Zeinelabedin Mohamed | Materialis Engineering | Best Researcher Award

Best Researcher Award

Zeinelabedin Mohamed
Affiliation Military University of Technology
Country Poland
Scopus ID 57473945000
Documents 9
Citations 46
h-index 5
Subject Area Materialis Engineering
Event Research Data Analysis Awards
ORCID 0000-0001-6050-0961

Zeinelabedin Mohamed
Military University of Technology

Zeinelabedin Mohamed is a researcher affiliated with the Military University of Technology in Poland, where his scholarly activities focus on materials engineering and related technological applications. His publication record, citation performance, and documented research outputs demonstrate active participation in advancing engineering knowledge through experimental and analytical investigations.[1]

Abstract

This article summarizes the academic profile of Zeinelabedin Mohamed, highlighting measurable research indicators, scholarly publications, and contributions within materials engineering. The profile reflects documented research productivity and recognized academic engagement supported by indexed publications and citation records.[1]

Keywords

Materials Engineering, Advanced Materials, Mechanical Engineering, Surface Engineering, Structural Materials, Scientific Research, Scopus Author, Engineering Innovation.

Introduction

Materials engineering supports innovation across aerospace, defense, manufacturing, and infrastructure by improving material performance and reliability. Researchers in this discipline combine experimentation with engineering analysis to develop practical scientific solutions that contribute to technological progress.[2]

Research Profile

According to indexed author information, Zeinelabedin Mohamed has published nine Scopus-indexed documents, received forty-six citations, and achieved an h-index of five. These indicators demonstrate sustained participation in peer-reviewed engineering research and scientific dissemination.[1]

Research Contributions

His investigations emphasize material characterization techniques that improve understanding of structural behavior under different operational conditions. These studies provide data supporting engineering design decisions and laboratory validation.The published research also explores engineering applications involving material performance, durability, and optimization. Such work contributes to evidence-based approaches for improving reliability in advanced engineering systems.

Publications

The research portfolio includes peer-reviewed journal publications indexed by Scopus that address topics in materials engineering and related technologies. Published articles contribute to scientific literature through experimental findings, analytical methodologies, and engineering evaluations.[3]

Research Impact

Citation metrics indicate that the published work has received scholarly attention within the engineering community. The combination of publications, citations, and an established h-index reflects measurable academic visibility and continued research engagement.[1]

Award Suitability

The documented publication record, citation performance, and participation in engineering research demonstrate qualifications commonly considered during academic recognition programs. Evaluation may include originality, publication quality, scientific impact, and continued contribution to the research community.[4]

Conclusion

Zeinelabedin Mohamed maintains an active academic profile in materials engineering supported by indexed publications and recognized citation metrics. His documented scholarly output represents continued engagement in engineering research and scientific communication within the international academic community.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Zeinelabedin Mohamed, Author ID 57473945000.
    https://www.scopus.com/authid/detail.uri?authorId=57473945000
  2. Mohamed, Z. A., & Norek, M. (2026). One-dimensional photonic crystal mirror heterostructure for ultra-high-Q optical refractive index sensing. Sensing and Imaging, 27(1), 64.
  3. Mohamed, Z. A., & Norek, M. (2026). Simulation study on optimizing spectral selectivity of thick PAA/Al bilayers for passive daytime radiative cooling. Solar Energy Materials and Solar Cells, 306, 114556.
    http://link.springer.com/article/10.1007/s11220-026-00766-y
  4. ORCID. Researcher Profile.
    https://orcid.org/0000-0001-6050-0961
  5. Mohamed, Z. A. (2026). Design and investigation of a plasmonic metamaterial terahertz sensor for refractive index sensing. Optical and Quantum Electronics, 58(5), 188.
    https://link.springer.com/article/10.1007/s11082-026-08744-0

Cheng-Sao Chen | Materials Science | Best Researcher Award

Best Researcher Award

Cheng-Sao Chen
National Taiwan University of Science and Technology

Cheng-Sao Chen
Affiliation National Taiwan University of Science and Technology
Country Taiwan
Scopus ID 8161114700
Documents 111
Citations 2014
h-index 27
Subject Area Materials Science
Event Research Data Analysis Awards
ORCID 0000-0002-6673-6526

Cheng-Sao Chen is a researcher associated with the National Taiwan University of Science and Technology whose scholarly work contributes to the advancement of materials science through interdisciplinary investigations. His publication record, citation performance, and sustained research productivity demonstrate continued engagement with scientific innovation and academic collaboration.[1]

Abstract

This article summarizes the academic profile of Cheng-Sao Chen, highlighting contributions to materials science, scholarly publications, citation performance, and research influence. The overview reflects measurable academic achievements and emphasizes the significance of sustained research excellence within international scientific communities.[2]

Keywords

Materials Science, Functional Materials, Advanced Materials, Surface Engineering, Scientific Publications, Citation Analysis, Research Excellence, Academic Recognition.

Introduction

Academic recognition reflects consistent research quality, publication output, and scientific influence. Cheng-Sao Chen has established an active scholarly profile supported by peer-reviewed publications and measurable citation metrics that indicate continuing impact within materials science research.[3]

Research Profile

The researcher has produced 111 indexed publications with an h-index of 27 and more than 2,000 citations. These indicators demonstrate sustained productivity, collaborative engagement, and continued participation in internationally recognized scientific research.[1]

Research Contributions

Research has advanced innovative materials development through performance optimization, structural characterization, and engineering applications while fostering interdisciplinary scientific collaboration and international knowledge exchange. Consistent contributions to peer-reviewed journals demonstrate a strong

Publications

Over 111 publications indexed in Scopus across materials science disciplines. Research disseminated through internationally recognized peer-reviewed journals.

Research Impact

Citation indicators and publication consistency suggest meaningful scholarly influence within the materials science community. Research outcomes have supported ongoing academic discussion while providing references for subsequent investigations and collaborative scientific development.[4]

Award Suitability

Based on publication productivity, citation performance, and sustained research contributions, Cheng-Sao Chen demonstrates qualifications that align with evaluation criteria commonly associated with the Best Researcher Award presented through the Research Data Analysis Awards program.[5]

Conclusion

Cheng-Sao Chen maintains a well-established academic profile characterized by consistent publication activity, recognized citation impact, and contributions to materials science. These achievements illustrate sustained scholarly engagement and support consideration for professional academic recognition.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Cheng-Sao Chen, Author ID 8161114700. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=8161114700
  2. ORCID. (n.d.). Research profile of Cheng-Sao Chen.
    https://orcid.org/0000-0002-6673-6526
  3. Montecillo, R., Chien, R. R., Tsukada, S., Chen, C.-S., Tu, C.-S., & Feng, K.-C. (2025). Excellent capacitive energy storage in bismuth ferrite-based multilayer ceramic. Journal of the European Ceramic Society. Advance online publication.
    https://doi.org/10.1016/j.jeurceramsoc.2025.117694
  4. Mana-ay, H., Chen, C.-S., Chien, R. R., Tu, C.-S., & Chen, P.-Y. (2024). Achieving high microscale photoconductivity in Gd-modified bismuth ferrite via modulating ferroelectric polarization. Journal of Materials Chemistry C.
    https://doi.org/10.1039/d4tc01066c
  5. Montecillo, R., Chen, C.-S., Feng, K.-C., Chien, R. R., Chen, P.-Y., & Tu, C.-S. (2024). Configuration-entropy effects on BiFeO₃–BaTiO₃ relaxor ferroelectric ceramics for high-density energy storage. Journal of Materials Chemistry A.

Susanne Staehlke | Cell-Biomaterial-Interaction | Best Researcher Award

Dr. Susanne Staehlke | Cell-Biomaterial-Interaction | Best Researcher Award

Rostock University Medical Center | Germany

Author Profile

Orcid 

📚 EARLY ACADEMIC PURSUITS

Dr. Susanne Staehlke began her academic journey with a focus on Genetic and Microbiology at the University of Rostock, Germany, from 2000 to 2006. During this time, she specialized in signal transduction in Oncorhynchus mykiss (rainbow trout), which laid the foundation for her interest in molecular biology and cell signaling. She continued her studies at Rostock University Medical Center, where she earned her PhD in Cell Biology in 2014. Her doctoral research focused on the interaction between human osteoblasts and geometrically structured implant surfaces, specifically investigating cell architecture and signal transduction.

💼 PROFESSIONAL ENDEAVORS

Dr. Staehlke’s career as a scientist includes an extensive background in cell biology, biomaterials, and tissue engineering. After earning her PhD, she embarked on post-doctoral research that expanded her expertise into ophthalmology, where she focused on understanding cell responses to surface modifications for ocular applications. Her work in this area also involved collaborations with experts in various fields, including engineering, physics, chemistry, and medicine, to enhance biomaterial designs for clinical applications. Throughout her career, Dr. Staehlke has contributed to over 40 publications, and her work has made significant strides in the fields of biomaterials and regenerative medicine.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS ON Cell-Biomaterial-Interaction

Dr. Staehlke has made a profound impact in the fields of biomaterials, cell biology, and tissue engineering. Her primary research focus has been on optimizing cell-biomaterial interactions, particularly improving osteoblast responses to implant surfaces. By investigating physico-chemical surface modifications, such as plasma polymer coatings and topographical features, Dr. Staehlke’s work has advanced biomaterial design, enhancing cell behavior and implant integration. Additionally, her research in the integration of artificial intelligence (AI), machine learning, and big data analytics has enabled better prediction of cellular responses to various biomaterials. Her interdisciplinary approach has driven significant advancements in regenerative medicine, stem cell characterization, and biomedicines.

🌍 IMPACT AND INFLUENCE

Dr. Staehlke’s contributions to science have had a lasting influence on biomaterial innovation, tissue engineering, and regenerative medicine. Her work has led to groundbreaking advances in surface modifications for implants, improving both the functional and biological success of biomaterials. Dr. Staehlke has also been instrumental in enhancing the reproducibility of scientific research by advocating for rigorous data analysis methods and the development of open-source platforms for data management. Her interdisciplinary approach, which bridges cell biology with computational tools and engineering, has strengthened scientific rigor and fostered collaborations across diverse fields.

📑 ACADEMIC CITES

Dr. Staehlke’s work has garnered significant academic recognition, with over 40 publications in leading journals within the fields of biomaterials, cell biology, and tissue engineering. Her research is widely cited, contributing to the advancement of knowledge in cell-biomaterial interactions. She has a citation index of 506 and an h-index of 12, demonstrating the profound impact and influence of her scholarly contributions.

🏛️ LEGACY AND FUTURE CONTRIBUTIONS

Dr. Staehlke’s legacy in the scientific community will likely continue to grow as her research paves the way for new biomaterial technologies and therapeutic applications in regenerative medicine. Her integration of AI and big data into cell biology and biomaterials research ensures that her future contributions will further refine predictive models for cellular behavior, ultimately improving patient outcomes in tissue engineering and implantology. As she continues to collaborate with experts from various disciplines, Dr. Staehlke’s work promises to influence both academic research and clinical practice for years to come.

🤝 KEY COLLABORATIONS

Throughout her career, Dr. Staehlke has worked closely with interdisciplinary teams, including engineers, clinicians, data scientists, and materials scientists. Her research has benefited from collaborations in the fields of ophthalmology, biomaterials, and systems biology. These partnerships have led to innovative approaches for improving cell-biomaterial interactions and advancing technologies in regenerative medicine. Additionally, her work with AI and machine learning specialists has allowed her to optimize experimental data analysis, which has been essential for ensuring reproducibility and improving the predictive accuracy of her research findings.

🧑‍🔬 PROFESSIONAL MEMBERSHIPS

Dr. Staehlke holds memberships in several professional organizations, including the German Society for Biomaterials (DGBM), TERMIS (Tissue Engineering and Regenerative Medicine International Society), and the German Ophthalmology Society (DOG). These memberships reflect her commitment to staying at the forefront of developments in her field and engaging with a global network of researchers and professionals.

📊 RESEARCH DATA ANALYSIS AWARDS

Dr. Staehlke’s research has also been recognized in the field of data analysis, particularly for her innovative approaches in handling complex datasets related to cell-biomaterial interactions. This dedication to data integrity and reproducibility has earned her numerous accolades and collaborations with experts in scientific workflows and AI-powered data analysis tools.

📑 NOTABLE PUBLICATIONS 

Impact of Metal Ions on Cellular Functions: A Focus on Mesenchymal Stem/Stromal Cell Differentiation
    • Authors: Kirsten Peters, Susanne Staehlke, Henrike Rebl, Anika Jonitz-Heincke, Olga Hahn
    • Journal: International Journal of Molecular Sciences
    • Year: 2024
Suppressing Pro-Apoptotic Proteins by siRNA in Corneal Endothelial Cells Protects against Cell Death
    • Authors: Susanne Staehlke, Siddharth Mahajan, Daniel Thieme, Peter Trosan, Thomas A. Fuchsluger
    • Journal: Biomedicines
    • Year: 2024
Cold Atmospheric Pressure Plasma-Activated Medium Modulates Cellular Functions of Human Mesenchymal Stem/Stromal Cells In Vitro
    • Authors: Olga Hahn, Tawakalitu Okikiola Waheed, Kaarthik Sridharan, Thomas Huemerlehner, Susanne Staehlke, Mario Thürling, Lars Boeckmann, Mareike Meister, Kai Masur, Kirsten Peters
    • Journal: International Journal of Molecular Sciences
    • Year: 2024
The Impact of Ultrashort Pulse Laser Structuring of Metals on In-Vitro Cell Adhesion of Keratinocytes
    • Authors: Susanne Staehlke, Tobias Barth, Matthias Muench, Joerg Schroeter, Robert Wendlandt, Paul Oldorf, Rigo Peters, Barbara Nebe, Arndt-Peter Schulz
    • Journal: Journal of Functional Biomaterials
    • Year: 2024
Short-Time Alternating Current Electrical Stimulation and Cell Membrane-Related Components
    • Authors: Maren E. Buenning, Meike Bielfeldt, Barbara Nebe, Susanne Staehlke
    • Journal: Applied Sciences
    • Year: 2024