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首页> 外文期刊>Small >Recent Progress in Multivalent Metal (Mg, Zn, Ca, and Al) and Metal-Ion Rechargeable Batteries with Organic Materials as Promising Electrodes
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Recent Progress in Multivalent Metal (Mg, Zn, Ca, and Al) and Metal-Ion Rechargeable Batteries with Organic Materials as Promising Electrodes

机译:多价金属(Mg,Zn,Ca和Al)和金属离子可充电电池的最近进展,具有有机材料作为承诺电极

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摘要

The emerging demand for electronic and transportation technologies has driven the development of rechargeable batteries with enhanced capacity storage. Especially, multivalent metal (Mg, Zn, Ca, and Al) and metal-ion batteries have recently attracted considerable interests as promising substitutes for future large-scale energy storage devices, due to their natural abundance and multielectron redox capability. These metals are compatible with nonflammable aqueous electrolytes and are less reactive when exposed in ambient atmosphere as compared with Li metals, hence enabling potential safer battery systems. Luckily, green and sustainable organic compounds could be designed and tailored as universal host materials to accommodate multivalent metal ions. Considering these advantages, effective approaches toward achieving organic multivalent metal and metal-ion rechargeable batteries are highlighted in this Review. Moreover, organic structures, cell configurations, and key relevant electrochemical parameters are presented. Hopefully, this Review will provide a fundamental guidance for future development of organic-based multivalent metal and metal-ion rechargeable batteries.
机译:电子和运输技术的新兴需求推动了具有增强容量储存的可充电电池的开发。特别是,由于它们的天然丰度和多电子氧化还原能力,特别是对未来大型能量存储设备的有前途的替代品,多价金属(Mg,Zn,Ca和Al)和金属离子电池最近吸引了相当大的兴趣。这些金属与不易燃的水性电解质相容,与Li金属相比,当在环境气氛中暴露时较低,因此能够实现潜在的更安全的电池系统。幸运的是,绿色和可持续的有机化合物可以设计和量身定制,以适应多价金属离子。考虑到这些优点,在​​本综述中突出了实现有机多价金属和金属离子可充电电池的有效方法。此外,提出了有机结构,电池配置和关键相关电化学参数。希望这篇评论将为未来的有机多价金属和金属离子可充电电池提供基本指导。

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