Zhang Hao, Ma Suqian, Xu Chuhan, Ma Jiayao, Chen Yan, Hu Yong, Xu Hui, Lin Zhaohua, Liang Yunhong, Ren Lei, Ren Luquan
Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130025, China.
School of Mechanical and Aerospace Engineering, Jilin University, Changchun 130025, China.
Nano Lett. 2024 Apr 9. doi: 10.1021/acs.nanolett.4c01129.
Electroactive artificial muscles with deformability have attracted widespread interest in the field of soft robotics. However, the design of artificial muscles with low-driven voltage and operational durability remains challenging. Herein, novel biomass porous carbon (BPC) electrodes are proposed. The nanoporous BPC enables the electrode to provide exposed active surfaces for charge transfer and unimpeded channels for ion migration, thus decreasing the driving voltage, enhancing time durability, and maintaining the actuation performances simultaneously. The proposed actuator exhibits a high displacement of 13.6 mm (bending strain of 0.54%) under 0.5 V and long-term durability of 99.3% retention after 550,000 cycles (∼13 days) without breaks. Further, the actuators are integrated to perform soft touch on a smartphone and demonstrated as bioinspired robots, including a bionic butterfly and a crawling robot (moving speed = 0.08 BL s). This strategy provides new insight into the design and fabrication of high-performance electroactive soft actuators with great application potential.
具有可变形性的电活性人工肌肉在软机器人领域引起了广泛关注。然而,设计低驱动电压和操作耐久性的人工肌肉仍然具有挑战性。在此,提出了新型生物质多孔碳(BPC)电极。纳米多孔BPC使电极能够提供用于电荷转移的暴露活性表面和用于离子迁移的畅通通道,从而降低驱动电压,提高时间耐久性,并同时保持驱动性能。所提出的致动器在0.5 V电压下表现出13.6 mm的高位移(弯曲应变0.54%),在550,000次循环(约13天)后长期耐久性保持率为99.3%,无故障。此外,这些致动器被集成用于在智能手机上执行软触摸,并被展示为受生物启发的机器人,包括仿生蝴蝶和爬行机器人(移动速度 = 0.08 BL s)。该策略为具有巨大应用潜力的高性能电活性软致动器的设计和制造提供了新的见解。