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- W4381282308 endingPage "261" @default.
- W4381282308 startingPage "231" @default.
- W4381282308 abstract "Nanocomposites are one the most important and widely used engineered materials in the field of nanotechnology. Naturally occurring biological nanocomposites are highly inspiring for their unique mechanical properties with light weight. Wood, nacre, spider silk, teeth, bones, etc. are few examples where unique arrangement of nanomaterials in matrices provide synergistic properties of composite materials. A deep insight in bioinspired material helps to produce high performance engineered nanocomposites. Nowadays, the green nanocomposites are attractive due to their low cost, lightweight, biocompatible and environment-friendly nature. Plants are the main source of green composite material. Selection of proper synthesis technique to mix nanofibrils in biodegradable polymer matrices is one of the important criteria to achieve improved properties in nanocomposites. This chapter provides the recent advancements in bioinspired nanocomposites that are used in various sectors like biomedical, packaging, electronics, durable goods, etc. These nanocomposites possess much improved properties in terms of mechanical, thermal, barrier, and many more as compared to previously used natural or synthetic polymers. Cellulose, the most common natural polymer from plant origin has been used for production of sustainable bioinspired nanocomposites. Simple ball milling of cellulose produce some mechanoradical, which reduce metal ions like gold, silver, palladium, etc., to neutral metal nanoparticles, which can deposit on cellulose matrix. Thus, prepared metal-cellulose composites show catalytic activity, as well as anti-microbial activity. This method avoids many toxic chemicals and directly produce metal-cellulose compounds and blends. In a different way, microwave-assisted and UV-irradiated bioinspired nanocomposites of silver-reduced graphene oxide can be synthesized using lemon juice, which has been reported to have great antimicrobial activity. In agriculture field also, many bacterial diseases of crops can be controlled by bioinspired green chitosan-ZnO–based nanocomposites with strong antibacterial activity. The recent trends in nanofunctional materials and renewable materials for the preparation of bioinspired nanocomposites, which are specially used in agricultural, biomedical, and healthcare sector are discussed in this chapter." @default.
- W4381282308 created "2023-06-21" @default.
- W4381282308 creator A5082484862 @default.
- W4381282308 date "2023-05-30" @default.
- W4381282308 modified "2023-09-27" @default.
- W4381282308 title "A Feasibility Study of the Bioinspired Green Manufacturing of Nanocomposite Materials" @default.
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