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Advances in the regulation of kinetics of cathodic H+/Zn2+ interfacial transport in aqueous Zn/MnO2 electrochemistry

机译:锌/MnO2水电化学阴极H+/Zn2+界面输运动力学调控研究进展

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摘要

Rechargeable aqueous Zn–MnO2 energy storage systems have attracted extensive attention owing to their high theoretical capacity and non-flammable mild aqueous electrolytes. Nevertheless, the complicated reaction mechanism of a MnO2-based cathode severely restricts its further development. Therefore, it is crucial to clarify the kinetics of H+/Zn2+ interfacial transport in the MnO2 cathode for realizing controllable regulation of interfacial ion transport and then realizing high capacity and long lifespan. Recently, based on different reaction mechanisms, various strategies have been employed to improve the performance of aqueous Zn/MnO2 cells, such as surface modifications and structural engineering. Herein, we systematically summarize the recent advances in the modulation of interfacial H+/Zn2+ transport and related redox kinetics to effectively improve the electrochemical responses. Furthermore, the challenges of designing novel MnO2 cathodes have also been prospected in detail to provide possible guidelines for the development of Zn/MnO2 batteries.
机译:充电水Zn-MnO2储能系统由于引起了广泛的关注他们的理论能力和高不易燃的温和的水电解质。然而,复杂的反应机理MnO2-based阴极严格限制的的进一步发展。阐明H +的动力学/ Zn2 +界面汇总阴极实现运输可控调节界面离子然后实现高容量和运输长寿命。反应机制,各种策略用来提高水的性能锌/汇总细胞,如表面修改结构工程。总结调制的最新进展界面的H + / Zn2 +运输和相关有效提高氧化还原动力学电化学反应。设计新颖的汇总阴极的挑战还展望了详细提供可能发展的指导方针锌/汇总电池。

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