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Review of supercapacitors: Materials and devices

机译:超级电容器综述:材料和设备

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Supercapacitors have gained a lot of attention due to their unique features like high power, long cycle life and environment-friendly nature. They act as a link for energy-power difference between a traditional capacitor (having high power) and fuel cells/batteries (having high energy storage). In this perspective, a worldwide research has been reported to address this and rapid progress has been achieved in the advancement of fundamental as well as the applied aspects of supercapacitors. Here, a concise description of technologies and working principles of different materials utilized for supercapacitors has been provided. The main focus has been on materials like carbon-based nanomaterials, metal oxides, conducting polymers and their nanocomposites along with some novel materials like metal-organic frameworks, MXenes, metal nitrides, covalent organic frameworks and black phosphorus. The performance of nanocomposites has been analysed by parameters like energy, capacitance, power, cyclic performance and rate capability. Some of the latest supercapacitors such as electrochromic supercapacitor, battery-supercapacitor hybrid device, electrochemical flow capacitor, alternating current line filtering capacitor, micro-supercapacitor, photo-supercapacitor, thermally chargeable supercapacitor, self-healing supercapacitor, piezoelectric and shape memory supercapacitor have also been discussed. This review covers the up-to-date progress achieved in novel materials for supercapacitor electrodes. The latest fabricated symmetric/asymmetric supercapacitors have also been reported.
机译:超级电容器因其独特的功能(如高功率,长寿命和环保特性)而受到了广泛的关注。它们充当了传统电容器(具有高功率)和燃料电池/电池(具有高能量存储)之间能量-功率差异的链接。从这个角度来看,已经报道了一项针对这一问题的全球研究,并且在超级电容器的基础以及应用方面的发展都取得了快速的进展。这里,已经提供了用于超级电容器的不同材料的技术和工作原理的简要描述。主要关注点是诸如碳基纳米材料,金属氧化物,导电聚合物及其纳米复合材料之类的材料,以及诸如金属有机骨架,MXene,金属氮化物,共价有机骨架和黑磷之类的一些新型材料。纳米复合材料的性能已通过诸如能量,电容,功率,循环性能和速率能力等参数进行了分析。一些最新的超级电容器,例如电致变色超级电容器,电池超级电容器混合设备,电化学流电容器,交流线路滤波电容器,微型超级电容器,光超级电容器,可热充电超级电容器,自修复超级电容器,压电和形状记忆超级电容器已经讨论过了。这篇综述涵盖了用于超级电容器电极的新型材料所取得的最新进展。也已经报道了最新制造的对称/非对称超级电容器。

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