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April 28, 2026Advanced Functional Materials0 citations

In situ Interlock Interface through Facial Makeup of Quasi‐Solid Electrolyte with Silver Gauze Enabling Uniform Lithium Nucleation and Tip Potential Distribution

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YLYihang LiXQXinhong QiXRXuehua Ruan

Key Points

  • The study aims to address lithium dendrite growth in solid-state lithium metal batteries by creating a uniform lithium nucleation interface.
  • In situ construction of an interlock interface with quasi-solid polymer electrolyte and silver gauze contacting lithium metal anode.
  • Formation of Li-Ag alloy to decrease nucleation barrier and enhance uniform lithium deposition.
  • Evaluation of performance through Li||Li symmetric cells and lithium-ion batteries over multiple charge cycles.
  • Li||Li symmetric cell operates stably for 600 hours at 0.2 mA cm−2.
  • LFP||Li battery retains 95% initial capacity after 850 cycles at 1C.
  • NCM811||Li battery maintains 83% capacity retention after 800 cycles at 0.5C.

Abstract

ABSTRACT Quasi‐solid polymer electrolyte (QSPE) matching lithium metal anode (LMA) enables high energy density and safety of solid‐state lithium metal battery (SSLMB). However, lithium dendrite growth is a key bottleneck for SSLMB practical application, which is attributed to the uneven lithium deposition. The non‐uniform lithium nucleation and “tip effect” induced uneven potential distribution are the primary causes. Herein, we propose to in situ construct an interlock interface through QSPE (PPAIA) with facial silver (Ag) gauze makeup immediate contacting with LMA. Li‐Ag alloy is in situ formed through the immediate contact of Ag in PPAIA with LMA, which decreases the nucleation barrier to uniform lithium nucleation thermodynamically. And the electronic conductive Ag is directly exposed around the Li nuclei to disperse accumulated charges and uniform tip potential distribution, leading to homogeneous Li ions diffusion kinetically. Consequently, homogeneous Li deposition solves the lithium dendrite growth problem. The Li||Li symmetric cell operates stably for 600 h at 0.2 mA cm −2 . The LFP||Li battery retains 95% initial capacity after 850 cycles at 1 C, and the NCM811||Li battery maintains 83% capacity retention after 800 cycles at 0.5 C. This research opens a new avenue for addressing the lithium dendrite growth issue by in situ formed interlock interface between QSPE and LMA.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69f04e9b727298f751e727b1https://doi.org/10.1002/adfm.75604
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