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Nanostructured conducting polymers for energy applications: towards a sustainable platform

机译:纳米导电聚合物应用程序:向一个可持续发展的平台

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摘要

Recently, there has been tremendous progress in the field of nanodimensional conducting polymers with the objective of tuning the intrinsic properties of the polymer and the potential to be efficient, biocompatible, inexpensive, and solution processable. Compared with bulk conducting polymers, conducting polymer nanostructures possess a high electrical conductivity, large surface area, short path length for ion transport and superior electrochemical activity which make them suitable for energy storage and conversion applications. The current status of polymer nanostructure fabrication and characterization is reviewed in detail. The present review includes syntheses, a deeper understanding of the principles underlying the electronic behavior of size and shape tunable polymer nanostructures, characterization tools and analysis of composites. Finally, a detailed discussion of their effectiveness and perspectives in energy storage and solar light harvesting is presented. In brief, a broad overview on the synthesis and possible applications of conducting polymer nanostructures in energy domains such as fuel cells, photocatalysis, supercapacitors and rechargeable batteries is described.
机译:最近,有巨大的进步nanodimensional导电聚合物领域的目标优化的内在聚合物和可能的属性高效,不会引起排斥的,便宜,而且可加工的解决方案。导电聚合物,导电聚合物纳米结构具有高的电电导率、大的表面积,短路径长度为离子运输和优越电化学活动让他们合适能量储存和转换的应用程序。聚合物纳米结构的现状综述了制备和表征细节。深入了解潜在的原则大小和形状可调的电子的行为聚合物纳米结构,描述工具和分析的复合材料。他们的有效性和讨论观点在能源储存和太阳能灯收获。概述了合成和可能的导电聚合物纳米结构的应用程序在能源领域,如燃料电池,光催化、超级电容器和充电电池被描述。

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