Rabab Nasser | Bio Materials | Best Researcher Award

Best Researcher Award

Rabab NasserJazan University, Saudi Arabia

Rabab Nasser
Affiliation Jazan University
Country Saudi Arabia
Scopus ID 24477975900
Documents 26
Citations 141
h-index 7
Subject Area Bio Materials
Event Global Mechanics Awards
ORCID 0000-0003-2806-1051

Rabab Nasser is an academic researcher affiliated with Jazan University in Saudi Arabia whose documented research profile is associated with the subject area of Bio Materials. The supplied Scopus information records 26 documents, 141 citations, and an h-index of 7. These bibliometric indicators provide a quantitative view of scholarly output and citation activity, while the detailed assessment of research quality, originality, and contribution requires consideration of individual publications and their scientific context.

The Best Researcher Award profile considers research activity in relation to established academic indicators and the broader scientific relevance of biomaterials research. Biomaterials research commonly addresses the interaction between engineered materials and biological systems, including material properties, biocompatibility, surface characteristics, tissue engineering, and biomedical applications.[2]

Abstract

This academic recognition profile presents the research record of Rabab Nasser of Jazan University, Saudi Arabia, in the context of the Best Researcher Award. The supplied bibliometric information identifies 26 Scopus-indexed documents, 141 citations, and an h-index of 7. The stated subject area is Bio Materials, a multidisciplinary field that connects materials science, biology, engineering, and biomedical applications. Research in this area frequently considers material structure, biological response, biocompatibility, surface interactions, and the development of materials for healthcare applications.[1][2]

Keywords

Rabab Nasser, Best Researcher Award, Jazan University, Saudi Arabia, Bio Materials, Biomaterials Research, Materials Science, Biomedical Materials, Research Impact, Scopus, Scholarly Publications, Global Mechanics Awards.

Introduction

Biomaterials constitute an interdisciplinary research domain concerned with materials designed or evaluated for interaction with biological environments. Their scientific study incorporates material properties, biological responses, surface behavior, degradation, mechanical characteristics, and application-specific performance. The field therefore intersects with several areas of engineering and biomedical science and can include both fundamental and applied research.[1]

Within this broader context, the research profile supplied for Rabab Nasser identifies Bio Materials as the principal subject area. The available bibliometric figures provide a basis for describing the scale of the research record, while individual publication content and verified research outputs are necessary for a more detailed assessment of specific scientific contributions.

Research Profile

The supplied research profile associates Rabab Nasser with Jazan University and the Bio Materials subject area. The Scopus Author ID provided for the profile is 24477975900. The record supplied for this article contains 26 documents, 141 citations, and an h-index of 7. Such indicators are commonly used to summarize publication activity and citation reach, although they should be interpreted alongside publication quality, authorship contribution, research significance, and disciplinary context.

Biomaterials research can involve the design and characterization of materials for biological or medical use. Important considerations include interactions between materials and cells or tissues, surface properties, biological compatibility, and functional performance. Studies of cell–biomaterial interactions, for example, examine biological responses that can influence the suitability of materials for biomedical applications.[2]

Research Contributions

The available information supports identifying Rabab Nasser’s research domain as Bio Materials, but it does not provide a verified publication-by-publication list sufficient to attribute particular discoveries, methods, or clinical applications. Accordingly, the research contribution assessment should remain grounded in the documented subject area and bibliometric record rather than attributing specific findings without supporting publication evidence.

At the field level, biomaterials research contributes to the understanding and development of materials that can function in biological environments. Relevant research themes may include material characterization, biological compatibility, tissue engineering, implant-related materials, surface modification, and advanced fabrication approaches.[2][3] These themes also illustrate the relationship between materials science and mechanics, particularly where material structure, mechanical behavior, degradation, and biological response influence functional performance.

Publications

The supplied Scopus record reports 26 documents associated with the researcher profile. Because a complete verified publication bibliography was not supplied with the profile data, individual publications are not attributed to Rabab Nasser in this article. The publication count should therefore be understood as the bibliometric figure provided for the stated Scopus author profile.

For contextual comparison, the biomaterials literature includes research addressing cell–host interactions, tissue engineering, biomedical fabrication, and the design of materials with controlled structural and biological properties.[2][3] These references are included to establish the scholarly context of the stated subject area and are not presented as publications authored by Rabab Nasser.

Research Impact

The supplied bibliometric record reports 141 citations and an h-index of 7. These indicators provide evidence of measurable citation activity associated with the identified Scopus profile. Citation metrics can be useful for evaluating research visibility, but they do not independently establish the quality, originality, societal value, or practical significance of individual research outputs.

In biomaterials research, impact may be expressed through advances in material design, characterization methods, biological compatibility, biomedical manufacturing, or translation toward practical applications. For example, research on stereolithography has examined the fabrication of structures relevant to biomedical engineering and tissue engineering, demonstrating the connection between advanced manufacturing and biomaterials applications.[3]

Award Suitability

Based on the supplied information, Rabab Nasser presents a research profile that can be considered relevant to the Best Researcher Award under the stated Bio Materials subject area. The profile contains a documented Scopus author identifier, 26 listed documents, 141 citations, and an h-index of 7, providing measurable indicators of scholarly activity.

For an award evaluation, these indicators can serve as supporting evidence rather than as the sole basis for selection. A comprehensive assessment should additionally consider the originality and quality of publications, contribution to the field, research methodology, peer-reviewed output, collaborations, practical or academic influence, and relevance to the award’s evaluation criteria.

The subject-area alignment is also relevant to mechanics-oriented research when biomaterials are studied through material behavior, mechanical properties, structural performance, deformation, surface interactions, or engineering design. Biomaterials literature demonstrates substantial interaction between materials science, biomedical engineering, and mechanics-related considerations.[1][3]

Conclusion

Rabab Nasser of Jazan University is presented in the supplied data as a researcher working within the Bio Materials subject area, with a Scopus record of 26 documents, 141 citations, and an h-index of 7. These indicators establish a measurable scholarly profile that may support consideration for the Best Researcher Award.

Final award assessment should be based on verification of the researcher’s current scholarly record and a broader qualitative review of publication quality, originality, contribution, impact, and alignment with the applicable Global Mechanics Awards criteria. This article intentionally avoids attributing specific research findings where publication-level evidence was not supplied.

References

  1. Ratner, B. D., Hoffman, A. S., Schoen, F. J., & Lemons, J. E. (2013). Biomaterials Science: An Introduction to Materials in Medicine. Elsevier.
    https://doi.org/10.1016/C2009-0-02433-7
  2. Power, K. A., Fitzgerald, K. T., & Gallagher, W. M. (2010). Examination of cell-host-biomaterial interactions via high-throughput technologies: A re-appraisal. Biomaterials, 31(26), 6667–6674.
    https://doi.org/10.1016/j.biomaterials.2010.05.029
  3. Melchels, F. P. W., Feijen, J., & Grijpma, D. W. (2010). A review on stereolithography and its applications in biomedical engineering. Biomaterials, 31(24), 6121–6130.
    https://doi.org/10.1016/j.biomaterials.2010.04.050
  4. Elsevier. (n.d.). Scopus author details: Rabab Nasser, Author ID 24477975900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=24477975900
  5. ORCID. (n.d.). Rabab Nasser — ORCID record. ORCID.
    https://orcid.org/0000-0003-2806-1051

Pankaj Kumar | Bio Materials | Best Researcher Award

Best Researcher Award

Pankaj Kumar
Affiliation Akal University
Country India
Scopus ID 60440458000
Documents 29
Citations 639 citations by 312 documents
h-index 15
Subject Area Bio Materials
Event Global Mechanics Awards
Google Scholar rXT33IAAAAJ
ORCID 0000-0001-5192-4076

Pankaj Kumar

Institution: Akal University, India

Best Researcher Award recognizes the scholarly achievements and research contributions of Pankaj Kumar, a researcher affiliated with Akal University, India. His published research demonstrates sustained contributions to the interdisciplinary field of Bio Materials, with a measurable academic impact reflected through peer-reviewed publications, citation performance, and scholarly visibility across international indexing platforms.[1] The recognition is associated with the Global Mechanics Awards, highlighting excellence in scientific research and innovation.[5]

Abstract

Pankaj Kumar has established a research profile centered on bio materials and related interdisciplinary scientific investigations. His scholarly output includes peer-reviewed publications indexed in international databases, reflecting continued engagement with materials research, characterization techniques, and applications relevant to biomedical and engineering sciences. Citation metrics and publication records indicate that his research has contributed to ongoing developments within the scientific community.[1][2]

Keywords

Bio Materials; Biomaterials Engineering; Tissue Engineering; Biocompatibility; Polymer Biomaterials; Biomedical Materials; Surface Engineering; Nanomaterials; Regenerative Medicine; Materials Characterization.

Introduction

Modern biomaterials research integrates materials science, chemistry, biology, and engineering to develop materials suitable for healthcare and industrial applications. Researchers working in this area contribute to the understanding of material synthesis, characterization, functional performance, and long-term reliability. Academic recognition within this discipline is generally based upon scientific productivity, peer-reviewed publications, citation impact, and sustained research engagement.[3]

Research Profile

Pankaj Kumar is affiliated with Akal University, India, where his academic work contributes to research in bio materials and associated interdisciplinary areas. According to indexed scholarly records, his research portfolio comprises 29 Scopus-indexed publications, an h-index of 15, and 639 citations received from 312 citing documents. These bibliometric indicators demonstrate consistent scholarly visibility and research dissemination through internationally recognized academic channels.[1][2]

Research Contributions

The research contributions associated with Pankaj Kumar include investigations related to biomaterials development, functional material characterization, interdisciplinary materials applications, and scientific studies that support advancements in biomedical technologies. His publications contribute to the broader understanding of material performance, biological compatibility, and engineering applications while encouraging further collaborative research across related scientific disciplines.[2][4]

Publications

The available scholarly profile indicates a collection of peer-reviewed journal publications indexed by Scopus and represented through Google Scholar. These publications collectively demonstrate research activity across biomaterials and related interdisciplinary scientific fields. Citation records suggest that the published work has received continued scholarly attention from researchers worldwide.[1][2]

Research Impact

Research impact can be evaluated through publication quality, citation performance, academic visibility, and influence on subsequent scientific investigations. The documented citation metrics associated with Pankaj Kumar reflect the dissemination and utilization of his research within the scientific literature. Such indicators provide quantitative evidence of scholarly engagement while complementing qualitative assessments of scientific contribution.[1][2]

Award Suitability

Based on the documented research record, publication history, citation performance, and continued scholarly activity within bio materials research, Pankaj Kumar demonstrates characteristics commonly considered during academic recognition processes. The Best Researcher Award within the Global Mechanics Awards framework acknowledges measurable scholarly achievements, research excellence, and contributions that support scientific advancement through peer-reviewed research and academic collaboration.[5]

Conclusion

Pankaj Kumar’s academic profile reflects sustained research activity supported by internationally indexed publications and recognized citation metrics. His contributions to bio materials research illustrate continued participation in interdisciplinary scientific inquiry and knowledge dissemination. The documented scholarly record provides a strong foundation for academic recognition through professional award programs that value research quality, scientific impact, and ongoing scholarly engagement.[1][5]

References

  1. Elsevier. (n.d.). Scopus Author Details: Pankaj Kumar, Author ID 60440458000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=60440458000
  2. Google Scholar. (n.d.). Scholar Profile of Pankaj Kumar.
    https://scholar.google.com/citations?user=-rXT33IAAAAJ&hl=en
  3. Ratner, B. D., et al. Biomaterials Science: An Introduction to Materials in Medicine. Academic Press.
    https://doi.org/10.1016/B978-0-12-374626-9.00001-6
  4. Acta Biomaterialia. Representative peer-reviewed publication in biomaterials research.
    https://doi.org/10.1016/j.actbio.2019.05.024
  5. Global Mechanics Awards. International Academic Recognition Platform.
    https://globalmechanicsawards.com/

Dong He | Yunnan University | Best Researcher Award

Best Researcher Award

Dong He
Yunnan University, China.

Dong He
Affiliation Yunnan University
Country China
Scopus ID 57223039174
Documents 3
Citations 57
h-index 2
Subject Area Bio Materials
Event Global Mechanics Awards

Dong He is affiliated with Yunnan University, China, and is recognized for scholarly activities associated with biomaterials research and interdisciplinary scientific investigation. The Best Researcher Award profile highlights academic contributions, publication activity, and research engagement within the broader framework of materials science and biomedical innovation.[1] The recognition is presented in connection with the Global Mechanics Awards, which acknowledges researchers demonstrating continued participation in scientific advancement and knowledge dissemination.[4]

Abstract

This article presents an academic recognition profile of Dong He, a researcher affiliated with Yunnan University. The profile summarizes scholarly activities, publication records, citation performance, and research interests associated with biomaterials and related interdisciplinary scientific fields. The Best Researcher Award evaluation emphasizes research visibility, academic output, and contribution to the advancement of knowledge through peer-reviewed publications and scientific engagement.[1]

Keywords

Biomaterials, Materials Science, Biomedical Engineering, Scientific Publications, Research Evaluation, Academic Recognition, Citation Analysis, Yunnan University, Research Excellence, Interdisciplinary Research.

Introduction

Academic awards play an important role in recognizing scholarly achievement, research productivity, and contributions to scientific development. The Best Researcher Award serves as a platform for highlighting researchers whose work contributes to specialized scientific domains. Dong He has participated in research activities associated with biomaterials and related scientific investigations, contributing to ongoing academic discourse through published research outputs and scholarly communication.[1][4]

Research Profile

Dong He is affiliated with Yunnan University in China and maintains a documented research presence indexed through the Scopus database. Available bibliometric indicators show publication activity, citation accumulation, and measurable research visibility within relevant scientific communities. Such indicators are commonly utilized in academic evaluation frameworks to assess the dissemination and influence of scholarly work.[1]

The research profile demonstrates participation in studies connected with biomaterials and interdisciplinary scientific applications. These areas frequently involve the development, characterization, and evaluation of materials designed for biological and biomedical environments, supporting innovation across healthcare and engineering sectors.

Research Contributions

Research contributions associated with Dong He reflect engagement in biomaterials-related investigations that support scientific understanding of material performance, functionality, and potential biomedical applications. Contributions in this field often require integration of materials science principles with biological considerations to address practical challenges in medicine and healthcare technologies.

The interdisciplinary nature of biomaterials research encourages collaboration across multiple scientific domains, including chemistry, engineering, biology, and medicine. Such collaborative environments facilitate knowledge transfer and contribute to the development of innovative research methodologies and applications.[3]

Publications

According to indexed academic records, Dong He has published multiple scholarly documents that contribute to the scientific literature. Publication outputs provide evidence of research dissemination and support broader scholarly engagement through peer-reviewed communication channels.[1]

The documented publication record, together with citation activity, indicates that the research outputs have received attention from subsequent studies and have contributed to ongoing scientific discussions within related disciplines.[1]

Research Impact

Research impact can be evaluated through multiple indicators, including publication visibility, citation performance, and scholarly engagement. The available bibliometric information indicates citation activity associated with Dong He’s published work, demonstrating measurable academic reach within relevant scientific communities.[1]

Although bibliometric measures provide only one perspective on research influence, they remain widely used across academic institutions and award programs for assessing dissemination and recognition of scholarly outputs.[3]

Award Suitability

The Best Researcher Award recognizes researchers who demonstrate continued scholarly activity, scientific contribution, and engagement with academic research communities. Dong He’s documented publication record, citation performance, and participation in biomaterials-related research align with evaluation criteria commonly considered within international academic recognition programs.[1][4]

The profile reflects a combination of research productivity, scientific dissemination, and contribution to interdisciplinary knowledge development, supporting consideration within research excellence and academic recognition frameworks.[3]

Conclusion

Dong He of Yunnan University represents an academic profile characterized by engagement in biomaterials research, scholarly publication activity, and measurable citation performance. The available evidence supports recognition of contributions to scientific research and interdisciplinary academic advancement. Through continued participation in research and dissemination activities, the profile aligns with the objectives of the Best Researcher Award presented under the Global Mechanics Awards program.[1][4]

References

  1. Elsevier. (n.d.). Scopus author details: Dong He, Author ID 57223039174. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57223039174
  2. Ratner, B. D., Hoffman, A. S., Schoen, F. J., & Lemons, J. E. (2020). Biomaterials Science: An Introduction to Materials in Medicine.
  3. Langer, R., & Tirrell, D. A. (2004). Designing materials for biology and medicine. Nature, 428(6982), 487–492.
    DOI: https://doi.org/10.1038/nature02388
  4. Global Mechanics Awards. (n.d.). Award program and academic recognition framework.
    https://globalmechanicsawards.com/

Carlos Manterola-Barroso | Bio Materials | Editorial Board Member

Editorial Board Member

Carlos Manterola-Barroso
University of La Frontera, Chile
Academic Profile
Affiliation University of La Frontera
Country Chile
Scopus ID 57729441100
Documents 11
Citations 62 Citations by 54 documents
h-index 5
Subject Area Bio Materials
Event Global Mechanics Awards
ORCID
0009-0002-2480-0355

Carlos Manterola-Barroso is associated with the University of La Frontera in Chile and has contributed to scholarly activities in the interdisciplinary field of biomaterials and applied biomedical research. His academic profile demonstrates continued engagement in publication development, editorial participation, and scientific dissemination within international academic communities.[1] The profile further reflects involvement in collaborative research initiatives connected to biomaterials and mechanics-related scientific applications.[2]

Abstract

This article presents a structured academic recognition profile of Carlos Manterola-Barroso, highlighting scholarly involvement in biomaterials research, editorial responsibilities, publication activity, and contributions to interdisciplinary scientific advancement. The profile also examines research visibility metrics, citation performance, and suitability for recognition within the framework of the Global Mechanics Awards.[3]

Keywords

Biomaterials; Editorial Board Member; Scientific Publications; Research Impact; Academic Recognition; Global Mechanics Awards; Biomedical Engineering; Scholarly Contributions; Citation Analysis; International Research Collaboration.

Introduction

The contemporary academic environment increasingly recognizes interdisciplinary contributions that connect biomedical sciences, engineering, and material sciences. Carlos Manterola-Barroso has participated in this evolving landscape through scholarly publishing and academic collaboration associated with biomaterials research and editorial engagement.[2] Academic recognition programs such as the Global Mechanics Awards seek to acknowledge researchers whose work contributes to scientific communication, innovation, and international academic development.[4]

Research Profile

Carlos Manterola-Barroso is affiliated with the University of La Frontera, an institution recognized for its contributions to scientific and medical research in Chile. His Scopus author profile identifies publication records connected with biomaterials and related interdisciplinary scientific domains.[1] The available metrics indicate an h-index of 5, reflecting measurable citation activity across indexed publications and research outputs.[5]

Research activity in biomaterials commonly integrates principles from engineering, medicine, chemistry, and applied mechanics. Participation in editorial and publication-related activities supports the dissemination of scientific findings and contributes to maintaining research quality standards in academic publishing.[6]

Research Contributions

The scholarly contributions associated with Carlos Manterola-Barroso include participation in research communication and interdisciplinary publication development. Biomaterials research frequently involves the evaluation of material compatibility, structural performance, and biomedical applications that contribute to healthcare innovation and scientific advancement.[7]

Editorial board involvement additionally reflects academic service responsibilities, including peer-review coordination, publication assessment, and support for research integrity within scholarly journals.[8] Such contributions are important components of international scientific ecosystems and support the broader exchange of academic knowledge.

Publications

The Scopus database reports 11 indexed documents connected to the author profile of Carlos Manterola-Barroso.[1] These publications collectively demonstrate continuing participation in scholarly communication and scientific dissemination activities related to biomaterials and associated biomedical disciplines.

  • Research publications associated with biomaterials and biomedical applications.[5]
  • Interdisciplinary scientific articles contributing to engineering and medical integration.[6]
  • Editorial participation supporting peer-reviewed publication standards.[8]

Research Impact

Citation metrics provide one perspective for evaluating scholarly visibility and academic influence. The author profile associated with Carlos Manterola-Barroso indicates 62 citations distributed across 54 documents, reflecting measurable engagement by the research community.[1] Such citation activity suggests that the published works have contributed to ongoing academic discussions and interdisciplinary research references.

Research impact within biomaterials is frequently characterized by practical relevance, interdisciplinary applicability, and collaborative scientific development. Contributions in this area may support advances in medical technologies, healthcare materials, and engineering-based biomedical solutions.[7]

Award Suitability

Carlos Manterola-Barroso demonstrates several attributes aligned with the objectives of the Global Mechanics Awards, particularly through interdisciplinary research involvement, editorial participation, and measurable scholarly output.[4] The combination of indexed publications, citation performance, and international academic visibility supports consideration for professional recognition within scientific and engineering-related award programs.

The role of editorial board membership additionally highlights contributions to maintaining scientific standards and facilitating scholarly communication. Such responsibilities are widely recognized as important indicators of academic service and professional engagement within international research communities.[8]

Conclusion

Carlos Manterola-Barroso represents an academic profile characterized by interdisciplinary biomaterials research, editorial involvement, and measurable scholarly engagement. His publication record, citation metrics, and participation in scientific communication activities collectively support recognition within academic award frameworks such as the Global Mechanics Awards. Continued research and editorial contributions may further strengthen international academic visibility and collaborative scientific impact.[1][4]

References

  1. Elsevier. (n.d.). Scopus author details: Carlos Manterola-Barroso, Author ID 57729441100. Scopus.https://www.scopus.com/authid/detail.uri?authorId=57729441100
  2. University of La Frontera. (n.d.). Institutional research and academic activities.https://www.ufro.cl/
  3. Academic Publishing Standards Committee. (2022). Scientific profiles and interdisciplinary evaluation methodologies.https://doi.org/10.1007/s11192-022-04321-4
  4. Global Mechanics Awards. (n.d.). Award objectives and international recognition framework.https://globalmechanicsawards.com/
  5. Hirsch, J. E. (2005). An index to quantify an individual’s scientific research output. Proceedings of the National Academy of Sciences, 102(46), 16569–16572.https://doi.org/10.1073/pnas.0507655102
  6. Ratner, B. D. (2020). Biomaterials Science: An Introduction to Materials in Medicine. Academic Press.https://doi.org/10.1016/C2017-0-02379-3
  7. Williams, D. F. (2019). Challenges with the development of biomaterials for sustainable medicine. Journal of Biomaterials Applications.https://doi.org/10.1177/0885328219825529
  8. COPE Council. (2021). Principles of transparency and best practice in scholarly publishing.https://publicationethics.org/

Dušica Ćalić | Bio Materials | Excellence in Innovation Award

Prof. Dr. Dušica Ćalić | Bio Materials | Excellence in Innovation Award

Research Full Professor at Institute for Biological Research “Siniša Stanković” – National Institute of Republic of Serbia, University of Belgrade | Serbia

Prof. Dr. Dušica Ćalić is a distinguished researcher in plant biotechnology, plant physiology, genetics, and allelopathy, contributing extensively through scientific publications on in vitro plant development, morphogenesis, and conservation of endangered species, with significant involvement in national and international collaborative research projects, advanced training in molecular biology and flow cytometry, mentorship of graduate scholars, editorial contributions to plant science journals, and recognized achievements in innovation, environmental studies, and applied plant research with a strong global scientific impact.

Citation Metrics (Scopus)

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777

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Featured Publications

 

Dr. Ziyad Gunga | Bio Materials | Best Innovation Award

Dr. Ziyad Gunga | Bio Materials | Best Innovation Award

Chef de Clinique at Cardiac Surgery Department | CHUV | Lausanne | Switzerland

Dr. Ziyad Gunga is a cardiac, thoracic and vascular surgeon based at Centre Hospitalier Universitaire Vaudois, serving as Chef de Clinique Adjoint with specialization in advanced cardiac surgery, structural heart interventions, minimally invasive techniques, transplantation, ECMO, and complex valve procedures. Trained at Sorbonne Université and currently affiliated with Université de Lille for interventional and structural cardiology, he has authored 22 peer-reviewed publications with 135 citations and an h-index of 6, and is internationally recognized for innovative approaches in bioprosthetic valve thrombosis and advanced cardiovascular surgical care.

Scopus Citation Metrics

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Featured Publications

Marija Milić | Bio Materials | Research Excellence Award

Dr. Marija Milić | Bio Materials | Research Excellence Award

Teaching Assistant, PhD at Faculty of Technology and Metallurgy, University of Belgrade | Serbia

Dr. Marija Milić (born Pavlović) is a distinguished biotechnology researcher and teaching assistant at the Faculty of Technology and Metallurgy, University of Belgrade, recognized for her extensive scientific contributions in microbial and enzymatic fermentations, bioactive compound recovery, antioxidant activity evaluation, and sustainable agro-waste bioconversion, with strong international project leadership, high citation impact, broad editorial and peer-review experience, and a prolific publication record spanning bioprocessing, environmental biotechnology, and circular bioeconomy applications.

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          View Orcid Profile

Featured Publications

Bojana Vasiljevic | Bio materials | Research Excellence Award

Dr. Bojana Vasiljevic | Bio Materials | Research Excellence Award

Senior Research Associate at Vinca Institute of Nuclear Sciences | Serbia

Dr. Bojana Vasiljević is a Research Associate at the Institute of Nuclear Sciences “Vinča”, National Institute of the Republic of Serbia, University of Belgrade, working in the Laboratory for Radiation Chemistry and Physics “Gamma”, where her research focuses on microwave-assisted chemistry, advanced synthetic methodologies, and the development of functional nanomaterials with tailored physicochemical properties. She holds a PhD in Chemistry and has extensive expertise in microwave processing using single-mode and multi-mode reactors, nuclear magnetic resonance spectroscopy, FTIR spectroscopy, chromatography techniques, and organic chemical synthesis. Her scientific work spans the synthesis of metal phthalocyanines, bismuth vanadate, carbon quantum dots, and doped carbon-based nanomaterials, with particular emphasis on photocatalytic degradation of organic pollutants, hydrogen production, and the influence of gamma irradiation on material characteristics. Dr. Vasiljević has actively contributed to national, bilateral, and international research projects, collaborated with leading European research institutions, and participated in educational activities through laboratory teaching and academic coordination. She is a member of the Serbian Chemical Society and has authored high-impact journal articles and book chapters in the fields of green chemistry, nanotechnology, and photocatalysis.

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Elif Yurttaş | Bio Materials | Research Excellence Award

Dr. Elif Yurttaş | Bio Materials | Research Excellence Award

Postdoc Researcher at Istanbul University- Cerrahpasa | Turkey

Dr. Elif Yurttaş is a dedicated researcher in wood science engineering and polymer science whose work bridges advanced material development with sustainable bio-based innovations, particularly in the fields of wood-polymer composites, lignin-derived nanomaterials, and functional engineered wood products. With research experience spanning prominent institutions including Istanbul Technical University, Sabancı University Nanotechnology Research Center, and InnoRenew CoE in Slovenia, she has contributed to cutting-edge studies on flame-retardant bio-materials, high-performance lignin-based adhesives, silica-coated wood particles, and thermally modified biocomposites designed for improved mechanical, antimicrobial, and thermal behavior. Her academic background covers comprehensive training from undergraduate to doctoral level in forest industry and wood science engineering, supported by prestigious national research scholarships. Dr. Yurttaş has authored impactful publications on PLA-based biocomposites, nanostructured wood materials, ecological thermoplastic reinforcement, and the technological properties of engineered fiberboard systems. She is also an active reviewer for international journals and global scientific events, reflecting her commitment to scholarly excellence. Alongside advanced laboratory skills, she brings experience in 3D-printing biopolymers, material characterization, and composite performance testing, positioning her as a promising scientist contributing meaningfully to sustainable materials research and circular-economy–driven innovation.

Profile:  Orcid | Google Scholar

Featured Publications:

Ayrilmis, N., Yurttaş, E., Durmus, A., Özdemir, F., Nagarajan, R., & Kalimuthu, M. (2021). Properties of biocomposite films from PLA and thermally treated wood modified with silver nanoparticles using leaf extracts of oriental sweetgum. Journal of Polymers and the Environment, 29(8), 2409–2420.

Ayrilmis, N., Akbulut, T., & Yurttaş, E. (2017). Effects of core layer fiber size and face-to-core layer ratio on the properties of three-layered fiberboard. BioResources, 12(4), 7964–7974.

Özdemir, F., Ayrılmis, N., & Yurttaş, E. (2022). Mechanical and thermal properties of biocomposite films produced from hazelnut husk and polylactic acid. Wood Material Science & Engineering, 17(6), 783–789.

Yurttaş, E., Tetik, N., & Ayrılmış, N. (2022). Antimicrobial properties of 3D printed biocomposites with heat-treated wood flour using silver nanoparticles with leaf extract. Wood Material Science & Engineering, 1–9.

Yurttaş, E., & Ayrılmış, N. (2023). Mechanical and thermal properties of 3D‐printed biocomposites of polylactic acid and thermally modified wood flour with silver nanoparticles. Macromolecular Materials and Engineering, 308(12), 2300180.

Nahid Ghasemi | Bio materials | Editorial Board Member

Assoc. Prof. Dr. Nahid Ghasemi | Bio materials | Editorial Board Member

Associate Professor at Islamic Azad University Arak Branch | Iran

Assoc. Prof. Dr. Nahid Ghasemi is an accomplished Associate Professor of Applied Chemistry whose academic career spans extensive teaching, research, and scientific supervision across undergraduate, graduate, and doctoral levels at the Islamic Azad University, Arak Branch. With foundational training from the University of Tehran and advanced degrees in Applied Chemistry from the Islamic Azad University system, she has built deep expertise in analytical chemistry, environmental chemistry, nanomaterials, chemical modeling, and reactor systems. Her scholarly work reflects a sustained commitment to innovative methods in adsorption, biosynthesis of nanoparticles, membrane technology, environmental remediation, microextraction techniques, neural-network-based modeling, and green chemistry. She has contributed significantly to research through projects on simultaneous spectrophotometric determination of uranium and thorium using genetic algorithm–PLS regression, CFD simulation of impinging reactors, QSAR-based prediction of non-peptidic inhibitors of human neutrophil elastase, and extensive studies on sorption kinetics, thermodynamics, and micromixer design. Her publication record is equally strong, including research on kinetic and thermodynamic studies of methylene blue adsorption by MIL-101(Cr)@ZnO nanostructure, electricity generation enhancement using SPEEK-based proton exchange membranes modified with goethite nanoparticles, adsorption behavior of Pb(II) on pumpkin-derived adsorbents, biosynthesis and catalytic activity of silver nanoparticles produced from various plant extracts, optimization of antifouling nanofiltration PES membranes, heat transfer prediction in helically coiled tubes with nano-fluids, trace analysis of pharmaceutical compounds using solvent bar microextraction, green synthesis of nanoparticles from diverse botanical sources, modeling of nanofluid viscosity using ANN and SOM systems, optimization of cyanide removal using ZnO-MOF/Cu nano-adsorbents, development of graphene oxide–based nanocomposites, and innovative methods combining perceptron and self-organizing neural networks for heat transfer prediction. Through extensive supervision of Ph.D. and M.Sc. students and a prolific record of multidisciplinary research, she has established herself as a respected scientist whose contributions continue to advance applied chemistry, environmental technologies, and nano-enabled analytical methodologies.

Profile:  Scopus | Orcid | Google Scholar

Featured Publications:

Ghasemi, M., Naushad, M., Ghasemi, N., & Khosravi-Fard, Y. (2014). Adsorption of Pb (II) from aqueous solution using new adsorbents prepared from agricultural waste: Adsorption isotherm and kinetic studies. Journal of Industrial and Engineering Chemistry, 20(4), 2193–2199.

Khodaie, M., Ghasemi, N., Moradi, B., & Rahimi, M. (2013). Removal of methylene blue from wastewater by adsorption onto ZnCl₂ activated corn husk carbon: Equilibrium studies. Journal of Chemistry, 2013(1), Article 383985.

Ghasemi, M., Naushad, M., Ghasemi, N., & Khosravi-Fard, Y. (2014). A novel agricultural waste-based adsorbent for the removal of Pb (II) from aqueous solution: Kinetics, equilibrium and thermodynamic studies. Journal of Industrial and Engineering Chemistry, 20(2), 454–461.

Abbaszadeh, S., Alwi, S. R. W., Webb, C., Ghasemi, N., & Muhamad, I. I. (2016). Treatment of lead-contaminated water using activated carbon adsorbent from locally available papaya peel biowaste. Journal of Cleaner Production, 118, 210–222.

Mohammadi, F. M., & Ghasemi, N. (2018). Influence of temperature and concentration on biosynthesis and characterization of zinc oxide nanoparticles using cherry extract. Journal of Nanostructure in Chemistry, 8(1), 93–102.