电容去离子
海水淡化
材料科学
电极
法拉第电流
阳极
工艺工程
法拉第效率
纳米技术
环境科学
电化学
膜
工作电极
工程类
化学
生物化学
物理化学
作者
Xiaoli Zhou,Shirui Shu,Xiaoyu Ye,Zejun Li
出处
期刊:Small
[Wiley]
日期:2024-03-15
卷期号:20 (32)
被引量:7
标识
DOI:10.1002/smll.202400047
摘要
Abstract Water desalination technologies play a key role in addressing the global water scarcity crisis and ensuring a sustainable supply of freshwater. In contrast to conventional capacitive deionization, which suffers from limitations such as low desalination capacity, carbon anode oxidation, and co‐ion expulsion effects of carbon materials, the emerging faradaic electrochemical deionization (FDI) presents a promising avenue for enhancing water desalination performance. These electrode materials employed faradaic charge‐transfer processes for ion removal, achieving higher desalination capacity and energy‐efficient desalination for high salinity streams. The past decade has witnessed a surge in the advancement of faradaic electrode materials and considerable efforts have been made to explore optimization strategies for improving their desalination performance. This review summarizes the recent progress on the optimization strategies and underlying mechanisms of faradaic electrode materials in pursuit of high‐efficiency water desalination, including phase, doping and vacancy engineering, nanocarbon incorporation, heterostructures construction, interlayer spacing engineering, and morphology engineering. The key points of each strategy in design principle, modification method, structural analysis, and optimization mechanism of faradaic materials are discussed in detail. Finally, this work highlights the remaining challenges of faradaic electrode materials and present perspectives for future research.
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