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法拉第电化学去离子技术的最新进展:系统架构与电极材料

Recent Advances in Faradic Electrochemical Deionization: System Architectures Electrode Materials.

作者信息

Liu Yong, Wang Kai, Xu Xingtao, Eid Kamel, Abdullah Aboubakr Moustafa, Pan Likun, Yamauchi Yusuke

机构信息

School of Material Science and Engineering, Qingdao University of Science and Technology, Qingdao, Shandong 266042, China.

Shanghai Key Laboratory of Magnetic Resonance, School of Physics and Electronic Science, East China Normal University, Shanghai 200062, China.

出版信息

ACS Nano. 2021 Sep 28;15(9):13924-13942. doi: 10.1021/acsnano.1c03417. Epub 2021 Sep 9.

Abstract

Capacitive deionization (CDI) is an energy-efficient desalination technique. However, the maximum desalination capacity of conventional carbon-based CDI systems is approximately 20 mg g, which is too low for practical applications. Therefore, the focus of research on CDI has shifted to the development of faradic electrochemical deionization systems using electrodes based on faradic materials which have a significantly higher ion-storage capacity than carbon-based electrodes. In addition to the common symmetrical CDI system, there has also been extensive research on innovative systems to maximize the performance of faradic electrode materials. Research has focused primarily on faradic reactions and faradic electrode materials. However, the correlation between faradic electrode materials and the various electrochemical deionization system architectures, , hybrid capacitive deionization, rocking-chair capacitive deionization, and dual-ion intercalation electrochemical desalination, remains relatively unexplored. This has inhibited the design of specific faradic electrode materials based on the characteristics of individual faradic electrochemical desalination systems. In this review, we have characterized faradic electrode materials based on both their material category and the electrochemical desalination system in which they were utilized. We expect that the detailed analysis of the properties, advantages, and challenges of the individual systems will establish a fundamental correlation between CDI systems and electrode materials that will facilitate future developments in this field.

摘要

电容去离子化(CDI)是一种节能的脱盐技术。然而,传统碳基CDI系统的最大脱盐容量约为20毫克/克,对于实际应用来说太低了。因此,CDI的研究重点已转向开发基于法拉第材料的电极的法拉第电化学去离子化系统,该材料的离子存储容量比碳基电极高得多。除了常见的对称CDI系统外,还对创新系统进行了广泛研究,以最大限度地提高法拉第电极材料的性能。研究主要集中在法拉第反应和法拉第电极材料上。然而,法拉第电极材料与各种电化学去离子化系统结构之间的相关性,即混合电容去离子化、摇椅式电容去离子化和双离子插层电化学脱盐,仍相对未被探索。这阻碍了基于单个法拉第电化学脱盐系统特性设计特定的法拉第电极材料。在这篇综述中,我们根据法拉第电极材料的材料类别和它们所使用的电化学脱盐系统对其进行了表征。我们期望对各个系统的特性、优点和挑战进行详细分析,将在CDI系统和电极材料之间建立基本的相关性,这将促进该领域的未来发展。

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