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Digitalisation and green strategies: a systematic review of the textile, apparel and fashion industries. (2025)
Journal Article
ORISADARE, E.A., ACHUKWU, O.E., OGUNYEMI, A.A., ADEDEJI, D.O., DIYAOLU, I.J., UGWU, E.I., OLUWATOPE, A.O., BAKARE, K.O. and AWOYELU, I.O. [2025]. Digitalisation and green strategies: a systematic review of the textile, apparel and fashion industries. Circular economy and sustainability [online], Online First. Available from: https://doi.org/10.1007/s43615-025-00555-x

The textile, apparel, and fashion (TAF) industries are vital to national economies, providing employment and fostering global economic development. On the other hand, TAF industries contribute to approximately 20% of global pollution. The rise of Ind... Read More about Digitalisation and green strategies: a systematic review of the textile, apparel and fashion industries..

Dynamic mechanical properties and corrosion resistance of epoxy coatings enhanced with MXene and diverse nano-fillers. (2025)
Journal Article
SAHARUDIN, M.S., NASIR, N.A.C., JANJUA, A.A., OKECHUKWU, A.E., HAQUE, N.F. and AHMAD, E.Z. 2025. Dynamic mechanical properties and corrosion resistance of epoxy coatings enhanced with MXene and diverse nano-fillers. Solid state phenomena [online], 370, pages 25-32. Available from: https://doi.org/10.4028/p-2F2Syv

This comparative study explored the dynamic mechanical characteristics and resistance to corrosion of four distinct nanofillers; MXenes, Graphene Nanoplatelets (GNPs), Carbon Nanotubes (CNTs), and Halloysite Nanotubes (HNTs) within epoxy composites a... Read More about Dynamic mechanical properties and corrosion resistance of epoxy coatings enhanced with MXene and diverse nano-fillers..

Enhancing epoxy polymer composites with MXene nanosheets for improved thermal performance. (2025)
Journal Article
JANJUA, A.A., SAHARUDIN, M.S., OKECHUKWU, A.E., YOUNAS, M. and FAISAL, N. 2025. Enhancing epoxy polymer composites with MXene nanosheets for improved thermal performance. Journal of nano research [online] 87, pages 101-109. Available from: https://doi.org/10.4028/p-OAqN4d

Thermosetting epoxy polymers are widely employed as matrices for fabricating fibre-reinforced composites due to their exceptional strength and stiffness. However, the inherent brittleness of epoxy and its generally low fracture toughness impose limit... Read More about Enhancing epoxy polymer composites with MXene nanosheets for improved thermal performance..

Composites techniques optimization and finite element analysis of kenaf fiber reinforced epoxy nonwoven composite structures for renewable energy infrastructure. (2024)
Journal Article
OWEN, M.M., WONG, L.S., ACHUKWU, E.O., ROMLI, A.Z., NAZERI, M.N. and SHUIB, S. 2024. Composites techniques optimization and finite element analysis of kenaf fiber reinforced epoxy nonwoven composite structures for renewable energy infrastructure. Journal of industrial textiles [online], 54, pages 1-32. Available from: https://doi.org/10.1177/15280837241283963

In exploring the viability of kenaf fiber-reinforced epoxy nonwoven composites (KFRECs) for renewable energy infrastructure, the optimization of their manufacturing techniques for maximum performance remains a significant research gap. This study add... Read More about Composites techniques optimization and finite element analysis of kenaf fiber reinforced epoxy nonwoven composite structures for renewable energy infrastructure..

Finite element analysis of stress distribution in alkali-peroxide treated epoxy composites with various woven cotton structures. (2024)
Journal Article
OWEN, M.M., WONG, L.S., ACHUKWU, E.O., SHUIB, S. and AKIL, H.M. 2024. Finite element analysis of stress distribution in alkali-peroxide treated epoxy composites with various woven cotton structures. Journal of natural fibers [online], 21(1), article number 2434657. Available from: https://doi.org/10.1080/15440478.2024.2434657

The poor surface properties of woven epoxy-cotton composite structures have limited their use in industrial applications. Existing solutions using single treatment processes have been developed to address the challenges but have recorded appreciable... Read More about Finite element analysis of stress distribution in alkali-peroxide treated epoxy composites with various woven cotton structures..

Enhanced mechanical, thermal, and morphological properties of waste PET plastics reinforced with coated biodegradable kenaf fibers for infrastructure applications. (2024)
Journal Article
OWEN, M.M., WONG, L.S., ACHUKWU, E.O., SAHARUDIN, M.S. and AKIL, H.M. 2024. Enhanced mechanical, thermal, and morphological properties of waste PET plastics reinforced with coated biodegradable kenaf fibers for infrastructure applications. Construction and building materials [online], 442, article number 137659. Available from: https://doi.org/10.1016/j.conbuildmat.2024.137659

The surge in polyethylene terephthalate (PET) plastic bottle production has led to a rise in waste PET plastics. Recycling these waste PET plastics for infrastructural purposes offers a feasible solution to curb environmental pollution and the climat... Read More about Enhanced mechanical, thermal, and morphological properties of waste PET plastics reinforced with coated biodegradable kenaf fibers for infrastructure applications..

Mechanical and thermal characterization of resin-infused cotton fabric/epoxy composites: influence of woven construction parameters and surface treatments. (2024)
Journal Article
OWEN, M.M., WONG, L.S., ACHUKWU, E.O., ROMLI, A.Z. and SHUIB, S.B. 2024. Mechanical and thermal characterization of resin-infused cotton fabric/epoxy composites: influence of woven construction parameters and surface treatments. Journal of industrial textiles [online], 54, pages 1-30. Available from: https://doi.org/10.1177/15280837241267817

This study explores the mechanical and thermal characterization of epoxy-based composites reinforced with chemically modified woven cotton fabrics using the resin infusion technique. The woven fabrics construction parameters were varied in terms of w... Read More about Mechanical and thermal characterization of resin-infused cotton fabric/epoxy composites: influence of woven construction parameters and surface treatments..