Biopolymers and their Nanocomposites: current status and future prospects

N. Aggarwal, Dipti Dhiman, N. Kaur, H. Kaur, Sonika Arti
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Abstract

For many years, petroleum-based polymers have been successfully enhanced by the addition of nanoparticles as additives. Carbon nanotubes, graphene, nanoclays, 2-D layered materials, and cellulose nano whiskers are a few of the several nano-reinforcements that are currently being researched. In comparison to unmodified polymer resin, the use of these nanofillers with bio-based polymers could improve a wide range of physical properties, including barrier, flame resistance, thermal stability, solvent uptake, and rate of biodegradability. This nano-reinforcement is a very appealing method to create new functional biomaterials for a variety of applications because these enhancements are typically achieved at minimal filler content. In Fig. 1, the interaction of biopolymers with nanocomposites is shown as improving the functionality of electronic, photonic and optical devices.
生物聚合物及其纳米复合材料的研究现状与展望
多年来,通过添加纳米颗粒作为添加剂,已经成功地增强了石油基聚合物。碳纳米管、石墨烯、纳米粘土、二维层状材料和纤维素纳米晶须是目前正在研究的几种纳米增强材料中的一些。与未改性的聚合物树脂相比,将这些纳米填料与生物基聚合物一起使用可以提高广泛的物理性能,包括阻隔性、阻燃性、热稳定性、溶剂吸收和生物降解率。这种纳米增强是一种非常有吸引力的方法,可以为各种应用创造新的功能性生物材料,因为这些增强通常是在最小的填料含量下实现的。在图1中,生物聚合物与纳米复合材料的相互作用显示为改善了电子、光子和光学器件的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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