Wang Faxing, Zhang Panpan, Wang Gang, Nia Ali Shaygan, Yu Minghao, Feng Xinliang
Center for Advancing Electronics Dresden (cfaed) & Faculty of Chemistry and Food Chemistry Technische Universität Dresden Mommsenstrasse 4 Dresden 01069 Germany.
Small Sci. 2021 Oct 24;2(2):2100080. doi: 10.1002/smsc.202100080. eCollection 2022 Feb.
Electrochemical energy storage (EES) devices integrated with smart functions are highly attractive for powering the next-generation electronics in the coming era of artificial intelligence. In this regard, exploiting functional electrolytes represents a viable strategy to realize smart functions in EES devices. In this review, recent advances in the development of functional electrolytes for smart EES devices like rechargeable batteries and supercapacitors are presented. Various stimulus-responsive electrolytes are first summarized, including temperature-, mechanical force-, voltage-, magnetism-, and light-responsive electrolytes. Emphasis is placed on the working principles of stimulus-responsive electrolytes and their specific problem-solving functions in EES devices. Then, the latest advances in electrochromic and self-healing electrolytes used for smart EES devices are discussed. Finally, key challenges and research opportunities related to functional electrolyte design and smart EES device development are envisioned, with the goal of accelerating further research in this thriving field.
集成智能功能的电化学储能(EES)设备对于在即将到来的人工智能时代为下一代电子产品供电极具吸引力。在这方面,开发功能性电解质是在EES设备中实现智能功能的可行策略。在这篇综述中,介绍了用于智能EES设备(如可充电电池和超级电容器)的功能性电解质开发的最新进展。首先总结了各种刺激响应性电解质,包括温度、机械力、电压、磁性和光响应性电解质。重点介绍了刺激响应性电解质的工作原理及其在EES设备中的特定问题解决功能。然后,讨论了用于智能EES设备的电致变色和自修复电解质的最新进展。最后,展望了与功能性电解质设计和智能EES设备开发相关的关键挑战和研究机会,目标是加速这一蓬勃发展领域的进一步研究。