Assoc. Prof. Dr. Mustapha Hidouri | Biomaterials | Material Chemistry Award

Assoc. Prof. Dr. Mustapha Hidouri | Biomaterials | Material Chemistry Award

Assoc. Prof. Dr. Mustapha Hidouri | Biomaterials | Associate professor at Gabes University, Tunisia

Dr. Mustapha Hidouri is an Associate Professor at the Higher Institute of Applied Sciences and Technology, Gabes University, Tunisia. With a strong background in materials chemistry and physics, he has made significant contributions to biomaterials, environmental science, and energy research. He holds a Ph.D. in Chemistry of Solids and Liquids from the Faculty of Sciences, Monastir University, in collaboration with Limoges University, France. His expertise spans advanced materials synthesis, biomaterials for medical applications, and environmental sustainability. Dr. Hidouri has published extensively in international journals and has collaborated on various interdisciplinary research projects. His work in developing innovative biomaterials and energy-efficient materials has been widely recognized. He actively engages in academic mentorship and international collaborations, contributing to the global scientific community.

Professional Profile : 

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Summary of Suitability for Award:

Dr. Mustapha Hidouri is a highly suitable candidate for the “Material Chemistry Award”  due to his extensive research contributions in materials chemistry, biomaterials, and environmental applications. His expertise in solid-state chemistry, bioceramics, and hydroxyapatite-based materials demonstrates significant advancements in the field. His work in biomaterials for medical applications, sustainable energy, and environmental remediation aligns with the award’s focus on innovative materials research. Dr. Hidouri has made remarkable contributions to materials chemistry, particularly in the synthesis and characterization of advanced materials for biomedical, environmental, and industrial applications. His research in bioactive ceramics, nanomaterials, and polymer composites has led to novel developments in tissue engineering, water treatment, and renewable energy materials. His interdisciplinary approach integrates chemistry, physics, and engineering, making him a leader in developing high-performance and eco-friendly materials. His high-impact publications, international collaborations, and recognition in scientific forums further reinforce his eligibility for this prestigious award.

🎓Education:

Mustapha Hidouri obtained his Doctorate Diploma (Ph.D.) in Chemistry of Solids and Liquids (2000-2004) from the Faculty of Sciences, Monastir University, Tunisia, in collaboration with Limoges University, France. Before that, he earned his Higher Specified Study Diploma (equivalent to a Master’s degree) (1999-2000) in the same specialization from Monastir University, where he graduated with honors. His academic journey began with a Bachelor’s degree in Physical Sciences (1993-1998) from the Faculty of Sciences, Monastir University, Tunisia. Later, he obtained University Habilitation (2016-2018) from the Ministry of Higher Education and Scientific Research, Gabes University, Tunisia, further advancing his research and teaching credentials. His diverse academic background, international collaborations, and research expertise have significantly contributed to his specialization in materials chemistry, biomaterials, and environmental sciences.

🏢Work Experience:

Dr. Mustapha Hidouri has over two decades of academic and research experience. Since 2018, he has been serving as an Associate Professor at the Higher Institute of Applied Sciences and Technology, Gabes University. Prior to this, he worked as an Assistant Professor at the same institution (2005-2010, 2016-2018). From 2010 to 2016, he was an Assistant Professor at the Faculty of Sciences Yanbu, Taibah University, Saudi Arabia, where he contributed significantly to research and teaching. His career began as an Assistant Lecturer at multiple institutions, including Faculty of Sciences, Gabes University (2004-2005), Faculty of Sciences, Monastir University (2002-2003), and the Preparatory Institute for Engineering Studies, University of Monastir (2000-2002). His extensive experience spans teaching, mentoring students, conducting research in materials science, and collaborating on interdisciplinary projects related to biomaterials, environmental chemistry, and sustainable energy.

🏅Awards: 

Dr. Mustapha Hidouri has been recognized for his outstanding contributions to materials chemistry, biomaterials, and environmental sciences. His work has earned him multiple awards and distinctions for scientific excellence, high-impact publications, and contributions to sustainable technologies. He has received prestigious grants and funding for his research in bioceramics, biomaterials for medical applications, and environmental sustainability. His collaborative projects with international universities and research institutes have been acknowledged for their innovative approaches. Dr. Hidouri has also been invited as a keynote speaker at international conferences and has received best paper awards in reputed scientific journals. In addition, he has actively contributed to the advancement of materials science education, receiving accolades for his mentorship and academic leadership. His work in nanotechnology and bioactive materials has positioned him as a leader in the field, earning recognition from both academic and industrial sectors.

🔬Research Focus:

Dr. Mustapha Hidouri’s research focuses on materials chemistry, biomaterials, environmental sustainability, and energy applications. He specializes in the synthesis, characterization, and application of advanced materials, particularly bioceramics and hydroxyapatite-based materials for medical and dental applications. His work also explores the development of sustainable biomaterials for wound healing and tissue engineering. In environmental chemistry, he investigates wastewater treatment using phosphate-based adsorbents and advanced oxidation processes. Dr. Hidouri’s expertise extends to solid-state chemistry, mechanical properties of biomaterials, and the effects of gamma radiation on polymeric materials. His interdisciplinary research integrates chemistry, physics, and engineering, leading to innovative solutions in biomedical applications, renewable energy, and environmental remediation. With numerous publications in high-impact journals, his work significantly contributes to developing eco-friendly and high-performance materials for biomedical and industrial applications.

Publication Top Notes:

Thermal behavior of magnesium-containing fluorapatite

Authors: M. Hidouri, K. Bouzouita, F. Kooli, I. Khattech

Citations: 60

Year: 2003

Thermal behavior, sintering and mechanical characterization of multiple ion-substituted hydroxyapatite bioceramics

Authors: M. Hidouri, S. V. Dorozhkin, N. Albeladi

Citations: 49

Year: 2019

Structure and thermal stability of sodium and carbonate-co-substituted strontium hydroxyfluorapatites

Authors: M. Hidouri, S. V. Dorozhkin

Citations: 19

Year: 2018

Sintering and mechanical properties of magnesium-containing fluorapatite

Authors: M. Hidouri, K. Boughzala, J. P. Lecompte, K. Bouzouita

Citations: 13

Year: 2009

Sintering of potassium-doped hydroxy-fluorapatite bioceramics

Authors: J. B. Slimen, M. Hidouri, M. Ghouma, E. B. Salem, S. V. Dorozhkin

Citations: 9

Year: 2021

Insertion of cesium into strontium britholites

Authors: K. Boughzala, M. Hidouri, E. B. Salem, A. B. Chrifa, K. Bouzouita

Citations: 9

Year: 2007

Structural study of fluorapatites containing magnesium as a substitution

Authors: M. Hidouri, K. Bouzouita, A. Aissa, M. Debbabi

Citations: 9

Year: 2004

Sintering and ionic conduction of neodymium-bearing fluorobritholites

Authors: M. Hidouri

Citations: 5

Year: 2019

Lanthanum-neodymium-co-substituted calcium fluorobritholites

Authors: M. Hidouri, N. Albeladi

Citations: 5

Year: 2018

Influence of additions on the densification and microstructure of magnesium-substituted fluorapatite

Authors: M. Hidouri, K. Bouzouita, N. Fattah

Citations: 4

Year: 2005

Structural and electrical properties of lanthanide-doped oxybritholite materials

Authors: M. Bembli, R. Khiari, M. Hidouri, K. Boughzala

Citations: 3

Year: 2024

 

Jiawei Yang | Biomaterials | Best Researcher Award

Dr. Jiawei Yang | Biomaterials | Best Researcher Award

Doctorate at University of Hong Kong, China

Jiawei Yang is a prominent researcher in biomaterials science and dental technology, dedicated to enhancing dental materials and their applications. With a PhD from the University of Manchester, his work focuses on improving the properties of resin composites used in dentistry, emphasizing both their mechanical performance and clinical relevance. Through innovative research and a strong commitment to advancing dental technology, Jiawei aims to contribute significantly to the field and improve patient outcomes.

Author Metrics

Scopus Profile

ORCID Profile

Jiawei has achieved notable author metrics, including numerous publications in high-impact journals and several first-author articles. His work has received significant citations, underscoring its relevance and impact in the fields of dental materials and biomaterials science. These metrics reflect his contributions to advancing knowledge and innovation in dental technology, showcasing his ability to engage with and influence the scientific community.

  • Citations: 112 across 93 documents
  • Documents: 14 total publications
  • h-index: 6

Education

Jiawei holds a PhD in Biomaterials Science and Dental Technology from the University of Manchester, where he conducted research on the effects of temperature on dental resin composites. Prior to this, he completed his MSc in Biomaterials with distinction at the same institution, focusing on hexagonal boron nitride resin composites. His educational journey began with a BEng in Polymer Materials and Engineering from Jiangnan University, providing him with a solid foundation in material science.

Research Focus

Jiawei’s research focus encompasses the development and optimization of dental materials, particularly resin composites. He investigates the influence of polymerization, thermal properties, and mechanical strength on the performance of these materials in clinical settings. Additionally, his work extends to exploring biomaterials for regenerative dentistry, aiming to create solutions that facilitate tissue healing and regeneration, thus bridging the gap between materials science and clinical applications.

Professional Journey

Jiawei’s professional journey includes key post-doctoral positions at renowned institutions. After earning his PhD, he served as a post-doctoral fellow at Shanghai Ninth People’s Hospital, where he focused on innovative biomaterials for dental applications. Currently, he is a post-doctoral fellow at the University of Hong Kong, where he continues to engage in cutting-edge research and collaboration in the field of dental technology.

Honors & Awards

Throughout his academic and professional career, Jiawei has received numerous honors recognizing his contributions to research. Notable awards include the Centennial Travel Award for New Investigators from the International Association for Dental Research in 2024 and the Best PGT/PGR Presentation award from the University of Manchester in 2020. These accolades highlight his achievements and potential as a leading researcher in biomaterials and dental technology.

Publications Noted & Contributions

Jiawei has authored and co-authored several impactful publications in prestigious journals, contributing significantly to the field of dental materials. His notable works include research on self-cascade ROS-trapping systems and injectable hydrogels for bone regeneration. By sharing his findings through peer-reviewed articles and presentations at international conferences, he actively engages with the scientific community and advances knowledge in his field.

Diversity of short-term DC outcomes in bulk-fill RBCs subjected to a 3 s high-irradiance protocol
Journal: Dental Materials
Date: September 2024
DOI: 10.1016/j.dental.2024.08.008
Contributors: Hamad Algamaiah, Abdulrahman Alshabib, Muadh Algomaiah, Jiawei Yang, David C. Watts

Temperature rise in photopolymerized adhesively-bonded resin composite: A thermography study
Journal: Dental Materials
Date: March 2024
DOI: 10.1016/j.dental.2023.12.006
Contributors: Hamad Algamaiah, Jiawei Yang, Abdulaziz Alayed, Abdulrahman Alshabib, Abdullah Alshehri, David C. Watts

Fusion machine learning model predicts CAD-CAM ceramic colors and the corresponding minimal thicknesses over various clinical backgrounds
Journal: Dental Materials
Date: February 2024
DOI: 10.1016/j.dental.2023.11.013
Contributors: Jiawei Yang, Zezhou Hao, Jiani Xu, Jie Wang, Xinquan Jiang

Polymerization and shrinkage kinetics and fracture toughness of bulk-fill resin-composites
Journal: Dental Materials
Date: December 2022
DOI: 10.1016/j.dental.2022.10.002
Contributors: Jiawei Yang, Nick Silikas, David C. Watts

Spatio-temporal temperature fields generated coronally with bulk-fill resin composites: A thermography study
Journal: Dental Materials
Date: August 2021
DOI: 10.1016/j.dental.2021.06.008
Contributors: Jiawei Yang, Hamad Algamaiah, David C. Watts

Research Timeline

Jiawei’s research timeline reflects a consistent trajectory of academic excellence and impactful contributions. From 2018 to 2020, he conducted his PhD research at the University of Manchester, focusing on dental resin composites. Following this, he worked as a post-doctoral fellow at Shanghai Ninth People’s Hospital from 2021 to 2024, before joining the University of Hong Kong in 2024, where he continues to explore advanced dental technologies.

Conclusion

Dr. Jiawei Yang is an accomplished researcher whose contributions to the field of biomaterials and dental technology have garnered significant recognition. His innovative work, combined with a strong publication record and numerous awards, positions him as a leading figure in the field. While there are areas for improvement, such as expanding collaborations and increasing public engagement, his potential for advancing dental materials science remains high. Continued dedication to research excellence and a focus on clinical applications will undoubtedly enhance patient outcomes and solidify his impact on the scientific community.