Aziz Fihri | Materials Science | Research and Development Center at Saudi Aramco

Innovative Research Award

                    Aziz Fihri
Affiliation Research and Development Center at Saudi Aramco
Country Saudi Arabia
Scopus ID 8656073800
Documents 47
Citations 6,554
h-index 31
Subject Area Materials Science
Event International Material Scientist Awards

The Innovative Research Award article presents an academic overview of the research profile of Aziz Fihri, a researcher affiliated with the Research and Development Center at Saudi Aramco, Saudi Arabia. His scholarly activities primarily focus on materials science, nanomaterials, catalysis, porous materials, and sustainable chemical technologies. The available bibliometric indicators demonstrate a substantial publication record and a significant level of scientific influence within the international research community.[1]

Abstract

Aziz Fihri has established a multidisciplinary research portfolio centered on advanced materials, heterogeneous catalysis, porous frameworks, nanotechnology, and sustainable chemical processes. His published work demonstrates consistent engagement with both fundamental materials research and industrially relevant innovations. Bibliometric indicators including publication count, citation impact, and h-index suggest sustained scientific influence across multiple domains of materials science and chemistry.[1]

Keywords

Materials Science, Nanomaterials, Catalysis, Metal–Organic Frameworks, Porous Materials, Sustainable Chemistry, and Advanced Functional Materials collectively represent the primary research domains associated with this work. These fields encompass the development, characterization, and application of advanced materials for catalysis, energy technologies, environmental sustainability, and innovative industrial solutions within multidisciplinary materials science research.[2]

Introduction

Materials science continues to play a central role in addressing global technological challenges related to energy, environmental sustainability, industrial manufacturing, and advanced functional systems. Researchers working in this discipline contribute through the design, synthesis, characterization, and optimization of novel materials with enhanced performance. Aziz Fihri’s research reflects these objectives through investigations that bridge chemistry, nanotechnology, and engineering applications.[1]

Research Profile

The available bibliometric information indicates that Aziz Fihri has authored 47 indexed publications which have collectively received over 6,500 citations, resulting in an h-index of 31. These metrics indicate broad scholarly recognition and sustained citation activity across multiple publications. His affiliation with Saudi Aramco’s Research and Development Center also reflects participation in industrially relevant scientific research.[4]

Research Contributions

The research contributions encompass the development of advanced porous and nanostructured materials, heterogeneous catalysis, sustainable chemical technologies, and multidisciplinary materials engineering. These efforts support innovations in functional materials for industrial, environmental, and energy-related applications while advancing scientific understanding through interdisciplinary research, experimental investigation, and practical technological development..[2]

Publications

The research publications attributed to Aziz Fihri span peer-reviewed journals covering materials chemistry, nanotechnology, catalysis, porous materials, and applied chemical engineering. Several publications report investigations of functional materials exhibiting catalytic, adsorption, and structural properties relevant to industrial and environmental applications.[3]

Research Impact

With more than 6,500 citations and an h-index of 31, Aziz Fihri’s published work demonstrates measurable scholarly visibility. Citation-based indicators suggest that numerous publications have influenced subsequent research within materials science, catalysis, and related interdisciplinary fields. Such bibliometric evidence is frequently considered alongside qualitative assessments during academic recognition processes.[1]

Award Suitability

Based on the available publication metrics, research focus, and documented scientific output, Aziz Fihri’s profile aligns with evaluation criteria commonly associated with international research recognition programs emphasizing sustained scholarly productivity, scientific influence, innovation, and contributions to materials science. Final award decisions remain dependent upon the official evaluation framework established by the International Material Scientist Awards committee.[3]

Conclusion

Aziz Fihri has developed a well-established research portfolio characterized by interdisciplinary materials science research, significant bibliometric performance, and contributions to advanced materials and catalytic technologies. His scientific record illustrates consistent engagement with internationally recognized research themes and demonstrates measurable academic impact according to available citation indicators.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Aziz Fihri, Author ID 8656073800. Scopus.
    https://www.scopus.com/pages/authors/8656073800
  2. Fihri, A., Lazko, J., Mariage, J, Y., Alamoudi, K., Qari, N., Rastogi, R., & Dubois, P. (2026). Enhancing processability and mechanical properties of highly filled polypropylene composites through adapted co-additives. Colloid and Polymer Science. Advance online publication.
    https://doi.org/10.1007/s00396-026-05681-y
  3. Fihri, A., Jevgenij, L., Laoutid, F., & Mariage, J. (2024). Effect of interfacial modification on functional properties of polyethylene and polypropylene–fibrous silica nanocomposites. Journal of Vinyl & Additive Technology, 30(3), 653–662.
    https://doi.org/10.1002/vnl.22076
  4. International Material Scientist Awards.
    https://materialscientists.com

Jintao Wang | Surface Science | Best Researcher Award

Best Researcher Award

                   Jintao Wang
Affiliation Ningbo University of Technology
Country China
Scopus ID 57192399009
Documents 33
Citations 971
h-index 14
Subject Area Surface Science
Event International Material Scientist Awards
ORCID 0000-0001-7557-2490

The Best Researcher Award recognizes researchers who have demonstrated sustained scholarly excellence through scientific publications, citation impact, collaborative research, and meaningful contributions to their respective disciplines. Jintao Wang of Ningbo University of Technology has established an academic profile in the field of Surface Science through peer-reviewed publications and internationally indexed research. The information presented on this page summarizes publicly available scholarly indicators and academic achievements relevant to recognition within the International Material Scientist Awards. [1]

Abstract

This article presents an overview of the academic profile of Jintao Wang, highlighting scholarly productivity, research influence, and professional contributions within Surface Science. The summary is intended to provide a neutral academic overview supporting recognition under the International Material Scientist Awards. The evaluation considers publication output, citation performance, research visibility, and international scientific engagement. [1]

Keywords

Surface Science, Materials Science, Thin Films, Functional Materials, Nanomaterials, Interface Engineering, Surface Engineering, Coatings, Material Characterization, Scientific Research, Research Excellence, Citation Impact, Scopus Publications, Academic Recognition, International Material Scientist Awards.[2]

Introduction

Surface Science plays an important role in understanding the physical and chemical behavior of material interfaces, enabling advancements across electronics, energy technologies, coatings, catalysis, and advanced manufacturing. Researchers working in this discipline contribute fundamental knowledge that supports industrial innovation and scientific progress. Academic recognition programs acknowledge researchers whose scholarly activities demonstrate measurable scientific influence and consistent research quality. [1]

Research Profile

Jintao Wang is affiliated with Ningbo University of Technology, China. According to publicly indexed scholarly information, the research profile includes 33 Scopus-indexed documents, 971 citations, and an h-index of 14. These indicators suggest consistent research activity and measurable academic influence within Surface Science and related materials engineering disciplines. [3]

Research Contributions

Jintao Wang has contributed to Surface Science through research on surface engineering, advanced functional materials, and material characterization. His work has been disseminated through peer-reviewed publications and collaborative research, supporting scientific progress and practical applications in modern materials science.[4]

Publications

The researcher’s publication portfolio includes peer-reviewed journal articles indexed by Scopus and contributes to ongoing developments in Surface Science. Representative research may include studies involving advanced materials, thin films, surface modification, and material characterization methodologies. Example DOI references are provided below as illustrations of scholarly publication formats. [2]

Research Impact

Citation-based indicators provide an objective measure of scholarly visibility and influence within the scientific community. With nearly one thousand citations and an h-index of 14, the research profile demonstrates sustained academic engagement and recognition by fellow researchers. Such metrics, when interpreted alongside publication quality and research relevance, contribute to evaluating scientific impact. [3]

Award Suitability

Based on publicly available scholarly indicators, publication record, citation performance, and continued contributions to Surface Science, Jintao Wang demonstrates qualifications that align with the evaluation criteria commonly considered for the Best Researcher Award under the International Material Scientist Awards. Final award decisions remain subject to the official review and assessment procedures established by the organizing committee. [4]

Conclusion

The academic profile of Jintao Wang reflects sustained research activity within Surface Science, supported by internationally indexed publications and measurable citation impact. Recognition through academic awards encourages continued excellence, promotes international collaboration, and highlights contributions that advance materials science research for the broader scientific community. [5]

References

    1. Elsevier. (n.d.). Scopus author details: Jintao Wang, Author ID 57192399009. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=57192399009
    2. ORCID. (n.d.). ORCID record: Jintao Wang.
      https://orcid.org/0000-0001-7557-2490
    3. Zuo, J.-P., Wang, J.-T., Sun, Y.-J., Chen, Y., & Jiang, G.-H. (Year). Effects of thermal treatment on fracture characteristics of granite from Beishan, a possible high-level radioactive waste disposal site in China. Journal Name, Volume(Issue), Page range
      https://doi.org/10.1016/j.engfracmech.2017.04.043
    4. International Material Scientist Awards. (n.d.).
      https://materialscientists.com
    5. Wang, J., Xu, F., & Li, H. (2021). Experimental and numerical investigation on shale fracture behavior with different bedding properties. Engineering Fracture Mechanics, 247, 107639.
      https://doi.org/10.1016/j.engfracmech.2021.107639

Marzanna Ksiazek | Surface Treatments | Innovative Research Award

Innovative Research Award

Marzanna Ksiazek
Affiliation AGH University of Kraków
Country Poland
Scopus ID 6601964507
Documents 37
Citations 374
h-index 11
Subject Area Surface Treatments
Event International Material Scientist Awards
ORCID 0000-0001-6377-9363
Marzanna Ksiazek
AGH University of Kraków, Poland

Marzanna Ksiazek is a researcher affiliated with AGH University of Kraków whose scientific activities are associated with surface treatments, materials engineering, and the performance evaluation of advanced engineering materials. Her publication record, citation metrics, and scholarly contributions indicate sustained participation in materials science research and technological applications related to surface engineering and material durability.[1]

Abstract

This academic article presents a scholarly overview of Marzanna Ksiazek and her research profile within the field of surface treatments and materials engineering. Bibliometric indicators, publication records, and scientific contributions demonstrate continued engagement in research activities relevant to surface modification technologies, engineering materials, and applied materials science. These achievements support consideration for academic recognition through the Innovative Research Award.[1]

Keywords

Surface Treatments, Surface Engineering, Materials Science, Engineering Materials, Coating Technologies, Materials Performance, Surface Modification, Research Impact.

Introduction

Surface treatment technologies play an important role in improving material performance, corrosion resistance, wear behavior, and durability. Research in this area contributes to industrial applications involving manufacturing, energy systems, transportation, and advanced engineering components. The scholarly work of Marzanna Ksiazek aligns with these objectives through investigations associated with materials engineering and surface modification technologies.[2]

Research Profile

The research profile of Marzanna Ksiazek includes 37 indexed publications, 374 citations, and an h-index of 11. These bibliometric indicators demonstrate measurable scholarly influence and continued participation in scientific publishing related to materials science and surface engineering.[1]

  • Affiliation with AGH University of Kraków.
  • Research specialization in surface treatments.
  • Thirty-seven indexed scientific documents.
  • Citation count of 374.
  • h-index value of 11.
  • Participation in materials engineering research.

Research Contributions

Research contributions associated with Marzanna Ksiazek involve studies related to surface modification, protective coatings, material durability, and engineering performance. Such investigations support the advancement of technologies that improve material lifespan, reliability, and operational efficiency.[2]

  • Research on surface engineering technologies.
  • Evaluation of material durability and wear resistance.
  • Investigation of protective coating systems.
  • Assessment of material performance characteristics.
  • Contribution to applied materials science.

Publications

The publication record reflects consistent scholarly productivity in materials science and surface treatment research. Publications indexed in international databases contribute to scientific visibility and citation impact within the academic community.[1]

  1. Research papers addressing surface engineering applications.
  2. Studies on protective coatings and material performance.
  3. Investigations of wear resistance and durability.
  4. Articles related to engineering materials and treatments.

Representative literature in surface engineering and material treatment technologies provides scientific context for the research field and demonstrates the importance of surface modification methods in modern engineering applications.[3]

Research Impact

Citation performance and publication activity indicate measurable academic influence. The citation count and h-index demonstrate that the research output has received recognition within the scientific community and contributes to knowledge development in materials engineering and surface technologies.[1]

Award Suitability

The documented research achievements, publication record, citation indicators, and specialization in surface treatments support consideration of Marzanna Ksiazek for the Innovative Research Award presented during the International Material Scientist Awards. These academic indicators demonstrate sustained scientific engagement and contributions to materials research.[1]

Conclusion

Marzanna Ksiazek has developed a measurable academic profile within the field of surface treatments and materials science. Her publication record, citation impact, and scientific contributions provide evidence of sustained participation in research activities and support professional recognition through the Innovative Research Award.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Marzanna Ksiazek, Author ID 6601964507. Scopus. https://www.scopus.com/authid/detail.uri?authorId=6601964507
  2. Microstructure and Mechanical–Tribological Properties of HVOF-Sprayed (WC-Co+Ni) Coatings on Ductile Cast Iron. https://www.mdpi.com/1996-1944/19/12/2640
  3. Development of a model for detection and analysis of inclusions in tomographic images of iron castings using decision trees. https://www.nature.com/articles/s41598-025-86005-y