Carbon Nanotubes: Applications to Energy Storage Devices

R. Amin, Petla Ramesh Kumar, I. Belharouak
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引用次数: 5

Abstract

Carbon nanotubes (CNTs) are an extraordinary discovery in the area of science and technology. Engineering them properly holds the promise of opening new avenues for future development of many other materials for diverse applications. Carbon nanotubes have open structure and enriched chirality, which enable improvements the properties and performances of other materials when CNTs are incorporated in them. Energy storage systems have been using carbon nanotubes either as an additive to improve electronic conductivity of cathode materials or as an active anode component depending upon structural and morphological specifications. Furthermore, they have also been used directly as the electrode material in supercapacitors and fuel cells. Therefore, CNTs demand a huge importance due to their underlying properties and prospective applications in the energy storage research fields. There are different kinds of carbon nanotubes which have been successfully used in batteries, supercapacitors, fuel cells and other energy storage systems. This chapter focuses on the role of CNTs in the different energy storage and conversion systems and impact of their structure and morphology on the electrochemical performances and storage mechanisms.
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碳纳米管:在储能设备中的应用
碳纳米管是科学技术领域的一项非凡发现。对它们进行适当的工程设计,有望为许多其他材料的未来发展开辟新的途径,用于各种应用。碳纳米管具有开放的结构和丰富的手性,这使得加入碳纳米管可以改善其他材料的性能。储能系统一直在使用碳纳米管作为添加剂来提高阴极材料的电子导电性,或者根据结构和形态规格作为活性阳极成分。此外,它们还被直接用作超级电容器和燃料电池的电极材料。因此,碳纳米管由于其潜在的性质和在储能研究领域的潜在应用而受到了极大的重视。不同种类的碳纳米管已经成功地应用于电池、超级电容器、燃料电池和其他储能系统中。本章重点介绍了碳纳米管在不同能量存储和转换系统中的作用,以及碳纳米管的结构和形态对电化学性能和存储机制的影响。
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