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

Dr Qolby Sabrina | Polymer Science | Best Researcher Award

Dr Qolby Sabrina | Polymer Science | Best Researcher Award

Dr. Qolby Sabrina is a materials scientist specializing in biopolymer materials for lithium-ion batteries. She earned her Ph.D. from Osaka University 🎓 and is currently a Junior Researcher at BRIN, Indonesia. Her work focuses on developing high-performance, eco-friendly polymer electrolytes 🔋, enhancing ionic conductivity, mechanical stability, and electrochemical performance. She holds two patents, has published in top-tier journals 📖, and collaborates with Osaka University, Waseda University, and Indonesia Power. As a journal reviewer and research society member, her impact extends beyond academia. Her innovations contribute to next-gen battery technology, making her a top candidate for the Best Researcher Award 🏆.

Dr Qolby Sabrina, National Research and Innovation Agency, Indonesia

Profile

GOOGLESCHOLAR

ORCID

SCOPUS

Academic Expertise 🎓

Dr. Qolby Sabrina is a Junior Researcher at BRIN, Indonesia 🇮🇩, specializing in material physics and biopolymer materials for battery applications 🔋. She recently completed her Ph.D. at Osaka University, Japan 🇯🇵, focusing on developing eco-friendly polymer electrolytes for next-generation lithium-ion batteries. Her research aims to enhance ionic conductivity, mechanical stability, and electrochemical performance in sustainable energy storage. With a strong academic foundation and expertise in green materials and battery technology, Dr. Sabrina continues to push the boundaries of renewable energy solutions and advanced materials science ⚡🌍.

Research Contributions 🏛️

Dr. Qolby Sabrina is a Junior Researcher at the National Research and Innovation Agency (BRIN), Indonesia 🇮🇩, where she focuses on material physics and sustainable energy solutions. Her expertise lies in biopolymer materials for battery applications 🔋, particularly in developing eco-friendly polymer electrolytes for lithium-ion batteries. With a strong background in materials science and electrochemistry ⚡, she actively contributes to cutting-edge research in energy storage. Dr. Sabrina’s role at BRIN allows her to collaborate with international institutions 🌍, driving innovations in sustainable materials for the future of green energy technologies 🌱.

Research Focus 🔬

Dr. Qolby Sabrina specializes in polymer electrolytes, biopolymer-based energy materials, and nanocellulose applications for sustainable energy storage. Her research advances lithium-ion battery technology, focusing on solid polymer electrolytes to enhance ionic conductivity, mechanical stability, and electrochemical performance.

Her key research areas include:
Biopolymer Electrolytes – Developing eco-friendly lithium-ion battery separators 🌱🔋
Nanocellulose Reinforcement – Enhancing polymer electrolyte properties using nano-engineered cellulose 🏗️
Dielectric Behavior of Polymers – Studying ion transport mechanisms in cellulose-based electrolytes
Advanced Battery Materials – Exploring TiO₂, SiO₂, and graphene-based hybrid electrolytes for high-performance energy storage 🔬🔄

Publications 📚

Preparation and Characterization of Nanofibrous Cellulose as Solid Polymer Electrolyte for Lithium-Ion Battery Applications 🔋

📖 RSC Advances
👩‍🔬 Authors: Q. Sabrina, C.R. Ratri, A. Hardiansyah, T. Lestariningsih, A. Subhan, A. Rifai
📅 2021 | Citations: 26

Morphological Characteristics of PVDF-LiBOB-ZrO₂ Polymer and Its Potential for Lithium Battery Electrolyte ⚡

📖 Jurnal Kimia dan Kemasan
👩‍🔬 Authors: E.M. Wigayati, I. Purawiardi, Q. Sabrina
📅 2018 | Citations: 13

Influence of TiO₂ Addition on Polymer Electrolyte Sheets for Lithium Battery Conductivity & Performance 🌡️

📖 J. Material dan Energi Indones
👩‍🔬 Authors: T. Lestariningsih, Q. Sabrina, N. Majid
📅 2017 | Citations: 12

Fabrication of Solid Polymer Electrolyte Based on Carboxymethyl Cellulose for Lithium-Ion Battery Separator 🏗️

📖 Polymer Composites
👩‍🔬 Authors: D.A. Darmawan, E. Yulianti, Q. Sabrina, K. Ishida, A.W. Sakti, H. Nakai
📅 2024 | Citations: 10

Structure, Thermal, and Electrical Properties of PVDF-HFP/LiBOB Solid Polymer Electrolyte 🏭

📖 Journal of Physics: Conference Series
👩‍🔬 Authors: T. Lestariningsih, Q. Sabrina, C.R. Ratri, I. Nuroniah
📅 2019 | Citations: 10

Effect of TiO₂ and SiO₂ Nanofillers on LiBOB-Based Solid Polymer Electrolyte 🏗️

📖 Journal of Physics: Conference Series
👩‍🔬 Authors: Q. Sabrina, A. Sohib, T. Lestariningsih, C.R. Ratri
📅 2019 | Citations: 9

Characterization of Pore and Crystal Structure of Synthesized LiBOB as Lithium-Ion Battery Electrolyte 🧪

📖 AIP Conference Proceedings
👩‍🔬 Authors: T. Lestariningsih, C.R. Ratri, E.M. Wigayati, Q. Sabrina
📅 2016 | Citations: 8

🔹 Dr. Qolby Sabrina’s research significantly contributes to sustainable and high-performance lithium-ion battery materials. Her studies on solid polymer electrolytes, nanofibers, and biopolymer-based solutions have pioneered advancements in battery technology, supporting eco-friendly energy storage solutions 🌍⚡.