Parsimehr Hamidreza, Ehsani Ali
Department of Chemistry, University of New Brunswick, Fredericton, NB E3B 5A3, Canada.
Department of Chemistry, Faculty of Science, University of Qom, Qom, Iran.
Chem Rec. 2022 Sep;22(9):e202200075. doi: 10.1002/tcr.202200075. Epub 2022 Jul 13.
Electrochemical energy storage (EES) devices have been swiftly developed in recent years. Stimuli-responsive EES devices that respond to different external stimuli are considered the most advanced EES devices. The stimuli-responsive EES devices enhanced the performance and applications of the EES devices. The capability of the EES devices to respond to the various external stimuli due to produced advanced EES devices that distinguished the best performance and interactions in different situations. The stimuli-responsive EES devices have responsive behavior to different external stimuli including chemical compounds, electricity, photons, mechanical tensions, and temperature. All of these advanced responsiveness behaviors have originated from the functionality and specific structure of the EES devices. The multi-responsive EES devices have been recognized as the next generation of stimuli-responsive EES devices. There are two main steps in developing stimuli-responsive EES devices in the future. The first step is the combination of the economical, environmental, electrochemical, and multi-responsiveness priorities in an EES device. The second step is obtaining some advanced properties such as biocompatibility, flexibility, stretchability, transparency, and wearability in novel stimuli-responsive EES devices. Future studies on stimuli-responsive EES devices will be allocated to merging these significant two steps to improve the performance of the stimuli-responsive EES devices to challenge complicated situations.
近年来,电化学储能(EES)设备得到了迅速发展。对不同外部刺激做出响应的刺激响应型EES设备被认为是最先进的EES设备。刺激响应型EES设备提高了EES设备的性能和应用。由于生产出了先进的EES设备,EES设备能够对各种外部刺激做出响应,这些先进的EES设备在不同情况下具有最佳性能和相互作用。刺激响应型EES设备对包括化合物、电、光子、机械张力和温度在内的不同外部刺激具有响应行为。所有这些先进的响应行为都源于EES设备的功能和特定结构。多响应型EES设备已被公认为下一代刺激响应型EES设备。未来开发刺激响应型EES设备有两个主要步骤。第一步是在EES设备中结合经济、环境、电化学和多响应性等优先事项。第二步是在新型刺激响应型EES设备中获得一些先进特性,如生物相容性、柔韧性、可拉伸性、透明度和可穿戴性。未来对刺激响应型EES设备的研究将致力于合并这两个重要步骤,以提高刺激响应型EES设备的性能,从而应对复杂情况。