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Bismuth-based materials for rechargeable aqueous batteries and water desalination
用于可充电水性电池和海水淡化的铋基材料
充電式水系電池および海水淡水化用のビスマスベースの材料
2차 수성 전지 및 담수화용 비스무트 기반 소재
Materiales a base de bismuto para baterías acuosas recargables y desalinización de agua
Matériaux à base de bismuth pour les batteries aqueuses rechargeables et le dessalement de l'eau
Материалы на основе висмута для водных аккумуляторных батарей и опреснения воды
Xiao-Jing Dai 戴晓婧 ¹, Xin-Xin Niu 牛昕欣 ¹, Wang-Qin Fu 傅王秦 ¹, Dong Zheng 郑冬 ¹, Wen-Xian Liu 刘文贤 ¹, Wen-Hui Shi 施文慧 ², Jian-Wei Nai ¹, Fang-Fang Wu 毋芳芳 ¹, Xie-Hong Cao 曹澥宏 ¹
¹ School of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014, China
中国 杭州 浙江工业大学材料科学与工程学院
² Center for Membrane Separation and Water Science & Technology, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou, 310014, China
中国 杭州 浙江工业大学膜分离与水科学技术中心
Rare Metals, 15 November 2021
Abstract

Aqueous batteries and seawater desalination have received considerable attention in recent years due to their merits as high safety, environmental friendliness and cost-effectiveness. However, the scarcity of highly match electrode materials hinders their development. The exploration of high performance and low cost electrode materials is crucial for their potential applications. Bismuth (Bi), with high energy density and low redox potential, shows perspective in the field of aqueous batteries and seawater desalination, and significant progress has been achieved in the past decades.

In this review, the unique properties and synthetic methods of Bi-based electrodes, as well as their applications are comprehensively summarized and discussed. The commonly used preparation methods of Bi-based electrodes, including hydrothermal method, electrodeposition method, etc., are introduced. Then, the applications of the Bi-based composites in aqueous batteries, such as Ni//Bi batteries and water desalination, are summarized. Finally, the challenges and future research direction of Bi-based materials are proposed.
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