Structure evolution and energy storage mechanism of Zn <sub>3</sub> V <sub>3</sub> O <sub>8</sub> spinel in aqueous zinc batteries
Haocong Yi(Peking University Shenzhen Hospital), Feng Pan(Xiamen University), Shunning Li(First Affiliated Hospital of Jinan University), Hengyu Ren(Peking University Shenzhen Hospital), Runzhi Qin(Peking University), Yuetao Wang(Soochow University), Qinghe Zhao(Peking University Shenzhen Hospital), Lu Yao(Chongqing University), Yang Li(Tianjin University), Wenguang Zhao(King University), Shouxiang Ding(Peking University), Lin Zhou(Chinese Academy of Sciences), Changjian Zuo(Peking University)
Cited by 27
Related Papers
Structural origin of the high-voltage instability of lithium cobalt oxide
|Nature Nanotechnology|2021|334
Highly Dispersed Cobalt Clusters in Nitrogen‐Doped Porous Carbon Enable Multiple Effects for High‐Performance Li–S Battery
|Advanced Energy Materials|2020|317
In situ IR comparative study on N2O formation pathways over different valence states manganese oxides catalysts during NH3–SCR of NO
|Chemical Engineering Journal|2020|233
Sequential co-reduction of nitrate and carbon dioxide enables selective urea electrosynthesis
|Nature Communications|2024|184
Ice-Templated MXene/Ag–Epoxy Nanocomposites as High-Performance Thermal Management Materials
|ACS Applied Materials & Interfaces|2020|177