Tabrizizadeh Tina, She Zhe, Stamplecoskie Kevin, Liu Guojun
Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, Ontario K7L 3N6, Canada.
ACS Omega. 2022 Aug 5;7(32):28275-28283. doi: 10.1021/acsomega.2c02501. eCollection 2022 Aug 16.
As water rises in the pores of a partially immersed porous film due to capillary action, it carries along ions that are dissociated from the pore walls, generating a streaming current and potential. The water and current flows are sustained due to water evaporation from the unsubmerged surfaces. Traditionally, inert graphite (C) electrodes are used to construct water-evaporation-induced generators (WEIGs) that harness this electricity. WEIGs are environmentally friendly but have weak power outputs. Herein, we report on C/metal WEIGs that feature C top electrodes and metal bottom electrodes, as well as metal/metal WEIGs. Operating in a NaCl solution that facilitates the Galvanic corrosion of the metal (Cu, steel, and Al) electrodes, these Galvanic WEIGs outperform a C/C WEIG by thousands of times in power output. Equally interestingly, the asymmetric environments and potential differences between the two electrodes of a WEIG facilitate metal corrosion and fabrication of compact Galvanic WEIGs. This study clearly shows that one should choose electrodes with caution for the construction of true WEIGs.
由于毛细作用,部分浸入多孔薄膜孔隙中的水上升时,会携带从孔壁解离的离子,产生流动电流和电位。由于未浸没表面的水蒸发,水和电流得以持续流动。传统上,惰性石墨(C)电极用于构建利用这种电力的水蒸发诱导发电机(WEIG)。WEIG对环境友好,但功率输出较弱。在此,我们报道了具有C顶电极和金属底电极的C/金属WEIG,以及金属/金属WEIG。这些原电池型WEIG在促进金属(铜、钢和铝)电极发生电偶腐蚀的NaCl溶液中运行,其功率输出比C/C WEIG高出数千倍。同样有趣的是,WEIG两个电极之间的不对称环境和电位差促进了金属腐蚀,并有助于制造紧凑的原电池型WEIGs。这项研究清楚地表明,在构建真正的WEIG时,应谨慎选择电极