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用于超级电容器的碳纳米管。

Carbon nanotubes for supercapacitor.

机构信息

Department of Physics, National University of Singapore, Singapore, 117542, Singapore.

出版信息

Nanoscale Res Lett. 2010 Jan 5;5(3):654-68. doi: 10.1007/s11671-009-9508-2.

Abstract

As an electrical energy storage device, supercapacitor finds attractive applications in consumer electronic products and alternative power source due to its higher energy density, fast discharge/charge time, low level of heating, safety, long-term operation stability, and no disposable parts. This work reviews the recent development of supercapacitor based on carbon nanotubes (CNTs) and their composites. The purpose is to give a comprehensive understanding of the advantages and disadvantages of carbon nanotubes-related supercapacitor materials and to find ways for the improvement in the performance of supercapacitor. We first discussed the effects of physical and chemical properties of pure carbon nanotubes, including size, purity, defect, shape, functionalization, and annealing, on the supercapacitance. The composites, including CNTs/oxide and CNTs/polymer, were further discussed to enhance the supercapacitance and keep the stability of the supercapacitor by optimally engineering the composition, particle size, and coverage.

摘要

作为一种电能存储装置,超级电容器由于其更高的能量密度、快速的放电/充电时间、较低的加热程度、安全性、长期运行稳定性和无一次性部件,在消费电子产品和替代能源方面具有吸引力。这项工作综述了基于碳纳米管 (CNT) 及其复合材料的超级电容器的最新发展。目的是全面了解与碳纳米管相关的超级电容器材料的优缺点,并找到提高超级电容器性能的方法。我们首先讨论了纯碳纳米管的物理和化学性质,包括尺寸、纯度、缺陷、形状、功能化和退火,对超级电容的影响。进一步讨论了复合材料,包括 CNT/氧化物和 CNT/聚合物,通过优化组成、粒径和覆盖度来提高超级电容并保持超级电容器的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de4a/3241017/0394d50bb30d/1556-276X-5-654-1.jpg

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