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超级电容器的进展:二维纳米管材料的作用

Progress in supercapacitors: roles of two dimensional nanotubular materials.

作者信息

Panda Pritam Kumar, Grigoriev Anton, Mishra Yogendra Kumar, Ahuja Rajeev

机构信息

Department of Physics and Astronomy, Uppsala University Box 516 SE-75120 Uppsala Sweden

Mads Clausen Institute, NanoSYD, University of Southern Denmark Alsion 2 DK-6400 Denmark

出版信息

Nanoscale Adv. 2019 Oct 31;2(1):70-108. doi: 10.1039/c9na00307j. eCollection 2020 Jan 22.

Abstract

Overcoming the global energy crisis due to vast economic expansion with the advent of human reliance on energy-consuming labor-saving devices necessitates the demand for next-generation technologies in the form of cleaner energy storage devices. The technology accelerates with the pace of developing energy storage devices to meet the requirements wherever an unanticipated burst of power is indeed needed in a very short time. Supercapacitors are predicted to be future power vehicles because they promise faster charging times and do not rely on rare elements such as lithium. At the same time, they are key nanoscale device elements for high-frequency noise filtering with the capability of storing and releasing energy by electrostatic interactions between the ions in the electrolyte and the charge accumulated at the active electrode during the charge/discharge process. There have been several developments to increase the functionality of electrodes or finding a new electrolyte for higher energy density, but this field is still open to witness the developments in reliable materials-based energy technologies. Nanoscale materials have emerged as promising candidates for the electrode choice, especially in 2D sheet and folded tubular network forms. Due to their unique hierarchical architecture, excellent electrical and mechanical properties, and high specific surface area, nanotubular networks have been widely investigated as efficient electrode materials in supercapacitors, while maintaining their inherent characteristics of high power and long cycling life. In this review, we briefly present the evolution, classification, functionality, and application of supercapacitors from the viewpoint of nanostructured materials to apprehend the mechanism and construction of advanced supercapacitors for next-generation storage devices.

摘要

随着人类对耗能省力设备的依赖以及经济的大规模扩张,全球能源危机日益凸显,这就需要以更清洁能源存储设备的形式发展下一代技术。随着储能设备的发展步伐加快,该技术能够满足在极短时间内确实需要意外突发电力的任何地方的需求。超级电容器有望成为未来的动力车辆,因为它们充电速度更快,且不依赖锂等稀有元素。同时,它们是用于高频噪声滤波的关键纳米级器件元件,能够在充电/放电过程中通过电解质中的离子与活性电极上积累的电荷之间的静电相互作用来存储和释放能量。为了提高电极的功能或寻找具有更高能量密度的新型电解质,已经有了一些进展,但该领域仍有待见证基于可靠材料的能源技术的发展。纳米级材料已成为电极选择的有前途的候选材料,特别是二维片状和折叠管状网络形式。由于其独特的分层结构、优异的电学和力学性能以及高比表面积,纳米管网络作为超级电容器中的高效电极材料已被广泛研究,同时保持其高功率和长循环寿命的固有特性。在这篇综述中,我们从纳米结构材料的角度简要介绍超级电容器的发展、分类、功能和应用,以理解下一代存储设备先进超级电容器的机理和结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a378/9419609/e03999d64b48/c9na00307j-f1.jpg

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