微粒
泥浆
聚合物
材料科学
环境科学
化学
复合材料
有机化学
作者
Wen Yan,Caixing Wang,Jiaqi Tian,Guoyin Zhu,Lianbo Ma,Yanrong Wang,Renpeng Chen,Yi Hu,Lei Wang,Tao Chen,Jing Ma,Zhong Jin
标识
DOI:10.1038/s41467-019-10607-0
摘要
Abstract Redox flow batteries are promising for large-scale energy storage, but some long-standing problems such as safety issues, system cost and cycling stability must be resolved. Here we demonstrate a type of redox flow battery that is based on all-polymer particulate slurry electrolytes. Micro-sized and uniformly dispersed all-polymer particulate suspensions are utilized as redox-active materials in redox flow batteries, breaking through the solubility limit and facilitating the application of insoluble redox-active materials. Expensive ion-exchange membranes are replaced by commercial dialysis membranes, which can simultaneously realize the rapid shuttling of H + ions and cut off the migration of redox-active particulates across the separator via size exclusion. In result, the all-polymer particulate slurry redox flow batteries exhibit a highly reversible multi-electron redox process, rapid electrochemical kinetics and ultra-stable long-term cycling capability.
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