Rajab Abousnina | Sustainable Materials | Research Excellence Award

Dr. Rajab Abousnina | Sustainable Materials | Research Excellence Award

Lecturer | Curtin University | Australia

Dr. Rajab Abousnina is a researcher in civil and environmental engineering with a strong focus on sustainable construction materials and infrastructure technologies. His research expertise spans geopolymer concrete, waste-based materials, 3D concrete printing, composite materials, and structural health monitoring. A significant part of his work addresses carbon reduction in construction through the use of industrial by-products, alternative binders, and low-cost activators. He has led and contributed to numerous projects on oil-contaminated materials, recycled aggregates, and advanced cementitious systems, linking material innovation with durability and environmental performance. His research also extends to membrane technologies and wastewater treatment, particularly in the context of oily and produced water. With extensive experience in experimental testing, microstructural analysis, and applied engineering solutions, his work has resulted in a substantial body of high-impact journal publications and industry-focused technical reports, contributing to sustainable and resilient infrastructure development.

Citation Metrics (Scopus)

1200

800

400

0

Citations 1,041

Documents 42

h-index
19

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Featured Publications

Chaoxu Li | Green and low-carbon materials | Research Excellence Award

Prof. Chaoxu Li | Green and low-carbon materials | Research Excellence Award

JiangHan University | China

Prof. Chaoxu Li is a professor and materials scientist whose research centers on flexible intelligent materials, bio-derived nanomaterials, and green, low-carbon polymer systems. He has published over 150 peer-reviewed articles in leading journals such as Nature Nanotechnology, Advanced Materials, and Advanced Functional Materials. His work integrates liquid metals, biomass-based nanofibrils, and smart polymers to enable applications in energy harvesting, sensing, catalysis, and sustainable recycling. Widely cited for interdisciplinary innovation, Li’s publications have significantly advanced functional soft materials and bio-inspired nanotechnology, supported by major national and provincial research funding programs.

Citation Metrics (Scopus)

6000

4500

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Citations 5,697

Documents 114

h-index
38


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Top 5 Featured Publications

Biodegradable nanocomposites of amyloid fibrils and graphene with shape-memory and enzyme-sensing properties

C. Li, J. Adamcik, R. Mezzenga – Nature Nanotechnology, 2012 · 510 citations

Shapeable fibrous aerogels of metal–organic frameworks templated with nanocellulose for rapid and large-capacity adsorption

L. Zhu, L. Zong, X. Wu, M. Li, H. Wang, J. You, C. Li – ACS Nano, 2018 · 443 citations

Liquid metal droplets wrapped with polysaccharide microgel as biocompatible aqueous ink for flexible conductive devices

X. Li, M. Li, L. Zong, X. Wu, J. You, P. Du, C. Li – Advanced Functional Materials, 2018 · 296 citations

Biological nanofibrous generator for electricity harvest from moist air flow

M. Li, L. Zong, W. Yang, X. Li, J. You, X. Wu, Z. Li, C. Li – Advanced Functional Materials, 2019 · 277 citations

Evaporation-induced sintering of liquid metal droplets with biological nanofibrils for flexible conductivity and responsive actuation

X. Li, M. Li, J. Xu, J. You, Z. Yang, C. Li – Nature Communications, 2019 · 255 citations

Elias Wakshume – Industrial Design Engineering – Best Researcher Award

Mr. Elias Wakshume | Industrial Design Engineering | Best Researcher Award

Lecturer | Ethiopian Defence University | Ethiopia

Mr. Elias Wakshume has established a strong research profile in the field of mechanical and industrial design, with particular emphasis on advanced composites, structural mechanics, and finite element simulations. His work focuses on applying engineering science to develop innovative protective solutions such as fibre-reinforced composites for ballistic body armour, addressing critical needs in defence and civil safety applications. Through peer-reviewed publications in high-impact journals, including Applications in Engineering Science and the Journal of Defence Technologies, Elias has contributed valuable insights into material optimization, lightweight structures, and safety engineering. His research integrates sustainability principles with structural optimization, ensuring that protective materials meet performance requirements while minimizing environmental impact. By leveraging tools like ANSYS, SolidWorks, MATLAB, and AutoCAD, he advances simulations that validate theoretical models and guide practical implementations in real-world contexts. His expertise extends to fatigue, thermal, and structural analysis, enabling comprehensive evaluations of composite materials under complex loading conditions. Elias has also gained recognition through paper acceptance at significant conferences such as the 3rd National Research Conference on Emerging Innovation of Science and Technology for Enhancing Defence Force Capabilities, highlighting his role in advancing engineering solutions with direct national and global relevance. His professional engagements with research communities demonstrate a commitment to collaboration and knowledge sharing, reinforcing the application of mechanical design and industrial engineering to contemporary challenges in defence and environmental sectors. By focusing on sustainable engineering and protective material innovation, Elias is building pathways for future technological progress where safety, resilience, and efficiency intersect. His research demonstrates a blend of theoretical rigor and practical application, strengthening the role of composites in modern engineering while contributing to scientific discourse in protective technologies. Elias Wakshume’s efforts mark him as a growing contributor to both defence technology advancement and sustainable engineering practice.

Profiel: ORCID
Publications:
  1. Experimental and analytical study on the flexural behavior a novel steel-NC-UHPC composite bridge deck system. (2025).

  2. Experimental study on negative bending resistance of steel-NC-UHPC composite bridge deck. (2025).