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Solid-State Batteries
Conductive and Stable CPE Interlayer Solves NASICON Solid-State Battery Challenges, Enabling Over 300 Hours Stable Cycling and 90% Capacity Retention
ACS Publications International Overview NASICON-based solid electrolytes are promising candidates for all-solid-state lithium batteries due to high ionic conductivity and wide electrochemical stability, but interfacial side reactions wit... -
Solid-State Batteries
ACS Paper: Li-Al-Si-Zn Alloy Anode Achieves Ultra-Rapid Charging and Extended Life in All-Solid-State Batteries, Retaining 80% Capacity After 2050 Cycles
ACS Sustainable Chemistry & Engineering USA Overview A quaternary Li-Al-Si-Zn (ASZ@Li) alloy anode has been developed, enabling ultra-rapid charging for all-solid-state batteries through a multiphase electron-ion co-conductive network. A... -
Solid-State Batteries
rGO Enhances Surface Stability of LATP Composite Solid Electrolytes, Achieving 125 mAh/g in Li-LFP Full Cells
ACS Publications Unknown Overview Coating Li1.3Al0.3Ti1.7(PO4)3 (LATP) solid electrolytes with reduced graphene oxide (rGO) significantly enhanced the surface stability of the composite solid electrolyte. This technology effectively prev... -
Solid-State Batteries
Synergistic Integration Achieves High Ionic Conductivity and Mechanical Strength: PIL/MOF Composite Solid Electrolyte Boosts Performance of Li-Metal Batteries
PubMed (Small Methods) Unknown Overview A novel composite poly(ionic liquid)-based solid electrolyte (CPLE) was designed through the synergistic integration of poly(ionic liquid) (PIL) and MOF-5, achieving high-performance all-solid-stat... -
Solid-State Batteries
Dual Interlocked Mediators Enable Ultrafast-Charging, Long-Life Sodium Metal Batteries with Quasi-Solid-State Electrolytes
Research Communities International Overview This research introduces quasi-solid-state electrolytes (QSEs) utilizing dual interlocked mediators to significantly enhance Na+ transport and interfacial chemistry for ultrafast-charging, long...
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