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用于高效且可扩展的湿气发电的离子水凝胶。

Ionic Hydrogel for Efficient and Scalable Moisture-Electric Generation.

作者信息

Yang Su, Tao Xiaoming, Chen Wei, Mao Jianfeng, Luo Heng, Lin Shuping, Zhang Lisha, Hao Jianhua

机构信息

Research Institute for Intelligent Wearable Systems, The Hong Kong Polytechnic University, Hong Kong, 999077, China.

Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong, 999077, China.

出版信息

Adv Mater. 2022 May;34(21):e2200693. doi: 10.1002/adma.202200693. Epub 2022 Apr 24.

Abstract

The progress of spontaneous energy generation from ubiquitous moisture is hindered the low output current and intermittent operating voltage of the moisture-electric generators. Herein a novel and efficient ionic hydrogel moisture-electric generator (IHMEG) is developed by rational combination of poly(vinyl alcohol), phytic acid, and glycerol-water binary solvent. Thanks to the synergistic effect of notable moisture-absorption capability and fast ion transport capability in the ionic hydrogel network, a single IHMEG unit of 0.25 cm can continuously generate direct-current electricity with a constant open-circuit voltage of ≈0.8 V for over 1000 h, a high short-current density of 0.24 mA cm , and power density of up to 35 µW cm . Of great importance is that large-scale integration of IHMEG units can be readily accomplished to offer a device with voltage up to 210 V, capable of directly driving numerous commercial electronics, including electronic ink screen, metal electrodeposition setup, and light-emitting-diode arrays. Such prominent performance is mainly attributed to the enhanced moisture-liberated proton diffusion proved by experimental observation and theoretical analysis. The ionic hydrogel with high cost-efficiency, easy-to-scaleup fabrication, and high power-output opens a brand-new perspective to develop a green, versatile, and efficient power source for Internet-of-Things and wearable electronics.

摘要

无处不在的水分自发产生能量的进程受到了水分发电机低输出电流和间歇性工作电压的阻碍。在此,通过将聚乙烯醇、植酸和甘油 - 水二元溶剂合理组合,开发出了一种新型高效的离子水凝胶水分发电机(IHMEG)。得益于离子水凝胶网络中显著的吸湿能力和快速的离子传输能力的协同效应,一个0.25平方厘米的单个IHMEG单元能够连续产生直流电,其恒定开路电压约为0.8伏,持续超过1000小时,短路电流密度高达0.24毫安/平方厘米,功率密度高达35微瓦/平方厘米。至关重要的是,IHMEG单元能够轻松实现大规模集成,从而提供一个电压高达210伏的装置,能够直接驱动众多商业电子产品,包括电子墨水屏、金属电沉积装置和发光二极管阵列。这种卓越的性能主要归因于通过实验观察和理论分析所证实的增强的水分释放质子扩散。这种具有高性价比、易于放大制造和高功率输出的离子水凝胶为开发用于物联网和可穿戴电子产品的绿色、通用且高效的电源开辟了全新的视角。

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