Current position: Home >> Publication
Hanyu Huo

Personal Information

Supervisor of Doctorate Candidates  
Supervisor of Master's Candidates  

Publication

Halide Electrolytes for All‐Solid‐State Sodium Batteries: From Fundamental Chemistry to Interface Engineering

Hits:

DOI number:10.1002/adma.202521368

Journal:Advanced Materials

Key Words:All-solid-state sodium batteries (ASSSBs) stand out as a transformative energy storage technology, combining sodium's natural abundance with enhanced safety and competitive energy density. Solid electrolytes are pivotal to this innovation, with halide electrolytes emerging as prominent candidates due to their unique strengths—superior deformability for intimate electrode contact, strong cathode compatibility, and promising Na-ion conductivity. Despite recent progress, significant challenges persist in scalable synthesis, performance optimization, and mechanistic understanding of ion transport and interfacial interactions. This review comprehensively covers sodium-based halide electrolytes, including their structural chemistry, ion transport, synthesis, modification, electrochemical stability, interfacial behavior, and computational insights. We further integrate a systematic framework to elucidate intricate synthesis–structure–property relationships, enabling a holistic understanding for rational material design. Crucially, this work distinguishes itself by distilling concrete design principles for Na-halide conductors, providing quantitative insights into humidity stability, and establishing in-depth correlations between interphases/degradation modes and full-cell metrics. Moreover, a practical assessment of key performance metrics (energy density, power density, cycle life) and design guidance is presented. Finally, we pinpoint critical barriers (moisture sensitivity, anode incompatibility, and conductivity limitations) and outline a roadmap emphasizing compositional design, interface engineering, manufacturing scalability, machine learning, operando characterization, and standardized metrics to accelerate commercialization.

Indexed by:Journal paper

Translation or Not:no

Date of Publication:2026-03-06

Links to published journals:https://advanced.onlinelibrary.wiley.com/doi/abs/10.1002/adma.202521368

Pre One:Universal Electro-Chemo-Mechanical Interface Engineering toward Dendrite-Free Solid-State Lithium Metal Batteries

Next One:Phase‐Transition Engineering Enables Low‐Strain Cathodes for 192 Wh kg−1 Sodium‐Ion Batteries