碳纳米管的分散稳定性及其对储能器件的影响

Chunghyeon Choi, Tae Gwang Yun, Byungil Hwang
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引用次数: 0

摘要

碳纳米管(CNTs)以其非凡的机械、电气和热性能的组合,已经成为一种革命性的纳米材料,在能量储存和收集设备中具有巨大的潜力。实现这一潜力取决于一个基本挑战:碳纳米管在各种基质中的分散稳定性。本文综述了碳纳米管分散稳定性及其对能量存储和收集技术性能的深远影响之间的关键相互作用。通过深入研究分散的潜在机制,实现稳定性的策略,以及对器件功能的直接影响,本综述揭示了纳米管分散与能源相关应用进步之间的复杂关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersion Stability of Carbon Nanotubes and Their Impact on Energy Storage Devices
Carbon nanotubes (CNTs), with their extraordinary combination of mechanical, electrical, and thermal properties, have emerged as a revolutionary class of nanomaterials with immense potential in energy storage and harvesting devices. Realizing this potential hinges on a fundamental challenge: the dispersion stability of CNTs within various matrices. This review paper provides a comprehensive exploration of the critical interplay between CNT dispersion stability and its far-reaching implications for the performance of energy storage and harvesting technologies. By delving into the underlying mechanisms of dispersion, the strategies to achieve stability, and the direct effects on device functionality, this review sheds light on the intricate relationship between nanotube dispersion and the advancement of energy-related applications.
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