高性能超级电容器用碳基纳米复合材料

P. Sahoo, Chi-Ang Tseng, Yi-June Huang, Chuan-Pei Lee
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引用次数: 2

摘要

轻便、灵活、可穿戴和便携的电子产品在现代电子工业中受到了极大的关注。为了给这些小玩意提供动力,人们已经做出了巨大的努力来开发高效的储能设备。在各种电源中,超级电容器作为传统电池和电解电容器之间的桥梁,因其功率密度高、充放电速度快、操作安全性好、工作寿命长等优点,被认为是一种很有前途的便携式储能设备。混合超级电容器将氧化还原材料与碳基材料结合在一起,在满足实际应用需求方面具有巨大的潜力。在本章中,我们将回顾近年来关于复合材料(即金属氧化物、金属氢氧化物和金属二硫化物与碳材料复合)在超级电容器中的应用的报道。简要讨论了高效超级电容器的研究结论及未来发展前景和面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carbon-Based Nanocomposite Materials for High-Performance Supercapacitors
Lightweight, flexible, wearable, and portable electronic gadgets have drawn significant attention in modern electronics industry. To power these gadgets, great efforts have been made to develop highly efficient energy-storage equipment. Among various power sources, a supercapacitor, acting as a bridge between the conventional battery and electrolytic capacitor, has been considered a promising portable energy storage device because of its high power density, fast charge/discharge rate, adequate operational safety, and excellent working lifetime. Hybrid supercapacitors, which combine redox materials with carbon-based materials, exhibit tremendous potential to fulfill the requirement of practical applications. In this chapter, we will review recent reports focusing on composite materials (i.e. metal oxide, metal hydroxide, and metal dichalcogenide composited with carbon materials) for the application in supercapacitors. The conclusion and futuristic prospects and challenges of highly efficient supercapacitors are briefly discussed.
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