Research Excellence Award
| Sarah Baghdady | |
|---|---|
| Affiliation | Faculty of Dentistry, Alexandria University |
| Country | Egypt |
| Scopus ID | 57221291852 |
| Documents | 5 |
| Citations | 65 |
| h-index | 2 |
| Subject Area | Design of Materials and Components |
| Event | Global Composite Awards |
Dr. Sarah Baghdady
Faculty of Dentistry, Alexandria University
The Research Excellence Award recognizes sustained scholarly achievement, academic leadership, and meaningful scientific contributions within interdisciplinary research. Dr. Sarah Baghdady, affiliated with the Faculty of Dentistry at Alexandria University, has established an academic profile that reflects continued engagement in internationally indexed research and scientific dissemination. Her work demonstrates the integration of evidence-based investigation, collaborative scholarship, and contributions to the advancement of materials-related research themes relevant to design and component development.[1]
Abstract
This article presents an academic overview of Dr. Sarah Baghdady in the context of the Research Excellence Award. The profile highlights scholarly activity, institutional affiliation, scientific productivity, and research relevance associated with Design of Materials and Components. Recognition through international academic awards commonly considers publication quality, citation performance, interdisciplinary collaboration, and sustained contributions to scientific advancement. Dr. Baghdady’s academic record reflects continued participation in peer-reviewed research and global scholarly communication.[1]
Keywords
Research Excellence Award; Sarah Baghdady; Alexandria University; Egypt; Design of Materials and Components; Scientific Research; Composite Materials; Dental Materials; Academic Recognition; Scopus Author.
Introduction
Academic excellence is evaluated through objective measures that include publication quality, citation influence, collaborative engagement, innovation, and contributions to disciplinary development. International recognition programs seek to identify researchers whose work advances scientific understanding while supporting education, technology, and professional practice. Within this context, Dr. Sarah Baghdady represents an academic researcher whose institutional affiliation and indexed publications contribute to ongoing developments in materials-related research and applied scientific investigation.[2]
Research Profile
Dr. Sarah Baghdady is affiliated with the Faculty of Dentistry, Alexandria University, Egypt. Her scholarly activities are indexed within the Scopus database, demonstrating participation in internationally recognized scientific publishing. Her research interests align with Design of Materials and Components, reflecting interdisciplinary engagement between material science, engineering concepts, and biomedical applications. Such research environments encourage innovation through laboratory investigation, analytical methodologies, and evidence-based publication practices.[1]
Research Contributions
Participation in peer-reviewed scientific research indexed through international databases. Contributions to interdisciplinary studies involving materials, design methodologies, and applied biomedical science. Support for scientific collaboration through publication and academic dissemination. Advancement of evidence-based methodologies relevant to material performance and component evaluation. Engagement in internationally visible academic scholarship supporting scientific progress.
Publications
The research output associated with Dr. Sarah Baghdady is indexed through the Scopus Author Profile, where publications, citation metrics, and bibliographic records are maintained. These publications collectively demonstrate continued scientific engagement and contribute to the international research literature relevant to materials science, biomedical applications, and interdisciplinary engineering studies.[1] Representative publications also include articles assigned Digital Object Identifiers (DOIs), enabling persistent scholarly referencing.[3]
Research Impact
Research impact extends beyond publication counts by considering citation influence, scientific reproducibility, interdisciplinary collaboration, and practical application of research findings. Indexed scholarly activity provides measurable indicators of academic visibility while facilitating global access to scientific knowledge. Dr. Baghdady’s academic profile reflects ongoing participation in this internationally connected research ecosystem.[2]
Award Suitability
Based on publicly indexed academic information, Dr. Sarah Baghdady demonstrates characteristics commonly evaluated during scholarly recognition processes, including sustained publication activity, institutional research engagement, international indexing, and interdisciplinary scientific contributions. These factors support consideration for recognition through the Global Composite Awards Research Excellence Award while remaining subject to the formal evaluation criteria established by the organizing committee.[4]
Conclusion
Dr. Sarah Baghdady’s academic profile illustrates continued participation in internationally indexed scientific research and interdisciplinary scholarship. Her affiliation with Alexandria University, combined with documented research activities within materials-related fields, reflects a commitment to advancing scientific knowledge through peer-reviewed publication and academic collaboration. These attributes align with the objectives of international research recognition programs dedicated to excellence in scholarly achievement.[1]
External Links
References
- Elsevier. (2026). Scopus Author Details: Dr. Sarah Baghdady, Author ID 57221291852. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=57221291852 - BMC Oral Health. (2026). Targeted nanocomposite delivery system of amygdalin using chitosan/reduced graphene oxide-zinc oxide/hyaluronic acid for treatment of head and neck squamous cell carcinoma.
https://doi.org/10.1186/s12903-026-07943-1/ - Oral Oncology. (2026). Amygdalin delivery via a hybrid hyaluronic acidβchitosan/carbonβmetal oxide nanocomposite: In silico and in vivo anticancer evaluation in chemically induced squamous cell carcinoma mouse model.
https://doi.org/10.1016/j.oraloncology.2026.108073 - Global Composite Awards. (2026). Research Excellence Award Information.
https://globalcompositeawards.com/
Β The effect of the ethylene glycol to metal nitrate molar ratio on the phase evolution, morphology and magnetic properties of single phase BiFeO3 nanoparticlesΒ βΒ Ceramics International 41 (8), 9642-9646,Β 2015Β (
Β Cited by: 28)
Β Synthesis and Characterization of Pure Single Phase BiFeO3 Nanoparticles by the Glyoxylate Precursor MethodΒ βΒ Journal of Superconductivity and Novel Magnetism 27, 2795-2801,Β 2014Β (
Β A comparative study on the thermal stability, textural, and structural properties of mesostructured Ξ³-Al2O3 granules in the presence of La, Sn, and B additivesΒ βΒ Ceramics International 48 (5), 6638-6648,Β 2022Β (
Β Effect of TiO2 addition on microstructure and mechanical properties of aluminaβbased cores prepared by solβgel methodΒ βΒ International Journal of Applied Ceramic Technology 16 (6), 2409-2418,Β 2019Β (
Β Improving thermal stability and textural properties of mesoporous Ξ³-alumina granules by Zr-La dopantsΒ βΒ Journal of Alloys and Compounds 938, 168491,Β 2023Β (
Β The effect of MgO addition on the properties of alumina-based ceramic cores prepared via solβgel processΒ βΒ Journal of Sol-Gel Science and Technology 96, 539-549,Β 2020Β (
Β Spherical gamma-alumina macroscopic beads as easy to remove adsorbents for water remediation: Modeling of indigo carmine case studyΒ βΒ Applied Surface Science 676, 161019,Β 2024Β (
Β The effects of processing parameters on structure of mesoporous Ξ³-alumina granules synthesized by sol-gel/oil-drop method: Modelling via response surface methodologyΒ βΒ Processing and Application of Ceramics 16 (3), 267-275,Β 2022Β (
Β Low-Concentration Ce-Based Dopants for High Thermal Stability in Mesoporous Ξ³-Al2O3 BeadsΒ βΒ Ceramics International,Β 2025
Β Synthesis and application of mesoporous gamma alumina granules as iridium catalyst supportΒ βΒ Iranian Journal of Ceramic Science & Engineering 11 (3), 55-66,Β 2022