Wang Bozheng, Huang Peng, Li Bingjue, Wu Ze, Xing Youqiang, Zhu Jianxiong, Liu Lei
Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments School of Mechanical Engineering, Southeast University, Nanjing, 211189, P. R. China.
Small. 2023 Dec;19(50):e2304246. doi: 10.1002/smll.202304246. Epub 2023 Aug 27.
With the rapid development of autonomous and intelligent devices driven by soft actuators, ion soft actuators in flexible intelligent devices have several advantages over other actuators, including their light weight, low voltage drive, large strain, good flexibility, fast response, etc. Traditional ionic polymer metal composites have received a lot of attention over the past decades, but they suffer from poor driving performance and short service lives since the precious metal electrodes are not only expensive, heavy, and labor-intensive, but also prone to cracking with repeated actuation. As excellent candidates for the electrode materials of ionic soft actuators, carbon-based nanomaterials have received a lot of interest because of their plentiful reserves, low cost, and excellent mechanical, electrical, and electrochemical properties. This research reviewed carbon-based nanomaterial electrodes of ion soft actuators for flexible smart devices from a fresh perspective from 1D to 3D combinations. The design of the electrode structure is introduced after the driving mechanism of ionic soft actuators. The details of ionic soft actuator electrodes made of carbon-based nanomaterials are then provided. Additionally, a summary of applications for flexible intelligent devices is provided. Finally, suggestions for challenges and prospects are made to offer direction and inspiration for further development.
随着由软驱动器驱动的自主和智能设备的快速发展,柔性智能设备中的离子软驱动器相对于其他驱动器具有若干优势,包括重量轻、低电压驱动、大应变、良好的柔韧性、快速响应等。在过去几十年中,传统的离子聚合物金属复合材料受到了广泛关注,但由于贵金属电极不仅昂贵、沉重且制作工艺复杂,而且在反复驱动时容易开裂,导致其驱动性能不佳且使用寿命较短。作为离子软驱动器电极材料的优秀候选者,碳基纳米材料因其储量丰富、成本低以及优异的机械、电学和电化学性能而备受关注。本研究从全新的视角,即从一维到三维组合,对用于柔性智能设备的离子软驱动器的碳基纳米材料电极进行了综述。在介绍离子软驱动器的驱动机制之后,引入了电极结构的设计。随后详细介绍了由碳基纳米材料制成的离子软驱动器电极。此外,还总结了其在柔性智能设备中的应用。最后,针对挑战和前景提出了建议,为进一步发展提供方向和灵感。