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Potential Natural Fiber Polymeric Nanobiocomposites: A Review.

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TLDR
Nanobiocomposites are exhibiting a higher market volume with the expansion of new technology and green approaches for utilizing biofibers, and manufacturing methods are discussed in the context of potential application in this review.
Abstract
Composite materials reinforced with biofibers and nanomaterials are becoming considerably popular, especially for their light weight, strength, exceptional stiffness, flexural rigidity, damping property, longevity, corrosion, biodegradability, antibacterial, and fire-resistant properties. Beside the traditional thermoplastic and thermosetting polymers, nanoparticles are also receiving attention in terms of their potential to improve the functionality and mechanical performances of biocomposites. These remarkable characteristics have made nanobiocomposite materials convenient to apply in aerospace, mechanical, construction, automotive, marine, medical, packaging, and furniture industries, through providing environmental sustainability. Nanoparticles (TiO2, carbon nanotube, rGO, ZnO, and SiO2) are easily compatible with other ingredients (matrix polymer and biofibers) and can thus form nanobiocomposites. Nanobiocomposites are exhibiting a higher market volume with the expansion of new technology and green approaches for utilizing biofibers. The performances of nanobiocomposites depend on the manufacturing processes, types of biofibers used, and the matrix polymer (resin). An overview of different natural fibers (vegetable/plants), nanomaterials, biocomposites, nanobiocomposites, and manufacturing methods are discussed in the context of potential application in this review.

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Developments in polyester composite materials – An in-depth review on natural fibres and nano fillers

TL;DR: A review of the different manufacturing processes and the various reinforcing elements used throughout the preparation of polymeric matrix composites is presented in this article, where the reviewed material systems forming polyester nano composites are analysed separately and jointly, showing their scientific developments.
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Comprehensive review on plant fiber-reinforced polymeric biocomposites

TL;DR: A critical review of the background of natural fiber composites, factors influencing the composite properties, chemical interaction between the fiber and matrices, future potentiality, and marketing perspectives for triggering new research works in the field of biocomposite materials is presented in this paper.
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Recent advances in nanocellulose-based different biomaterials: types, properties, and emerging applications

TL;DR: In this article, a review article comprehensively presents current developments, results, and findings in the arena of green and sustainable materials, and incorporates future challenges and opportunities in the field of nano cellulosic materials.
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A state-of-the-art review on coir fiber-reinforced biocomposites

TL;DR: In this article, a review of coir fiber and associated composites along with their feasible fabrication methods and surface treatments in terms of their morphological, thermal, mechanical, and physical properties is presented.
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Coloration of aramid fabric via in-situ biosynthesis of silver nanoparticles with enhanced antibacterial effect

TL;DR: In this article, a multicolored and antibacterial effects on aramid fabrics through an in-situ synthesis of silver nanoparticles (AgNPs) without using any toxic reagents.
References
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Journal ArticleDOI

Biocomposites reinforced with natural fibers: 2000–2010

TL;DR: A comprehensive review of literature on bio-fiber reinforced composites is presented in this paper, where the overall characteristics of reinforcing fibers used in biocomposites, including source, type, structure, composition, as well as mechanical properties, are reviewed.
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Chemical Treatments of Natural Fiber for Use in Natural Fiber-Reinforced Composites: A Review

TL;DR: In this article, different chemical modifications on natural fibers for use in natural fiber-reinforced composites are reviewed, including alkali, silane, acetylation, benzoylation, acrylation, maleated coupling agents and permanganate.
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Biofibres and Biocomposites

TL;DR: A review of the literature on the various aspects of cellulosic fibres and biocomposites can be found in this paper, where the pros and cons of using these fibres are enumerated in this review.
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Silane coupling agents used for natural fiber/polymer composites: A review

TL;DR: In this paper, the authors review the recent progress in using silane coupling agents for NFPCs, summarizes the effective silane structures from the silane family, clarifies the interaction mechanisms between natural fibers and polymer matrices, and presents the effects of silane treatments on the mechanical and outdoor performance of the resulting composites.
Journal ArticleDOI

Chemical treatments on plant-based natural fibre reinforced polymer composites: An overview

TL;DR: In this article, a comprehensive overview of surface treatments applied to natural fibres for advanced composites applications is presented, where the effects of different chemical treatments on cellulosic fibres that are used as reinforcements for thermoset and thermoplastics are studied.
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