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A review on mechanistic understanding of MnO2 in aqueous electrolyte for electrical energy storage systems

机译:电能存储系统水电解质中MnO2机械理解综述

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摘要

The demand for the large-scale storage system has gained much interest. Among all the criteria for the large-scale electrical energy storage systems (EESSs), low cost ($ k Wh(-1)) is the focus where MnO2-based electrochemistry can be a competitive candidate. It is notable that MnO2 is one of the few materials that can be employed in various fields of EESSs: alkaline battery, supercapacitor, aqueous rechargeable lithium-ion battery, and metal-air battery. Yet, the technology still has bottlenecks and is short of commercialisation. Discovering key parameters impacting the energy storage and developing systematic characterisation methods for the MnO2 systems can benefit a wide spectrum of energy requirements. In this review, history, mechanism, bottlenecks, and solutions for using MnO2 in the four EESSs are summarised and future directions involving more in-depth mechanism studies are suggested.
机译:对大规模存储系统的需求已经获得了很多兴趣。 在大型电能存储系统(EESS)的所有标准中,低成本($ k wh(-1))是MnO2的电化学可以是竞争候选的焦点。 值得注意的是,MNO2是少量材料之一,可用于eesss的各种领域:碱性电池,超级电容器,可再充电锂离子电池和金属空气电池。 然而,该技术仍然有瓶颈,并且是商业化的缺点。 发现影响能量存储和开发系统表征方法的关键参数MnO2系统可以利用广泛的能量要求。 在本次审查中,概述了在四个EES中使用MNO2的历史,机制,瓶颈和解决方案,并提出了未来涉及更深入的机制研究的未来方向。

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