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用于海水蒸发诱导发电的钙-有机框架中的单极溶液流动

Unipolar Solution Flow in Calcium-Organic Frameworks for Seawater-Evaporation-Induced Electricity Generation.

作者信息

Wang Zhengyun, Huang Yuchen, Zhang Tiansui, Xu Kunqi, Liu Xiaoling, Zhang Airong, Xu You, Zhou Xue, Dai Jiawei, Jiang Zhineng, Zhang Guoan, Liu Hongfang, Xia Bao Yu

机构信息

School of Chemistry and Chemical Engineering, State Key Laboratory of Materials Processing and Die & Mould Technology, Key Laboratory of Material Chemistry for Energy Conversion and Storage (Ministry of Education), Hubei Key Laboratory of Material Chemistry and Service Failure, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology (HUST), 1037 Luoyu Rd, Wuhan 430074, China.

Équipe Chimie Inorganique, ICCMO, Université Paris Saclay, 17 Av. des Sciences, Orsay 91400, France.

出版信息

J Am Chem Soc. 2024 Jan 4. doi: 10.1021/jacs.3c13159.

Abstract

Seawater-flow- and -evaporation-induced electricity generation holds significant promise in advancing next-generation sustainable energy technologies. This method relies on the electrokinetic effect but faces substantial limitations when operating in a highly ion-concentrated environment, for example, natural seawater. We present herein a novel solution using calcium-based metal-organic frameworks (MOFs, CHCaO·2HO) for seawater-evaporation-induced electricity generation. Remarkably, Ca-MOFs show an open-circuit voltage of 0.4 V and a short-circuit current of 14 μA when immersed in seawater under natural conditions. Our experiments and simulations revealed that sodium (Na) ions selectively transport within sub-nanochannels of these synthetic superhydrophilic MOFs. This selective ion transport engenders a unipolar solution flow, which drives the electricity generation behavior in seawater. This work not only showcases an effective Ca-MOF for electricity generation through seawater flow/evaporation but also contributes significantly to our understanding of water-driven energy harvesting technologies and their potential applications beyond this specific context.

摘要

海水流动和蒸发诱导发电在推动下一代可持续能源技术方面具有巨大潜力。这种方法依赖于动电效应,但在高离子浓度环境(如天然海水)中运行时面临重大限制。我们在此提出一种使用钙基金属有机框架(MOF,CHCaO·2HO)进行海水蒸发诱导发电的新解决方案。值得注意的是,在自然条件下将Ca-MOFs浸入海水中时,其开路电压为0.4V,短路电流为14μA。我们的实验和模拟表明,钠离子在这些合成超亲水MOF的亚纳米通道内选择性传输。这种选择性离子传输产生单极溶液流,驱动海水中的发电行为。这项工作不仅展示了一种通过海水流动/蒸发发电的有效Ca-MOF,还为我们理解水驱动的能量收集技术及其在此特定背景之外的潜在应用做出了重大贡献。

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