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Conductive Polymer Composites from Renewable Resources: An Overview of Preparation, Properties, and Applications

机译:来自可再生资源的导电聚合物复合材料:制备,性能和应用概述

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摘要

This article reviews recent advances in conductive polymer composites from renewable resources, and introduces a number of potential applications for this material class. In order to overcome disadvantages such as poor mechanical properties of polymers from renewable resources, and give renewable polymer composites better electrical and thermal conductive properties, various filling contents and matrix polymers have been developed over the last decade. These natural or reusable filling contents, polymers, and their composites are expected to greatly reduce the tremendous pressure of industrial development on the natural environment while offering acceptable conductive properties. The unique characteristics, such as electrical/thermal conductivity, mechanical strength, biodegradability and recyclability of renewable conductive polymer composites has enabled them to be implemented in many novel and exciting applications including chemical sensors, light-emitting diode, batteries, fuel cells, heat exchangers, biosensors etc. In this article, the progress of conductive composites from natural or reusable filling contents and polymer matrices, including (1) natural polymers, such as starch and cellulose, (2) conductive filler, and (3) preparation approaches, are described, with an emphasis on potential applications of these bio-based conductive polymer composites. Moreover, several commonly-used and innovative methods for the preparation of conductive polymer composites are also introduced and compared systematically.
机译:本文回顾了可再生资源在导电聚合物复合材料方面的最新进展,并介绍了该材料类别的许多潜在应用。为了克服诸如来自可再生资源的聚合物的机械性能差的缺点,并赋予可再生聚合物复合材料更好的电和导热性能,在过去十年中已经开发了各种填充含量和基质聚合物。这些天然或可重复使用的填充物,聚合物及其复合材料有望在提供可接受的导电性能的同时,极大地减轻工业发展对自然环境的巨大压力。可再生导电聚合物复合材料的独特特性,如电/热导率,机械强度,生物降解性和可回收性,使它们能够在许多新颖而激动人心的应用中实现,包括化学传感器,发光二极管,电池,燃料电池,热交换器,生物传感器等。在本文中,从天然或可重复使用的填充物和聚合物基质(包括(1)天然聚合物,例如淀粉和纤维素,(2)导电填料,以及(3)制备方法)研究导电复合材料的研究进展描述,重点是这些生物基导电聚合物复合材料的潜在应用。此外,还介绍并系统地比较了几种制备导电聚合物复合材料的常用方法和创新方法。

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