材料科学
执行机构
纳米技术
人工肌肉
碳纳米管
双层
光热治疗
石墨烯
仿生学
弯曲
图层(电子)
软机器人
复合材料
膜
智能材料
计算机科学
人工智能
生物
遗传学
作者
Wen Wang,Chenxue Xiang,Qing Zhu,Weibing Zhong,Mufang Li,Kelu Yan,Dong Wang
标识
DOI:10.1021/acsami.8b08554
摘要
Smart devices with abilities of perceiving, processing, and responding are attracting more and more attentions due to the emerging development of artificial intelligent systems, especially in biomimetic and intelligent robotics fields. Designing a smart actuator with high flexibility and multistimulation responsive behaviors to simulate the movement of creatures, such as weight lifting, heavy objects carrying via simple materials, and structural design is highly demanded for the development of intelligent systems. Herein, a soft actuator that can produce reversible deformations under the control of light, thermal, and humidity is fabricated by combining high photothermal properties of CNT/PDMS layer with the natural hydrophilic GO layer. Due to the asymmetric double-layer structure, the novel bilayer membrane-based actuator showed different bending directions under photothermal and humidity stimulations, resulting in bidirectional controllable bending behaviors. In addition, the actuation behaviors can be well controlled by directionally aligning the graphene oxide onto carbon nanotube/PDMS layer. The actuator can be fabricated into a series of complex biomimetic devices, such as, simulated biomimetic fingers, smart "tweezers", humidity control switches, which has great potential applications in flexible robots, artificial muscles, and optical control medical devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI