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A review of interface optimization strategies for solid electrolytes and anode materials. [PDF]
Wang D+9 more
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Applications of Hydrogels for Next-Generation Batteries. [PDF]
Sutradhar SC+5 more
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High-Areal-Capacity and Long-Cycle-Life All-Solid-State Battery Enabled By Freeze Drying Technology
Energy & Environmental Science, 2023All-solid-state battery (ASSB) has been widely recognized as the critical next-generation energy storage technology due to its high energy density and safety.
Tenghuan Ma+9 more
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Super Long‐Cycling All‐Solid‐State Battery with Thin Li6PS5Cl‐Based Electrolyte
Advanced Energy Materials, 2022All‐solid‐state batteries (ASSBs) using sulfide electrolytes have attracted ever‐increasing interest due to high ionic conductivity of the sulfides. Nevertheless, a thin, strong solid‐state sulfide electrolyte membrane maintaining high ionic conductivity
Sijie Liu+11 more
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An All-Solid-State Battery Based on Sulfide and PEO Composite Electrolyte.
Small, 2022Replacing liquid electrolytes with solid polymer electrolytes (SPEs) is considered as a vital approach to developing sulfur (S)-based cathodes. However, the polysulfides shuttle and the growth of lithium (Li) dendrites are still the major challenges in ...
Yong Su+15 more
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Lithium battery chemistries enabled by solid-state electrolytes
Nature Reviews Materials, 2017Arumugam Manthiram+2 more
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Long‐Life Sulfide All‐Solid‐State Battery Enabled by Substrate‐Modulated Dry‐Process Binder
Advanced Energy Materials, 2022Sulfide all‐solid‐state batteries (ASSBs) have been widely acknowledged as next‐generation energy‐storage devices due to their improved safety performance and potentially high energy density.
Yongxing Li+8 more
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