Nazish Jabeen | Polymer-Matrix composites | Innovative Research Award

Innovative Research Award

Nazish Jabeen
Affiliation Institute of Material Science, University of Valencia
Country Spain
Scopus ID 57518368200
Documents 9
Citations 266
h-index 5
Subject Area Polymer-Matrix Composites
Event Global Composite Awards
ORCID 0000-0002-6861-7766

Nazish Jabeen

Institution: Institute of Material Science, University of Valencia, Spain

The Innovative Research Award recognizes scholarly excellence and sustained scientific contributions in advanced composite materials and polymer engineering. Nazish Jabeen has established a research profile centered on polymer-matrix composites, multifunctional nanocomposites, sustainable materials engineering, and advanced material characterization. Her work contributes to improving material performance, structural functionality, and engineering applications through interdisciplinary research involving polymer science, nanotechnology, and composite manufacturing.[1]

Abstract

Nazish Jabeen conducts research focused on polymer-matrix composites, multifunctional nanocomposite systems, sustainable materials, and advanced manufacturing technologies. Her investigations examine the relationships between composition, processing, microstructure, and material performance while supporting applications in structural engineering, energy technologies, environmental sustainability, and functional materials. The integration of polymer science with nanotechnology contributes to the development of lightweight, durable, and multifunctional composite systems suitable for modern engineering challenges.[1]

Keywords

Polymer-Matrix Composites, Nanocomposites, Composite Engineering, Sustainable Materials, Functional Materials, Advanced Manufacturing, Materials Characterization, Polymer Science, Materials Engineering, Innovative Research

Introduction

Polymer-matrix composites have become essential materials across aerospace, automotive, construction, biomedical, and energy industries because of their favorable mechanical properties, lightweight nature, and design flexibility. Ongoing research seeks to improve durability, multifunctionality, recyclability, and environmental performance while incorporating emerging nanomaterials and sustainable processing methods. Researchers working in this field contribute to scientific understanding and technological innovation through experimental investigations and interdisciplinary collaboration.[2]

Research Profile

Nazish Jabeen’s research activities encompass polymer science, advanced composite materials, nanotechnology, multifunctional composites, and materials characterization. Her work investigates the incorporation of nanoscale reinforcements into polymer matrices to improve mechanical performance, thermal stability, electrical conductivity, and functional properties. Research efforts also include sustainable composite development, innovative processing techniques, and characterization methodologies that support both scientific advancement and industrial implementation.[1]

Research Contributions

Development of advanced polymer-matrix composite materials for engineering applications. Investigation of multifunctional nanocomposites with enhanced physical and mechanical properties. Research on sustainable composite manufacturing and environmentally responsible material systems. Evaluation of structure–property relationships using advanced characterization techniques. Contribution to interdisciplinary materials science through peer-reviewed scientific publications.

Publications

Research publications indexed in Scopus demonstrate continued contributions to polymer composites, multifunctional materials, nanotechnology, and advanced materials engineering. These scholarly works contribute to the international literature through experimental investigations, material optimization studies, and interdisciplinary collaborations.[1]

 

Research Impact

The scientific impact of Nazish Jabeen’s research is reflected through publications indexed in internationally recognized databases and research directed toward improving composite performance, sustainability, and multifunctionality. Her work supports continued innovation in polymer engineering while contributing knowledge applicable to industrial manufacturing, materials development, and future composite technologies.[1]

Award Suitability

Based on documented scholarly activity, recognized publication record, and sustained research contributions within polymer-matrix composites and advanced materials engineering, Nazish Jabeen demonstrates characteristics consistent with the objectives of the Innovative Research Award presented through the Global Composite Awards. Her interdisciplinary research portfolio illustrates continued commitment to scientific excellence, technological advancement, and international research collaboration.[1]

Conclusion

Nazish Jabeen has developed an academic profile focused on polymer-matrix composites, multifunctional materials, and sustainable engineering solutions. Her research integrates materials science, nanotechnology, and polymer engineering to address contemporary scientific challenges while contributing to internationally recognized research outputs. These activities collectively support consideration for academic recognition within the field of advanced composite materials.[1]

References

  1. Elsevier. (2026). Scopus author details: Nazish Jabeen, Author ID 57518368200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57518368200
  2. DOI Foundation. Representative publication related to advanced polymer composite materials.
    https://doi.org/10.1016/j.compositesa.2020.106161
  3. Global Composite Awards. Official Award Website.
    https://globalcompositeawards.com/

Corina Carranca | Polymer-Matrix Composites | Best Innovator Award

Best Innovator Award

Corina Carranca
National Institute for Agrarian and Veterinary Research, Portugal
Corina Carranca
Affiliation National Institute for Agrarian and Veterinary Research
Country Portugal
Scopus ID 6508325751
Documents 49
Citations 1,134
h-index 18
Subject Area Polymer-Matrix Composites
Event Global Composite Awards
ORCID 0000-0003-2451-8704

The Best Innovator Award is a scholarly recognition profile highlighting the academic and research achievements of Corina Carranca, a researcher affiliated with the National Institute for Agrarian and Veterinary Research in Portugal. The profile emphasizes contributions to polymer-matrix composites and related scientific disciplines, reflecting a publication record, citation impact, and sustained engagement in research activities. Metrics reported through major scholarly databases indicate an established academic presence and influence within the research community.[1]

Abstract

This article presents an academic overview of Corina Carranca and evaluates her suitability for recognition through the Best Innovator Award at the Global Composite Awards. The assessment is based on publicly available scholarly indicators, publication productivity, citation performance, and research relevance within polymer-matrix composites. The profile demonstrates consistent scientific engagement and measurable research impact supported by peer-reviewed publications and citation metrics.[1][2]

Keywords

Corina Carranca, Polymer-Matrix Composites, Composite Materials Research, Innovation Recognition, Scientific Publications, Citation Impact, Research Excellence, Global Composite Awards, Materials Science, Academic Achievement.

Introduction

Innovation in composite materials research plays a significant role in advancing engineering performance, sustainability, and material functionality. Researchers contributing to polymer-matrix composites support developments across industrial, agricultural, and technological applications. Scholarly recognition programs such as the Global Composite Awards acknowledge individuals whose research activities demonstrate measurable influence and sustained scientific value.[2]

Research Profile

Corina Carranca is affiliated with the National Institute for Agrarian and Veterinary Research in Portugal. According to Scopus-authorized metrics, the researcher has produced 49 indexed documents, accumulated 1,134 citations, and achieved an h-index of 18. These indicators suggest consistent academic engagement and a research record that has received attention from the wider scientific community.[1]

Research Contributions

The research contributions associated with Corina Carranca include studies relevant to materials performance, composite-related applications, and scientific methodologies supporting innovation in polymer-based systems. Published work contributes to the body of knowledge used by researchers, engineers, and industry stakeholders interested in material optimization and functional performance improvements.[3]

Publications

The researcher’s publication record reflects ongoing scholarly productivity. Indexed publications contribute to citation accumulation and support the dissemination of findings across the international scientific community. The availability of peer-reviewed outputs in recognized databases provides evidence of research visibility and academic engagement.[1]

Research Impact

Research impact can be assessed through publication quality, citation performance, and influence on subsequent investigations. With 1,134 citations and an h-index of 18, the available metrics indicate that multiple publications have been referenced by other researchers, reflecting scholarly relevance and sustained academic visibility.[1]

Award Suitability

Based on the available research metrics and publication record, Corina Carranca demonstrates characteristics commonly associated with candidates for innovation-focused academic recognition. The combination of scholarly productivity, citation impact, and subject-area specialization in polymer-matrix composites aligns with the objectives of the Global Composite Awards. Evaluation by award committees would typically consider research originality, scientific influence, and contribution to advancing the field.[1][2]

Conclusion

Corina Carranca’s academic profile reflects sustained research activity, measurable scholarly impact, and engagement with topics relevant to polymer-matrix composites. The available evidence supports consideration for innovation-oriented recognition programs and highlights the significance of continued contributions to materials science and composite research. The Best Innovator Award profile serves as a structured overview of these achievements and their broader academic relevance.[1]

References

  1. Elsevier. (2026). Scopus author details: Corina Carranca, Author ID 6508325751. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6508325751
  2. Global Composite Awards. (2026). Award program information and evaluation framework.
    https://globalcompositeawards.com/
  3. Academic DOI Reference. (2020). Composite materials research and innovation studies.
    https://doi.org/10.1016/j.compositesa.2020.105989

Dibyendu Sekhar Bag | Polymer-Matrix composites | Outstanding Scientist Award

Dr. Dibyendu Sekhar Bag | Polymer-Matrix composites | Outstanding Scientist Award

DOCTORATE at Defence Materials and Stores Research and Development Establishment (DMSRDE), DRDO, India

Dr. Dibyendu Sekhar Bag is a distinguished Scientist-‘G’/Additional Director at the Defence Materials & Stores Research & Development Establishment (DMSRDE), DRDO, Ministry of Defence, Government of India. He is a leading expert in polymer science and materials technology, with over two decades of experience in defence R&D. Dr. Bag has made substantial contributions to national programs, including polymer science, stealth technology, and high-temperature materials for aerospace applications. His work has been recognized with multiple prestigious awards and fellowships.

Profile

ORCID Profile 

Scopus Profile

 

Author Metrics

Dr. Bag has an extensive research profile with 81 publications in journals and 117 conference papers. He holds 11 patents and has contributed to 6 book chapters and 1 edited book. He has produced 4 Ph.D. graduates and evaluated 12 Ph.D. theses. His contributions include 20 technical reports, 90 invited talks, and 11 technology transfers. His research impact is further demonstrated through his involvement in 31 projects and ongoing collaboration on 10 major projects.

Education

Dr. Bag completed his Ph.D. in Polymer Science from the Indian Institute of Technology (IIT), Kharagpur, in 1996. Prior to that, he earned an M.Sc. in Chemistry from IIT Kharagpur in 1992, with a CGPA of 9.16 out of 10. His B.Sc. (Hons) in Chemistry was obtained from Burdwan University in 1989, where he achieved a Second Division. He completed his Higher Secondary (HS) and Madhyamik (Class 10) from West Bengal, securing First Division in both.

Research Focus

Dr. Bag’s research focuses on advanced polymeric materials, including functional and smart polymers, conducting polymers, and multifunctional hybrid materials. His expertise extends to high-performance thermoplastics, elastomers, and composite materials for various applications, including stealth technology and aerospace. His work on carbon nanomaterials and their composites further highlights his specialization in cutting-edge materials science.

Professional Journey

Dr. Bag began his career in industrial R&D at Ahmedabad Textile Industry’s Research Association, followed by a teaching and research role at Birla Institute of Technology, Mesra. Since joining DMSRDE, DRDO, in 1999, he has accumulated over 24 years of experience in defence R&D, with a notable deputation as a visiting scientist at Pennsylvania State University, USA. He currently heads the Polymer Division and manages significant projects, contributing extensively to the organization’s research and development initiatives.

Honors & Awards

Dr. Bag has received several prestigious awards, including the DRDO National Science Day Gold Medal (2004) and the DRDO Laboratory Scientist of the Year (2009). He was honored with the Bharat Ratna Mother Teresa Gold Medal Award in 2020 for his contributions to global economic progress and research. Other accolades include the 10th National Award for Technology Innovation in Polymer Product (2021) and multiple recognitions for his active participation in social and professional spheres.

Publications Noted & Contributions

Dr. Bag has an impressive publication record with 81 journal articles, 117 conference papers, and several book chapters. His work encompasses a wide range of topics in polymer science and materials technology, contributing significantly to the national and international scientific community. He has also authored one book and edited three others, showcasing his broad expertise and influence in his field.

Research Timeline

  • 1983: Madhyamik (Class 10)
  • 1985: Higher Secondary (HS)
  • 1989: B.Sc. (Hons) in Chemistry
  • 1992: M.Sc. in Chemistry from IIT Kharagpur
  • 1996: Ph.D. in Polymer Science from IIT Kharagpur
  • 1999: Joined Defence Materials & Stores Research & Development Establishment (DMSRDE), DRDO
  • 2002: Deputation as DRDO Visiting Scientist at Pennsylvania State University, USA
  • 2021: Received 10th National Award for Technology Innovation in Polymer Product

Collaborations and Projects

Dr. Bag has spearheaded numerous projects in polymer science and technology, with a focus on stealth materials and high-temperature composites. His collaborative efforts include partnerships with various industrial and academic entities, contributing to national defense programs and technological advancements. He has led major projects with substantial budgets and has been involved in international exhibitions and conferences, reflecting his global engagement and leadership in research.

Publications
      1. Poly (ethylene-co-methacrylic acid) (PEMA) ionomers and their applications including self-healing and shape memory applications
        • Authors: Tiwari, S., Bag, D.S., Dwivedi, M.
        • Journal: Journal of Polymer Research
        • Year: 2024
        • Volume: 31
        • Issue: 3
        • Pages: 91
      2. Self-healing thermoplastic elastomeric blends of zinc-ionomer and styrene–butadiene–styrene block copolymer and their characterization
        • Authors: Tiwari, S., Bag, D.S., Dwivedi, M.
        • Journal: Polymer International
        • Year: 2024
        • Volume: 73
        • Issue: 3
        • Pages: 200–212
      3. Formulation and Characterization of Silane Modified Acrylic Based Transparent Organic-Inorganic Hybrid Coatings for Improved Instrumented Indentation Hardness of PMMA
        • Authors: Das, V., Singh, A.S., Singh, A., Mishra, P., Bag, D.S.
        • Journal: Silicon
        • Year: 2024
      4. High-performance PPS/PEEK blend and its composites with milled carbon fiber: Study on their mechanical, thermal and dielectric properties
        • Authors: Tiwari, S., Bag, D.S., Mishra, P., Lal, G., Dwivedi, M.
        • Journal: Polymer Composites
        • Year: 2024
      5. Preparation of semi-interpenetrating networks of phthalonitrile and polyetherimide resin: Study of their curing characteristics and thermal properties
        • Authors: Singh, A.S., Banshiwal, J.K., Mishra, P., Bag, D.S., Tripathi, D.N.
        • Journal: Journal of Thermal Analysis and Calorimetry
        • Year: 2023
        • Volume: 148
        • Issue: 10
        • Pages: 4171–4183

Strength for the Outstanding Scientist Award

  1. Significant Research Contributions: Dr. Bag’s research on advanced polymeric materials, stealth technology, and high-performance composites highlights his innovative approach and significant impact on the field.
  2. Extensive Publication Record: With 81 journal articles, 117 conference papers, and contributions to several books and chapters, his scholarly output demonstrates a strong and diverse research portfolio.
  3. Leadership in High-Impact Projects: Leading major projects like DAPT and PNM, and managing substantial budgets, reflects his expertise in driving large-scale, impactful research initiatives.
  4. Recognition and Awards: His numerous awards, including the DRDO National Science Day Gold Medal and the Bharat Ratna Mother Teresa Gold Medal, underscore his contributions to science and technology.
  5. International Collaboration: His role as a visiting scientist at Pennsylvania State University and ongoing international collaborations highlight his global engagement and influence.

Areas for Improvement

  1. Broader Citation Impact: Although Dr. Bag has an extensive publication record, increasing the citation impact of his work could enhance his visibility and influence in the scientific community.
  2. Interdisciplinary Research Expansion: Exploring interdisciplinary research areas beyond polymer science could open new avenues for innovation and application.
  3. Increased Public Engagement: Expanding efforts in public science communication and outreach could enhance the societal impact of his research.
  4. Enhancing Collaborative Networks: Strengthening collaborations with a broader range of international institutions and industries could further amplify the impact of his research.
  5. Diversified Funding Sources: Securing diverse funding sources beyond defense-related projects might foster new research opportunities and reduce dependency on a single sector.

Conclusion

Dr. Dibyendu Sekhar Bag is a distinguished scientist with a robust record of achievements in polymer science and materials technology. His substantial contributions to national and international research, combined with a notable array of awards and a strong publication record, underscore his leadership and impact in the field. While there are areas for improvement, such as increasing citation impact and expanding interdisciplinary research, Dr. Bag’s career exemplifies excellence and innovation. His ongoing projects and international collaborations position him as a key figure in advancing materials science and technology.