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Stabilization Perspective on Metal Anodes for Aqueous Batteries

机译:含水电池金属阳极稳定透视

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摘要

Aqueous electrolyte-based batteries have attracted increasing attention because of nonflammability, low cost, high power density, and environmental friendliness. However, the low energy density of aqueous lithium-ion batteries caused by the narrow stable electrochemical window of water and electrode materials with low capacity severely limits their further development. In this regard, the development of metal anodes with high specific capacity shows excellent prospects. For example, metal zinc and aluminum anodes have high theoretical specific capacity, rich resources, and environmental friendliness, and can be used as promising anodes for high-energy-density aqueous rechargeable metal batteries. Unfortunately, metal anodes usually face balance issues with regard to stability and activity associated with dendrite growth and undesired side reactions in water-based electrolytes, which is still a great challenge for aqueous metal batteries. In this review, various aqueous metal batteries including aqueous rechargeable metal batteries and aqueous metal-air batteries are summarized and highlighted. Recent advances in the design of high-safety aqueous electrolytes and the strategies for metal anode protection are comprehensively reviewed. In addition, emerging challenges and some perspectives on the development of high-energy-density aqueous metal batteries are included.
机译:由于不燃料,低成本,高功率密度和环境友好,含水电解质电池吸引了越来越多的关注。然而,由水和电极材料的窄稳定电化学窗口引起的水锂离子电池的低能量密度严重限制了它们的进一步发展。在这方面,具有高特异性容量的金属阳极的发展显示出优异的前景。例如,金属锌和铝阳极具有很高的理论特异性容量,资源丰富和环境友好性,并且可以用作高能密度含水可充电金属电池的有前途的阳极。遗憾的是,金属阳极通常面对与水性水解物中的稳定性和活性有关的稳定性和活性,这对于含水金属电池仍然是一个巨大的挑战。在本文中,总结并突出了各种含水金属电池和包括可充电金属电池和含水金属电池的水性电池。最近在高安全性水性电解质设计方面的进展和金属阳极保护的策略进行了综述。此外,还包括新出现的挑战和关于高能量密度含水电池的发展的一些观点。

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