Shunjie ShiMingyang ChenXunjie HuoJuan WangQin Zhong
The problems associated with dendrite growth, hydrogen evolution reaction, and corrosion reaction on the zinc anode surface have hindered the commercial application of zinc‐ion batteries (ZIBs). Herein, a crosslinked hydrogel electrolyte (zinc sulfate/polyacrylamide/triethyl phosphate hydrogel, denoted as ZS/TEP/H 2 O GEL) is designed to stabilize the Zn anode interface and electrolyte, smooth Zn deposition and improve battery cycle life. The ZS/TEP/H 2 O GEL electrolyte limits water molecule activity through a 3D network, thereby suppressing water‐related side reactions and enhancing the stability of the anode. In addition, the TEP additive in ZS/TEP/H 2 O GEL induces the Zn 2+ to deposit preferentially along the (002) crystal plane and enables homogeneous zinc deposition. Ultimately, the Zn//Zn battery assembled with ZS/TEP/H 2 O GEL can achieve an extremely long‐cycle life exceeding 4000 h at 0.2 Ma cm −2 . Besides, the Zn//Cu half battery can be plated/stripped stably for more than 1000 cycles at a current density of 1 mA cm −2 . The Zn//NVO full battery with ZS/TEP/H 2 O GEL electrolyte is able to maintain a relatively stable trend at a later stage. This work offers a reference for the exploration of commercialized hydrogel electrolytes with stable zinc anodes to realize long‐life ZIBs.
Xiangye LiYuan LiYu JiangDahui WangFen Ran
Kaixin Huang (13817360)Xianguang Zeng (15352054)Dan Zhang (51283)Chengyan Wen (6157814)Chao Lu (4374)Wenjuan Wu (141552)Yi Guo (35817)Jie Xing (736394)
Chunyan FuYaping WangLU Cong-geShuang ZhouQiong HeYingzhu HuMingyang FengYuanlang WanJiande LinYifang ZhangAnqiang Pan
Kaixin HuangXianguang ZengDan ZhangChengyan WenChao LüWenjuan WuYi GuoJie Xing
Chenyang LiJianglin WangDong‐Ting ZhangMin‐Peng LiHao ChenWei-Hai YiXinying RenBao LiuXue Feng LuMao‐Cheng Liu