numerical simulations and stochastic modeling (e.g., Presentation of Predicted Results based on Numerical Simulation, LAP Publishing).

  3. Active Research Contributions:

    • Current work on Kuramoto models (synchronized oscillations), change-point analysis, and stochastic methods in finance/climate modeling.

    • Proposed applications of advection-dispersion equations to earth systems modeling, demonstrating innovation in translating methods across domains.

  4. Teaching and Leadership:

    • Taught physics at university levels and developed curricula (e.g., Quantum Mechanics, Numerical Methods).

    • Initiated a Radiation Protection Committee at University College Hospital, showcasing applied research impact.

  5. Conference Participation:

    • Presented at international conferences (e.g., Oslo, Milan, Berlin) on topics like Feynman-Kac formulations and Monte Carlo methods, indicating global engagement.

  6. Technical Proficiency:

    • Skilled in numerical methods (finite difference, Monte Carlo), programming (MATLAB, R, C++), and modeling (Navier-Stokes, stochastic processes).

Education 🎓

  • PhD Marketing (Consumer Behavior), Ligs University, Hawaii (2020)

  • PhD Chemical Engineering, Atlantic International University, USA (2018)

  • MSc Physics, University of Ibadan, Nigeria (2002)

  • BSc Physics, University of Ibadan (1999)

  • Ongoing: PhD Finance Management, Walden University (2022–present)

Experience 💼

  • Lecturer: Taught Physics at Ajayi Crowther University (2012–2015) and The Polytechnic, Ibadan (2003–2015).

  • Research Scientist: Gamma Electronics (acoustics design, 2000–2016).

  • Radiation Protection Lead: University College Hospital, Ibadan (2003–2007).

  • Founder: Global Literary Giants (literary research initiative, 2015–present).

Research Interests On Management 🔍

  • Numerical Modeling: Advection-dispersion equations, Kuramoto model, change point analysis.

  • Stochastic Processes: Asset pricing, Monte Carlo methods.

  • Consumer Behavior: Italian fashion industry, sustainability.

  • Climate Change: Earth systems modeling, Navier-Stokes applications.

Awards & Nominations 🏆

  • Conference Presentations: Graphene Technology Congress (2019–2020), Advanced Materials Congress (Oslo, 2018).

  • Research Grants: Self-funded literary and numerical modeling projects.

Publications 📜

1. Translating Brand Reputation into Equity from the Stakeholder’s Theory: An Approach to Value Creation Based on Consumer’s Perception & Interactions

  • Published: January 26, 2024

  • Journal: International Journal of Corporate Social Responsibility, Vol. 9, Article 1

  • DOI: 10.1186/s40991-023-00085-5

2. Leveraging CSR as a Tool of Brand Communication Based on Consumer’s Perception with Extrapolation from a Novel 3-Factor Model

  • Published: September 21, 2024

  • Journal: International Journal of Corporate Social Responsibility, Vol. 9, Article 16

  • DOI: 10.1186/s40991-024-00101-2

3. The Need for Social Equality from Emerging Patterns in Business and Costs Towards Environmental Sustainability in a New Paradigm Shift

4. CSR–Brand Relationship, Brand Positioning, and Investment Risks Driven Towards Climate Change Mitigation and Next Perspectives Emerging from: “Litigation, Projections, Pathway, and Models”

5. Corporate Social Responsibility Decision Making and Choices by Manager: The Influence of the Nudge, Persuasiveness, and the Cognitive Behaviour Around Economic Interest of Stakeholder’s Investors!

Conclusion 🌟

Dr. Adewole is a versatile scholar bridging physics, engineering, and social sciences. His work on numerical methods, consumer behavior, and sustainability reflects a commitment to interdisciplinary innovation. He seeks to advance earth systems modeling and financial stochastic processes, aiming to contribute to academic and societal progress.