Zehua Zhao (7854509)Yan Zhang (8098)Huandi Zhang (18175672)Xiaowei Shi (316006)Haitao Zhao (14023)Junpeng Liu (507672)Jiamei Liu (513291)Lei Li (29537)
Developing a functional separator is an important strategy to improve the electrochemical performance of the Zn anode by suppressing the Zn dendrite growth and parasitic side reactions, thus advancing the aqueous zinc-ion batteries. Herein, we experimentally realize functional separator with gradient-structure based on CeF3 nanoparticles functionalized glass fibers. The experimental and theoretical results confirmed that the functional separator can tailor the Zn2+ flux and restrain SO42– transport, promoting dense Zn deposition. The strong interaction between CeF3 nanoparticles and H2O separates Zn2+ and H2O at the electrolyte/Zn anode interface, suppressing side reactions. Consequently, the Zn||Zn with this separator achieves excellent cycling stability of 2500 h at 1 mA cm–2 and 1 mAh cm–2 and 1000 h at 5 mA cm–2 and 5 mAh cm–2. This design of a functionalized separator provides a distinctive solution for the development of aqueous zinc-ion batteries.
Zehua ZhaoYan ZhangHuandi ZhangXiaowei ShiHaitao ZhaoJunpeng LiuJiamei LiuLei Li
Qingshan Liu (1286793)Shixin Wang (3715207)Jian Lang (20088969)Jinghan Wang (286016)Jiqiang Zhan (21086970)Hongyan Liu (142625)Youhui Qi (20808220)Zongyu Wu (16980425)Hongpeng Li (5484134)Xiaojing Lin (358205)Hongsen Li (1282056)
Huida Lyu (21411045)Jung Tae Kim (8655228)Dongfang Cheng (8662431)Xintong Yuan (6459881)Mackenzie Anderson (5475014)Keyue Liang (18611814)Jiayi Yu (227107)Philippe Sautet (1268361)Richard Kaner (7296455)Yuzhang Li (1364103)
Yuqing Yang (23094)Qiong He (1439074)Chao Hu (293389)Xuefang Xie (10118563)Shuquan Liang (1913323)Zhiyuan Zeng (1314990)Guozhao Fang (1913317)
Kun WangXiangxiang WangJianhong GaoZefan ZhengJialin YeWaqar AhmadChuhan ZhouH.Y. LiSiying LiYongqun MaMin LingHaibing ZhangXuehui GaoChengdu Liang