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通过光催化增强的水解伏效应实现超过600小时的基于水分的绿色能源 harvesting(此处harvesting在语境中可能是“收集”之类的意思,原词有误,推测为harvesting)

Moisture-based green energy harvesting over 600 hours via photocatalysis-enhanced hydrovoltaic effect.

作者信息

Duan Peng, Wang Chenxing, Huang Yinpeng, Fu Chunqiao, Lu Xulei, Zhang Yong, Yao Yuming, Chen Lei, He Qi-Chang, Qian Linmao, Yang Tingting

机构信息

Tribology Research Institute, School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, 610031, PR China.

MSME, Université Gustave Eiffel, CNRS UMR 8208, F-77454, Marne-la-Vallée, France.

出版信息

Nat Commun. 2025 Jan 2;16(1):239. doi: 10.1038/s41467-024-55516-z.

Abstract

Harvesting the energy from the interaction between hygroscopic materials and atmospheric water can generate green and clean energy. However, the ion diffusion process of moisture-induced dissociation leads to the disappearance of the ion concentration gradient gradually, and there is still a lack of moisture-based power generation devices with truly continuous operation, especially the duration of the current output still needs to be extended. Here, we propose a design for reconstructing the ion concentration gradient by coupling photocatalytic hydrogen evolution reaction with hydrovoltaic effect, to report a moisture-enabled electric generator (MEG) with continuous current output. We show that the introduction of the photocatalytic layer not only absorbs light energy to greatly increase the power generation of the MEG (500% power density enhancement), but more importantly, the photocatalytic hydrogen evolution process consumes the pre-stacked ions to restore the ion concentration gradient, allowing the MEG to continuously output current for more than 600 hours, which is 1 to 2 orders of magnitude higher than the great majority of existed MEGs in terms of the current output duration.

摘要

从吸湿材料与大气水之间的相互作用中获取能量可以产生绿色清洁能源。然而,湿气诱导解离的离子扩散过程会导致离子浓度梯度逐渐消失,目前仍缺乏真正能够持续运行的基于湿气的发电装置,特别是电流输出的持续时间仍有待延长。在此,我们提出一种通过将光催化析氢反应与液流伏打效应耦合来重建离子浓度梯度的设计,以报道一种具有连续电流输出的湿气驱动发电机(MEG)。我们表明,光催化层的引入不仅吸收光能以大幅提高MEG的发电量(功率密度提高500%),更重要的是,光催化析氢过程消耗预先堆积的离子以恢复离子浓度梯度,使MEG能够连续输出电流超过600小时,就电流输出持续时间而言,这比绝大多数现有的MEG高出1至2个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fbd/11696064/a691f9e833b3/41467_2024_55516_Fig1_HTML.jpg

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