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High Hydrovoltaic Power Density Achieved by Universal Evaporating Potential Devices
F. Yu, J. Li, Y. Jiang, L. Wang, X. Yang, Y. Yang, X. Li, K. Jiang, W. Lu and X. Sun
2023
发表期刊Advanced Science
ISSN21983844
卷号10期号:30
摘要While hydrovoltaic electrical energy generation developments in very recent years have provided an alternative strategy to generate electricity from the direct interaction of materials with water, the two main issues still need to be addressed: achieving satisfactory output power density and understanding the reliable mechanism. In the present work, the integration of capacitors and water evaporation devices is proposed to provide a stable power supply. The feasible device structure consuming only water and air is green and environmentally sustainable, achieving a recorded power density of 142.72 µW cm−2. The output power of the series of devices is sufficient to drive portable electronic products with different voltage and current requirements, enabling self-driving systems for portable appliances. It has been shown that the working behavior originates from evaporating potential other than streaming potential. The present work provides both theoretical support and an experimental design for realizing practical application of hydrovoltaic electrical energy generation devices. © 2023 The Authors. Advanced Science published by Wiley-VCH GmbH.
DOI10.1002/advs.202302941
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收录类别sci ; ei
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/68106
专题中国科学院长春光学精密机械与物理研究所
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F. Yu, J. Li, Y. Jiang, L. Wang, X. Yang, Y. Yang, X. Li, K. Jiang, W. Lu and X. Sun. High Hydrovoltaic Power Density Achieved by Universal Evaporating Potential Devices[J]. Advanced Science,2023,10(30).
APA F. Yu, J. Li, Y. Jiang, L. Wang, X. Yang, Y. Yang, X. Li, K. Jiang, W. Lu and X. Sun.(2023).High Hydrovoltaic Power Density Achieved by Universal Evaporating Potential Devices.Advanced Science,10(30).
MLA F. Yu, J. Li, Y. Jiang, L. Wang, X. Yang, Y. Yang, X. Li, K. Jiang, W. Lu and X. Sun."High Hydrovoltaic Power Density Achieved by Universal Evaporating Potential Devices".Advanced Science 10.30(2023).
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