墨基纳米发电机的最新进展:从材料到应用

Bingqian Shao, Zhitao Chen, Hengzhe Su, Shuzhe Peng, Mingxin Song
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引用次数: 0

摘要

纳米发电机具有从环境中收集微弱能量的能力。其中,热电(TE)、三电(Triboelectric)、压电(PE)和湿气功能纳米发电机代表了微纳米能量收集的有前途的方法。这些纳米发电机在材料优化和结构设计方面取得了长足的进步。印刷技术促进了纳米发电机的大规模制造。虽然油墨可以与大多数传统功能材料兼容,但这不可避免地会导致材料的电气性能下降,因此有必要控制油墨的流变特性。此外,印刷技术提高了结构设计的灵活性。本综述为基于油墨的纳米发电机提供了一个全面的框架,包括油墨材料优化和器件结构设计,包括油墨性能的改善、流变特性的控制和高效的能量收集结构。此外,报告还重点介绍了结合纺织技术和混合能源技术的墨基纳米发电机,回顾了它们在能量收集和自供电传感方面的最新进展。讨论还涉及面临的主要挑战和未来的发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Latest Advances in Ink-Based Nanogenerators: From Materials to Applications
Nanogenerators possess the capability to harvest faint energy from the environment. Among them, thermoelectric (TE), triboelectric, piezoelectric (PE), and moisture-enabled nanogenerators represent promising approaches to micro–nano energy collection. These nanogenerators have seen considerable progress in material optimization and structural design. Printing technology has facilitated the large-scale manufacturing of nanogenerators. Although inks can be compatible with most traditional functional materials, this inevitably leads to a decrease in the electrical performance of the materials, necessitating control over the rheological properties of the inks. Furthermore, printing technology offers increased structural design flexibility. This review provides a comprehensive framework for ink-based nanogenerators, encompassing ink material optimization and device structural design, including improvements in ink performance, control of rheological properties, and efficient energy harvesting structures. Additionally, it highlights ink-based nanogenerators that incorporate textile technology and hybrid energy technologies, reviewing their latest advancements in energy collection and self-powered sensing. The discussion also addresses the main challenges faced and future directions for development.
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