Home /Research /Multistimuli‐Responsive Insect‐Scale Soft Robotics Based on Anisotropic Super‐Aligned VO<sub>2</sub> Nanowire/Carbon Nanotube Bimorph Actuators
MANIPULATION

Multistimuli‐Responsive Insect‐Scale Soft Robotics Based on Anisotropic Super‐Aligned VO<sub>2</sub> Nanowire/Carbon Nanotube Bimorph Actuators

Pengcheng Chen, Run Shi, Nan Shen, Zhuoqiong Zhang, Yuxing Liang, Tianran Li, Jingwei Wang, Dejun Kong, Yichen Gan, Abbas Amini, Ning Wang, Chun Cheng

Year
2020
Citations
21

Abstract

The emerging soft robots have attracted increasing interests and gotten rapidly developed, but it is still challenging to substantially promote their response speed and work density. In addition, the wireless way to conveniently trigger the devices, especially for the centimeter‐scale ones, is highly desired. Herein, the multistimuli‐responsive insect‐scale soft robotics is reported based on a super‐aligned VO 2 nanowire arrays (NAs)/carbon nanotube (CNT) bimorph film, comprehensively addressing aforementioned problems. The as‐prepared VO 2 NA/CNT bimorph shows improved actuation performance, anisotropic behavior, rapid response to various stimuli (heat, light, and electricity), and multiple movement modes (bending and torsion). Consequently, diverse untethered, insect‐scale soft robots, serving as biomimetic crawler, lifter, gripper, wing of flying robots, torsional robot, and so on are successfully demonstrated. The findings provide an effective strategy to develop high‐performance macroscopic mechanical devices by assembling functional nanostructures.

Keywords

BimorphMaterials scienceCarbon nanotubeActuatorNanotechnologySoft roboticsRobotNanowireRoboticsNanoscopic scale

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