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Li2OHCl Crystalline Electrolyte for Stable Metallic Lithium Anodes...

Publication Type
Journal
Journal Name
Journal of the American Chemical Society
Publication Date
Page Numbers
1768 to 1771
Volume
138
Issue
6

In a classic example of stability from instability, we show that Li2OHCl solid electrolyte forms a stable solid electrolyte interface (SEI) with metallic lithium anode. The Li2OHCl solid electrolyte can be readily achieved through simple mixing of air-stable LiOH and LiCl precursors with a mild processing temperature under 400°C. Additionally, we show that continuous, dense Li2OHCl membranes can be fabricated at temperatures less than 400°C, standing in great contrast to current processing temperatures of over 1600°C for most oxide-based solid electrolytes. The ionic conductivity and Arrhenius activation energy were explored for the LiOH-LiCl system of crystalline solid electrolytes where Li2OHCl with increased crystal defects was found to have the highest ionic conductivity and reasonable Arrhenius activation energy. The Li2OHCl solid electrolyte displays stability against metallic lithium, even in extreme conditions past the melting point of lithium metal. To understand this excellent stability, we show that SEI formation is critical in stabilizing the interface between metallic lithium and the Li2OHCl solid electrolyte.