执行机构
耐久性
材料科学
导电体
纳米技术
电活性聚合物
人工肌肉
电压
离子
电导率
机械工程
计算机科学
电气工程
复合材料
化学
工程类
物理化学
有机化学
作者
Onnuri Kim,Hoon Kim,U Hyeok Choi,Moon Jeong Park
摘要
The key challenges in the advancement of actuator technologies related to artificial muscles include fast-response time, low operation voltages and durability. Although several researchers have tackled these challenges over the last few decades, no breakthrough has been made. Here we describe a platform for the development of soft actuators that moves a few millimetres under 1 V in air, with a superfast response time of tens of milliseconds. An essential component of this actuator is the single-ion-conducting polymers that contain well-defined ionic domains through the introduction of zwitterions; this achieved an exceptionally high dielectric constant of 76 and a 300-fold enhancement in ionic conductivity. Moreover, the actuator demonstrated long-term durability, with negligible changes in the actuator stroke over 20,000 cycles in air. Owing to its low-power consumption (only 4 mW), we believe that this actuator could pave the way for cutting-edge biomimetic technologies in the future.
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