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In article number 2000960, Yang Jin, Hui Wu, Yi Cui, and co‐workers design a garnet‐type Li6.4La3Zr1.4Ta0.6O12 solid‐electrolyte‐based molten lithium–molybdenum–iron(II) chloride battery. Different from the conventional reaction mechanism of batteries, this battery synchronizes the reversible Fe–Mo alloying–dealloying reactions with the delithiation–lithiation processes, meaning that the porous Mo...
Solid‐electrolyte‐based molten‐metal batteries have attracted considerable attention for grid‐scale energy storage. Although ZEBRA batteries are considered one of the promising candidates, they still have the potential concern of metal particle growth and ion exchange with the β”‐Al2O3 electrolyte. Herein, a Li6.4La3Zr1.4Ta0.6O12 solid‐electrolyte‐based molten lithium−molybdenum−iron(II) chloride...
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