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May 9, 2026ACS Applied Materials & Interfaces0 citations

Latticed Cd 2+ Doping for Enhanced Ionic Transport in Li 2 ZrCl 6 Solid-State Electrolytes toward High-Performance All-Solid-State Batteries

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CWChao WuZWZi WangJCJiawu Cui

Key Points

  • This research aims to improve ionic transport in solid-state electrolytes through Cd2+ doping.
  • Evaluated ionic conductivity at different doping levels
  • Assessed cycling stability over 250 cycles
  • Tested in a wide potential range of 2.5-4.3 V
  • Achieved 80.69% capacity retention after 250 cycles at 2 C
  • Enhanced ionic conductivity observed with Cd2+ doping
  • Broadened working potential range for better battery performance

Abstract

at 0.1 C) within the wide potential range of 2.5-4.3 V and remarkable cycling stability (80.69% capacity retention over 250 cycles at 2 C). In this regard, this work presented a cost-effective structural engineering strategy that simultaneously boosted ionic conductivity and broadened the working potential range to provide a potential model for the large-scale application of halide-based ASSLBs.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69fecf71b9154b0b828766d8https://doi.org/10.1021/acsami.6c03952
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