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基于湿度的发电:从物理与材料到自供电应用

Moisture-Enabled Electricity Generation: From Physics and Materials to Self-Powered Applications.

作者信息

Shen Daozhi, Duley Walter W, Peng Peng, Xiao Ming, Feng Jiayun, Liu Lei, Zou Guisheng, Zhou Y Norman

机构信息

Institute for Quantum Computing, Department of Chemistry, Centre for Advanced Materials Joining, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.

Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.

出版信息

Adv Mater. 2020 Dec;32(52):e2003722. doi: 10.1002/adma.202003722. Epub 2020 Nov 13.

Abstract

The exploration of the utilization of sustainable, green energy represents one way in which it is possible to ameliorate the growing threat of the global environmental issues and the crisis in energy. Moisture, which is ubiquitous on Earth, contains a vast reservoir of low-grade energy in the form of gaseous water molecules and water droplets. It has now been found that a number of functionalized materials can generate electricity directly from their interaction with moisture. This suggests that electrical energy can be harvested from atmospheric moisture and enables the creation of a new range of self-powered devices. Herein, the basic mechanisms of moisture-induced electricity generation are discussed, the recent advances in materials (including carbon nanoparticles, graphene materials, metal oxide nanomaterials, biofibers, and polymers) for harvesting electrical energy from moisture are summarized, and some strategies for improving energy conversion efficiency and output power in these devices are provided. The potential applications of moisture electrical generators in self-powered electronics, healthcare, security, information storage, artificial intelligence, and Internet-of-things are also discussed. Some remaining challenges are also considered, together with a number of suggestions for potential new developments of this emerging technology.

摘要

探索可持续绿色能源的利用是缓解全球环境问题和能源危机日益增长威胁的一种方式。水分在地球上无处不在,以气态水分子和水滴的形式蕴含着大量的低品位能量。现已发现,一些功能化材料可通过与水分相互作用直接发电。这表明电能可从大气水分中获取,从而能够创造一系列新型自供电设备。本文讨论了水分感应发电的基本机制,总结了用于从水分中获取电能的材料(包括碳纳米颗粒、石墨烯材料、金属氧化物纳米材料、生物纤维和聚合物)的最新进展,并提供了提高这些设备能量转换效率和输出功率的一些策略。还讨论了水分发电机在自供电电子、医疗保健、安全、信息存储、人工智能和物联网中的潜在应用。同时也考虑了一些尚存的挑战以及对这一新兴技术潜在新发展的若干建议。

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