Tang Zhen-Hua, Zhu Wei-Bin, Mao Yu-Qin, Zhu Zi-Cai, Li Yuan-Qing, Huang Pei, Fu Shao-Yun
College of Aerospace Engineering, Chongqing University, Chongqing 400044, China.
Shaanxi Key Laboratory of Intelligent Robots, School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.
ACS Appl Mater Interfaces. 2022 May 11;14(18):21474-21485. doi: 10.1021/acsami.2c03157. Epub 2022 Apr 29.
Multiresponsive and high-performance flexible actuators with a simple configuration, high mechanical strength, and low-power consumption are highly desirable for soft robotics. Here, a novel mechanically robust and multiresponsive TiCT MXene-based actuator with high actuation performance via dual-mechanism synergistic effect driven by the hygroexpansion of bacterial cellulose (BC) layer and the thermal expansion of biaxially oriented polypropylene (BOPP) layer is developed. The actuator is flexible and shows an ultrahigh tensile strength of 195 MPa. Unlike the conventional bimorph-structured actuators based on a single-mechanism, the actuator developed provides a favorable architecture for dual-mechanism synergism, resulting in exceptionally reversible actuation performance under electricity and near-infrared (NIR) light stimuli. Typically, the developed actuator can produce the largest bending angle (∼400°) at the lowest voltage (≤4 V) compared with that reported previously for single mechanism soft actuators. Furthermore, the actuator also can be driven by a NIR light at a 2 m distance, displaying an excellent long-distance photoresponsive property. Finally, various intriguing applications are demonstrated to show the great potential of the actuator for soft robotics.
具有简单结构、高机械强度和低功耗的多响应高性能柔性致动器对于软体机器人技术来说是非常理想的。在此,通过细菌纤维素(BC)层的吸湿膨胀和双轴取向聚丙烯(BOPP)层的热膨胀驱动的双机制协同效应,开发了一种新型的基于TiCT MXene的机械坚固且多响应的致动器,该致动器具有高驱动性能。该致动器具有柔性,显示出195 MPa的超高拉伸强度。与基于单一机制的传统双压电晶片结构致动器不同,所开发的致动器为双机制协同作用提供了良好的结构,从而在电和近红外(NIR)光刺激下产生了异常可逆的驱动性能。通常,与先前报道的单机制软致动器相比,所开发的致动器在最低电压(≤4 V)下可产生最大弯曲角度(约400°)。此外,该致动器还可以由2 m距离处的近红外光驱动,显示出优异的长距离光响应特性。最后,展示了各种有趣的应用,以显示该致动器在软体机器人技术中的巨大潜力。