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Graphene and CNT‐based smart fiber‐reinforced composites: A review (2022)
Journal Article
Islam, M. H., Afroj, S., Uddin, M. A., Andreeva, D. V., Novoselov, K. S., & Karim, N. (2022). Graphene and CNT‐based smart fiber‐reinforced composites: A review. Advanced Functional Materials, 32(40), 2205723. https://doi.org/10.1002/adfm.202205723

Multifunctional fiber-reinforced polymer (FRP) composites provide an ideal platform for next-generation smart composites applications including structural health monitoring, electrical and thermal conductivity, energy storage and harvesting, and elec... Read More about Graphene and CNT‐based smart fiber‐reinforced composites: A review.

The effect of surface treatments and graphene-based modifications on mechanical properties of natural jute fiber composites: A review (2021)
Journal Article
Islam, M. H., Islam, M. R., Dulal, M., Afroj, S., & Karim, N. (2022). The effect of surface treatments and graphene-based modifications on mechanical properties of natural jute fiber composites: A review. iScience, 25(1), Article 103597. https://doi.org/10.1016/j.isci.2021.103597

Natural fiber reinforced composites (FRC) are of great interests, because of their biodegradability, recyclability, and environmental benefits over synthetic FRC. Natural jute FRC could provide an environmentally sustainable, light weight, and cost-e... Read More about The effect of surface treatments and graphene-based modifications on mechanical properties of natural jute fiber composites: A review.

Multifunctional graphene-based wearable e-textiles (2020)
Conference Proceeding
Karim, N., Afroj, S., & Islam, M. H. Multifunctional graphene-based wearable e-textiles. Manuscript submitted for publication

Wearable electronics is becoming increasingly very popular since such technology makes life safer, healthier and more comfortable. Among them, smart wearable textiles have been going through significant evolutions in recent years, through the innovat... Read More about Multifunctional graphene-based wearable e-textiles.

Pseudo-ductile Composites with Micro-wrapped Hybrid Tow (2018)
Conference Proceeding
Islam, M., Koncherry, V., Wisnom, M., & Potluri, P. (2018). Pseudo-ductile Composites with Micro-wrapped Hybrid Tow. . https://doi.org/10.12783/asc33/26126

ABSTRACT A novel dry fibre architecture has been developed in order to improve the ductility of high-performance composites. Micro-wrapping of high-modulus fibres with high strain (to failure fibres) resulted in a unique structure that is capable... Read More about Pseudo-ductile Composites with Micro-wrapped Hybrid Tow.