Andrew van Bommel
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View article: Low-Gassing, Non-Flammable Liquid Electrolyte for Anode-Free Batteries
Low-Gassing, Non-Flammable Liquid Electrolyte for Anode-Free Batteries Open
Lithium metal and anode-free batteries are generating significant interest due to their remarkably high energy density in a compact size, paving the way for extended range in electric vehicles. However, the high-voltage cathode and reactiv…
View article: Electrochemical Stability of ZnMn<sub>2</sub>O<sub>4</sub>: Understanding Zn-Ion Rechargeable Battery Capacity and Degradation
Electrochemical Stability of ZnMn<sub>2</sub>O<sub>4</sub>: Understanding Zn-Ion Rechargeable Battery Capacity and Degradation Open
We present a refined Mn-Zn-H$_2$O Pourbaix diagram with the emphasis on\nparameters relevant for the Zn/MnO$_2$ rechargeable cells. It maps out\nboundaries of electrochemical stability for MnO$_2$, ZnMn$_2$O$_4$,\nZnMn$_3$O$_7$, and MnOOH.…
View article: Electrochemical stability of ZnMn2O4: Understanding Zn-ion rechargeable battery capacity and degradation
Electrochemical stability of ZnMn2O4: Understanding Zn-ion rechargeable battery capacity and degradation Open
We present a refined Mn-Zn-H$_2$O Pourbaix diagram with the emphasis on parameters relevant for the Zn/MnO$_2$ rechargeable cells. It maps out boundaries of electrochemical stability for MnO$_2$, ZnMn$_2$O$_4$, ZnMn$_3$O$_7$, and MnOOH. Th…