College of Materials Science and Engineering, Shenzhen University, Shenzhen 518060, China.
Chem Soc Rev. 2020 Jan 2;49(1):180-232. doi: 10.1039/c9cs00131j.
Over the past two decades, a series of aqueous rechargeable metal-ion batteries (ARMBs) have been developed, aiming at improving safety, environmental friendliness and cost-efficiency in fields of consumer electronics, electric vehicles and grid-scale energy storage. However, the notable gap between ARMBs and their organic counterparts in energy density directly hinders their practical applications, making it difficult to replace current widely-used organic lithium-ion batteries. Basically, this huge gap in energy density originates from cell voltage, as the narrow electrochemical stability window of aqueous electrolytes substantially confines the choice of electrode materials. This review highlights various ARMBs with focuses on their voltage characteristics and strategies that can effectively raise battery voltage. It begins with the discussion on the fundamental factor that limits the voltage of ARMBs, i.e., electrochemical stability window of aqueous electrolytes, which decides the maximum-allowed potential difference between cathode and anode. The following section introduces various ARMB systems and compares their voltage characteristics in midpoint voltage and plateau voltage, in relation to respective electrode materials. Subsequently, various strategies paving the way to high-voltage ARMBs are summarized, with corresponding advancements highlighted. The final section presents potential directions for further improvements and future perspectives of this thriving field.
在过去的二十年中,一系列水系可充电金属离子电池(ARMB)被开发出来,旨在提高消费电子产品、电动汽车和电网规模储能等领域的安全性、环保性和成本效益。然而,ARMB 在能量密度方面与有机同类产品之间的显著差距直接阻碍了它们的实际应用,使其难以替代当前广泛使用的有机锂离子电池。基本上,这种能量密度的巨大差距源于电池电压,因为水系电解液的电化学稳定窗口狭窄,极大地限制了电极材料的选择。本综述重点介绍了各种 ARMB,并关注了可以有效提高电池电压的电压特性和策略。它首先讨论了限制 ARMB 电压的基本因素,即水系电解液的电化学稳定窗口,这决定了阴极和阳极之间允许的最大电位差。接下来的部分介绍了各种 ARMB 系统,并根据各自的电极材料比较了中点电压和平台电压的电压特性。随后,总结了实现高压 ARMB 的各种策略,并突出了相应的进展。最后一部分提出了该蓬勃发展领域进一步改进和未来展望的潜在方向。