Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Regulating membrane ion clusters to alleviate ammonia crossover in thermally regenerative batteries

作者:Si Li, Y. Tang, Yichao An, Liang Zhang, Jun Li, Xun Zhu, Qiang Liao · 发表于:Applied Physics Letters · 年份:2025 · DOI:10.1063/5.0289268 · 被引用次数:2 · 研究领域:Ammonia Synthesis and Nitrogen Reduction、Advanced battery technologies research、Advanced Battery Materials and Technologies

In all-aqueous thermally regenerative ammonia battery (ATRB), ammonia crossover from anolyte to catholyte causes self-discharge, resulting in capacity decay. Based on the transport mechanism of small molecules in Nafion membranes, recast membranes were fabricated via solution casting to regulate their microstructure and alleviate ammonia crossover. Compared with the commercial Nafion membrane, the recast membrane demonstrated smaller and more dispersed ionic cluster structures along with enhanced dimensional stability, achieving a 53.6% reduction in ammonia permeability and a 2.9-fold increase in discharge capacity. Experimental results confirmed that ammonia transport predominantly occurs through hydrophilic ionic cluster channels within the membrane. Thermal treatment effectively regulates the membrane's microstructure, with the 130 °C-treated recast membrane exhibiting the lowest ammonia permeability, attributed to its minimized ionic cluster size. This study provides a simple and efficient strategy for alleviation of ammonia crossover in ATRB.