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DOI:10.1002/inf2.12584.png)
Abstract
En 中文
A continuous electrospinning technique is designed to interweave oxide solid electrolytes into electrode/electrolyte integrated ultra-thin films, which have a continuous three-dimensional ion transport network, high ion conductivity, and particularly significant lithium metal stability. The assembled symmetrical battery exhibits excellent cycling stability, due to the effect of high-performance polymer ceramic nanoparticle reinforced fiber ultra-thin film and the synergistic effect of integrated spinning process on cathode and lithium metal. The solid electrolyte film prepared by positive electrode interface continuous spinning technology forms a stable, ultra-thin, and compact interface, exhibiting excellent electrochemical performance and high energy density, paving the way for the application of high-performance composite solid-state batteries.
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