Ding Yu, Guo Xuelin, Qian Yumin, Xue Leigang, Dolocan Andrei, Yu Guihua
Materials Science and Engineering Program, Texas Materials Institute, The University of Texas at Austin, Austin, TX, 78712, USA.
Adv Mater. 2020 Jul;32(30):e2002577. doi: 10.1002/adma.202002577. Epub 2020 Jun 17.
Liquid metal batteries are regarded as potential electrochemical systems for stationary energy storage. Currently, all reported liquid metal batteries need to be operated at temperatures above 240 °C to maintain the metallic electrodes in a molten state. Here, an unprecedented room-temperature liquid metal battery employing a sodium-potassium (Na-K) alloy anode and gallium (Ga)-based alloy cathodes is demonstrated. Compared with lead (Pb)- and mercury (Hg)-based liquid metal electrodes, the nontoxic Ga alloys maintain high environmental benignity. On the basis of improved wetting and stabilized interfacial chemistry, such liquid metal batteries deliver stable cycling performance and negligible self-discharge. Different from the conventional interphase between a typical solid electrode and a liquid electrolyte, the interphase between a liquid metal and a liquid electrolyte is directly visualized via advanced 3D chemical analysis. Insights into this new type of liquid electrode/electrolyte interphase reveal its important role in regulating charge carriers and stabilizing the redox chemistry. With facile cell fabrication, simplified battery structures, high safety, and low maintenance costs, room-temperature liquid metal batteries not only show great prospects for widespread applications, but also offer a pathway toward developing innovative energy-storage devices beyond conventional solid-state batteries or high-temperature batteries.
液态金属电池被视为用于固定式储能的潜在电化学系统。目前,所有已报道的液态金属电池都需要在240°C以上的温度下运行,以保持金属电极处于熔融状态。在此,展示了一种前所未有的室温液态金属电池,其采用钠钾(Na-K)合金阳极和镓(Ga)基合金阴极。与铅(Pb)基和汞(Hg)基液态金属电极相比,无毒的镓合金保持了高度的环境友好性。基于改善的润湿性和稳定的界面化学,这种液态金属电池具有稳定的循环性能且自放电可忽略不计。与典型固体电极和液体电解质之间的传统界面不同,液态金属与液体电解质之间的界面通过先进的3D化学分析得以直接可视化。对这种新型液体电极/电解质界面的深入了解揭示了其在调节电荷载流子和稳定氧化还原化学方面的重要作用。凭借简便的电池制造、简化的电池结构、高安全性和低维护成本,室温液态金属电池不仅展现出广泛应用的巨大前景,还为开发超越传统固态电池或高温电池的创新储能装置提供了一条途径。