TY - JOUR
T1 - Issues and strategies of cathode materials for mild aqueous static zinc-ion batteries
AU - Zhong, Wei
AU - Zhang, Jiahui
AU - Li, Zongmiao
AU - Shen, Zeyu
AU - Zhang, Shichao
AU - Wang, Xinyang
AU - Lu, Yingying
N1 - Publisher Copyright:
© 2023 Institute of Process Engineering, Chinese Academy of Sciences.
PY - 2023/9
Y1 - 2023/9
N2 - Researchers prefer mild aqueous static zinc-ion batteries (ASZIBs) for their distinct benefits of excellent safety, abundant zinc resources, low cost, and high energy density. However, at the moment there are some issues with the cathode materials of mild ASZIBs, including dissolution, by-products, poor conductivity, and a contentious energy storage system. Consequently, there are numerous difficulties in the development of high-performance mild ASZIBs cathode materials. This overview examines the mechanisms for storing energy and the developments in inorganic, organic, and other novel cathode materials that have emerged in recent years. At the same time, three solutions—structural engineering, interface engineering, and reaction pathway engineering—as well as the difficulties now faced by the cathode materials of mild ASZIBs are forcefully introduced. Finally, a prospect is made regarding the evolution of cathode materials in the future.
AB - Researchers prefer mild aqueous static zinc-ion batteries (ASZIBs) for their distinct benefits of excellent safety, abundant zinc resources, low cost, and high energy density. However, at the moment there are some issues with the cathode materials of mild ASZIBs, including dissolution, by-products, poor conductivity, and a contentious energy storage system. Consequently, there are numerous difficulties in the development of high-performance mild ASZIBs cathode materials. This overview examines the mechanisms for storing energy and the developments in inorganic, organic, and other novel cathode materials that have emerged in recent years. At the same time, three solutions—structural engineering, interface engineering, and reaction pathway engineering—as well as the difficulties now faced by the cathode materials of mild ASZIBs are forcefully introduced. Finally, a prospect is made regarding the evolution of cathode materials in the future.
KW - Cathode materials
KW - Design strategies
KW - Energy storage mechanisms
KW - Mild aqueous static zinc-ion batteries
KW - Reaction pathway engineering
UR - https://www.scopus.com/pages/publications/85149379646
U2 - 10.1016/j.gce.2023.01.001
DO - 10.1016/j.gce.2023.01.001
M3 - 文献综述
AN - SCOPUS:85149379646
SN - 2096-9147
VL - 4
SP - 264
EP - 284
JO - Green Chemical Engineering
JF - Green Chemical Engineering
IS - 3
ER -