Ming Zhao | Ceramics | Innovative Research Award

Innovative Research Award

Ming Zhao
Affiliation Inner Mongolia University of Science and Technology
Country China
Scopus ID 55511038600
Documents 94
Citations 1,017
h-index 17
Subject Area Ceramics
Event International Material Scientist Awards
ORCID 0000-0002-8134-5769

Ming Zhao, affiliated with Inner Mongolia University of Science and Technology in China, is presented in this academic recognition profile in connection with the Innovative Research Award at the International Material Scientist Awards. The profile summarizes the supplied bibliometric information and places the reported research record within the broader context of ceramics and materials science. [1]

Abstract

These indicators suggest an established publication and citation record in the context of the researcher’s documented scholarly output. The Innovative Research Award profile considers this record together with the relevance of ceramics research to contemporary materials science and the importance of continued investigation into advanced ceramic materials, processing, structure, and performance.[1]

Keywords

Ming Zhao; Innovative Research Award; ceramics; ceramic materials; materials science; advanced ceramics; ceramic research; materials engineering; Inner Mongolia University of Science and Technology; International Material Scientist Awards; Scopus; research impact.[2]

Introduction

Ceramics constitute an important class of engineering and functional materials because their properties can be tailored through composition, processing conditions, microstructural control, and surface or interface engineering. Research in this field encompasses structural ceramics, functional ceramics, energy-related materials, electronic and dielectric systems, coatings, and other technologically relevant material platforms. [1]

Research Profile

The reported Scopus profile for Ming Zhao contains 94 documents and records 1,017 citations, with an h-index of 17.  Bibliometric indicators such as publication count, citation count, and h-index are commonly used as descriptive measures of scholarly visibility, although they do not independently establish research quality or originality.[4]

Research Contributions

The supplied information identifies ceramics as Ming Zhao’s principal subject area. Ceramic materials research is multidisciplinary and can involve relationships among chemical composition, phase formation, crystal structure, microstructure, processing conditions, mechanical behavior, thermal stability, electrical properties, and other functional characteristics. [5]

Publications

The supplied profile reports 94 documents associated with Ming Zhao’s Scopus author record. Because individual publication titles, journal information, publication years, and identifiers were not supplied with the profile data, specific articles are not individually listed here. This approach avoids attributing publications or identifiers without corresponding source information. [2]

Research Impact

In ceramics and materials science, research impact may also be reflected through methodological advances, improved material performance, reproducibility, technology transfer, industrial relevance, subsequent scholarly use, and contributions to the development of new materials or processing strategies. Such dimensions require evidence beyond aggregate bibliometric counts. [3]

Award Suitability

Award suitability should ultimately be determined through a structured review of the nominee’s original research contributions, publication quality, scientific novelty, relevance to materials science, documented impact, and supporting evidence. Bibliometric indicators can complement such an assessment but should not be treated as the sole basis for an award decision.[4]

Conclusion

Ming Zhao’s supplied academic profile identifies an affiliation with Inner Mongolia University of Science and Technology in China and a research focus in ceramics. The reported Scopus record comprises 94 documents, 1,017 citations, and an h-index of 17. Together with the associated ORCID identifier, these records provide a structured basis for identifying and evaluating the researcher’s scholarly profile. [5]

References

  1. Elsevier. (n.d.). Scopus author details: Ming Zhao, Author ID 55511038600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=55511038600
  2. ORCID. (n.d.). ORCID record: Ming Zhao, ORCID iD 0000-0002-8134-5769. ORCID.
    https://orcid.org/0000-0002-8134-5769
  3. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  4. Jin, X., Liu, Z., Li, Y., Wang, B., Gao, P., Zhao, M., & Yang, F. (2027). Thermodynamic estimation of hydrogen-containing amorphous/nanocrystalline cluster units in Ce₅Mg₈₀Ni₁₅@In composite materials. Fuel, 429, 141034.
    https://doi.org/10.1016/j.fuel.2026.141034
  5. Zhao, D., Du, Zhang, H., Deng, L., Chen, H., Zhao, M., & Li, Y. (2026). Fabrication of high-performance solid waste-based glass-ceramics and Cr₂O₃-mediated synergistic solidification mechanism of multi-heavy metals. Construction and Building Materials, 515, 145672. https://doi.org/10.1016/j.conbuildmat.2026.145672

Aida Ben Jazia Kharrat | Ceramic Materials | Women Researcher Award

Women Researcher Award

           Aida Ben Jazia Kharrat
Affiliation University of Sfax
Country Tunisia
Scopus ID 57194776998
Documents 41
Citations 1,042
h-index 18
Subject Area Ceramic Materials
Event International Material Scientist Awards
ORCID 0000-0002-9401-554X

Aida Ben Jazia Kharrat is a researcher affiliated with the University of Sfax, Tunisia, whose scholarly work focuses primarily on ceramic materials and related areas of materials science. Her research portfolio demonstrates sustained contributions to the development, characterization, and functional evaluation of advanced ceramic materials for scientific and technological applications. With an established publication record indexed in Scopus, her work has received substantial scholarly recognition through citations and research impact metrics.[1]

Abstract

This article presents an overview of the academic profile and research accomplishments of Aida Ben Jazia Kharrat. Her work in ceramic materials encompasses synthesis, processing, microstructural characterization, and performance evaluation of advanced ceramic systems. The publication record, citation performance, and international visibility indicate sustained scholarly activity and meaningful contributions to materials science research. These achievements provide a strong foundation for recognition within international scientific award programs.[1]

Keywords

Keywords: Ceramic Materials, Advanced Ceramics, Materials Science, Structural Ceramics, Functional Ceramics, Nanomaterials, Powder Processing, Sintering, Microstructure, Mechanical Properties, Composite Materials, Materials Characterization, Oxide Ceramics, Thermal Stability, Scientific Research..[3]

Introduction

Ceramic materials play an essential role in modern engineering, electronics, structural applications, energy technologies, and biomedical systems. Continuous advances in ceramic processing and characterization contribute to the development of materials possessing enhanced mechanical, thermal, electrical, and chemical properties. Researchers working in this field support innovation through experimental investigations and interdisciplinary collaboration[1]

Research Profile

Aida Ben Jazia Kharrat has authored 41 indexed publications with more than 1,042 citations and an h-index of 18 according to Scopus metrics. Her investigations emphasize ceramic materials, advanced material processing, and characterization techniques that contribute to improved material performance. The research profile reflects continuous scientific productivity and international scholarly engagement.[4]

Research Contributions

Aida Ben Jazia Kharrat has made significant contributions to ceramic materials research through studies on material synthesis, processing, microstructural characterization, and performance evaluation. Her publications support advances in functional ceramic materials, improve understanding of material properties, and contribute to the broader development of materials science for engineering and industrial applications.[2]

Publications

The researcher’s publication portfolio includes peer-reviewed journal articles focused on ceramic materials, materials engineering, functional materials, and advanced characterization techniques. Publications indexed in international databases demonstrate scientific quality, research continuity, and relevance to contemporary developments in materials science.[3]

Research Impact

The citation performance and h-index indicate that the published work has received notable attention from the international research community. Citation metrics reflect the relevance of the research to ongoing scientific investigations and demonstrate sustained influence within ceramic materials research and related disciplines.[1]

Award Suitability

Based on available publication metrics, research productivity, citation performance, and sustained contributions to ceramic materials research, Aida Ben Jazia Kharrat demonstrates qualifications consistent with the objectives of the International Material Scientist Awards. Her scholarly activities support innovation in materials science and reflect continued engagement with internationally recognized research standards.[4]

Conclusion

Aida Ben Jazia Kharrat has established a distinguished academic profile through research in ceramic materials, supported by a substantial body of scholarly publications, strong citation metrics, and measurable scientific impact. Her work contributes to the advancement of materials science and aligns with international standards of academic excellence, making her profile suitable for professional recognition within global scientific award initiatives.[5]

References

  1. Elsevier. (n.d.).Scopus author details: Aida Ben JaziaKharrat, Author ID 57194776998. Scopus.
    https://www.scopus.com/pages/authors/57194776998
  2. Kharrat, A. B. J. (n.d.). ORCID record. ORCID.
    https://orcid.org/0000-0002-9401-554X
  3. Kharrat, A. B. J. (2026). Defect-engineered electrical transport and dielectric relaxation in Pr0.8Sr0.2−x□xMnO3 perovskite ceramics: Impedance spectroscopy and interfacial polarization. Ceramics International. Advance online publication.
    https://doi.org/10.1016/j.ceramint.2026.04.315
  4. Kharrat, A. B. J. (2026). From crystal chemistry to optical functionality in rare-earth orthochromites: A unified physical framework. 23, Article 138.
    https://doi.org/10.1007/s13738-026-03442-w
  5. International Material Scientist Awards. (n.d.).
    https://materialscientists.com