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用于超级电容器电极材料的聚合物基纳米复合材料中的碳基纳米填料:综述。

Carbon-based nano-filler in polymeric composites for supercapacitor electrode materials: a review.

机构信息

Department of Polymer and Textile Technology, Yaba College of Technology, PMB 2011,Yaba, Lagos, Nigeria.

Institute of Nano-Engineering Research, Department of Chemical, Metallurgical and Materials Engineering, Tshwane University of Technology, Pretoria, South Africa.

出版信息

Environ Sci Pollut Res Int. 2021 Jun;28(21):26269-26279. doi: 10.1007/s11356-021-13589-z. Epub 2021 Apr 1.

Abstract

The concept of this paper was to explore the comparative advantage of polymer composite in the formation of a critical part of electrodes, separators, and electrolytes. These parts largely determine the overall performance of new evolving supercapacitors (SC) as against many other existing storage devices. Polymer materials are reputed for their low weight and life-cycle flexibility which makes supercapacitors unique in their functions. In this paper, application and classification of SCs were undertaken to take into consideration the peculiarities of polymer composite suitable for each class of SCs identified in this work. Part of the rationale of this review paper was to bridge the existing gap identified in many storage devices using salient properties inherent in light-weight materials. This paper also discussed the potential threats to SCs, which require further research works. It is expected that this paper would assist other researchers in evolving SCs devoid of low cell voltages, lower energy density, and reduction of production cost.

摘要

本文的目的是探讨聚合物复合材料在形成电极、隔板和电解质等关键部件方面的比较优势。这些部件在很大程度上决定了新开发的超级电容器(SC)的整体性能,而超级电容器与许多其他现有存储设备相比具有独特的功能。聚合物材料以其低重量和生命周期灵活性而著称,这使得超级电容器在其功能上具有独特性。在本文中,对 SC 的应用和分类进行了研究,以考虑到适用于本文中确定的每类 SC 的聚合物复合材料的特性。本文的部分基本原理是利用轻量级材料固有的显著特性来弥合许多存储设备中存在的现有差距。本文还讨论了超级电容器面临的潜在威胁,这些威胁需要进一步的研究工作。预计本文将有助于其他研究人员开发出没有低电池电压、低能量密度和降低生产成本的超级电容器。

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