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A Nondeposition Solid-Solution Li Alloy Anode for Solid-State Batteries
DOI:10.1021/acsenergylett.5c02665.png)
Abstract
En 中文
Lithium-based metal has been regarded as the most promising anode for high-energy all-solid-state lithium metal batteries (ASLMBs). However, its uncontrollable deposition/dissolution mechanism causes fast cell failure due to severe dendritic growth, poor interfacial stability, and rapid mechanical degradation. Herein, a nondeposition Li alloy was developed via a thermo-mechanical coupled synthesis with flexible processability and capacity customizability. A single-phase LiGa alloy with dual electronic/ionic conductivity and a low working potential (0.2 V) was obtained that exhibited a reversible solid-solution alloy/dealloy mechanism, thus fundamentally avoiding the deposition of highly active metallic Li at the electrolyte/anode interface. With prominent merits of both nondeposition mechanism and electronic/ionic conductivity, the LiGa-based symmetric cell with Li6PS5Cl enables a radically extended lifespan from 450 to 6000 h and an ultrahigh current density exceeding 7.1 mAcm-2. Besides, this nondeposition-type Li alloy allows high stability toward various solid electrolytes, including poly(ethylene oxide), Li3InCl6, and Li1.5Al0.5Ge1.5(PO4)3, providing new choices for high-energy ASLMBs.
Keywords:
LITHIUM

