| JOURNAL OF POWER SOURCES | 卷:460 |
| Conductivity, permeability, and stability properties of chemically tailored poly(phenylene oxide) membranes for Li+ conductive non-aqueous redox flow battery separators | |
| Article | |
| McCormack, Patrick M.1  Luo, Hongxi1  Geise, Geoffrey M.1  Koenig, Gary M.1  | |
| [1] Univ Virginia, Dept Chem Engn, 102 Engineers Way,POB 400741, Charlottesville, VA 22904 USA | |
| 关键词: Non-aqueous flow battery; Lithium conducting membrane; Separator; Functional polymer; Energy storage; | |
| DOI : 10.1016/j.jpowsour.2020.228107 | |
| 来源: Elsevier | |
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【 摘 要 】
Non-aqueous redox flow batteries can operate at a higher voltage and energy density than aqueous systems, but developing these batteries will require new membrane separators engineered specifically for non-aqueous applications. Herein, we report the preparation and characterization of a series of membranes engineered specifically for a non-aqueous redox flow battery by functionalizing a poly(phenylene oxide) (PPO) backbone with increasing amounts of a highly sulfonated side chain, phenoxyaniline trisulfonate (POATS). These POATS-PPO membranes appear to be dimensionally stable over a period of at least four months in the non-aqueous electrolyte, and they exhibit lithium ion conductivities greater than that of previously reported control membranes. Ionic conductivity values, measured in non-aqueous and aqueous electrolytes, reveal solvent-specific ionic conductivity properties that differ from expected scaling relationships based on the ionic conductivity of the bulk electrolyte solution. The permeability of the membranes to ferrocene, a representative redox active molecule, does not change significantly with the degree of functionalization of the membrane. As a result, selectivity increases due to the increase in ionic conductivity as the degree of functionalization increases. Overall, the characterization of flow battery-relevant electrochemical properties suggests that these POATS-PPO membranes are promising materials for non-aqueous flow battery applications.
【 授权许可】
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【 预 览 】
| Files | Size | Format | View |
|---|---|---|---|
| 10_1016_j_jpowsour_2020_228107.pdf | 1436KB |
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