Xiao Peishuang, Yi Ningbo, Zhang Tengfei, Huang Yi, Chang Huicong, Yang Yang, Zhou Ying, Chen Yongsheng
Centre for Nanoscale Science and Technology Key Laboratory of Functional Polymer Materials Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) School of Materials Science and Engineering Nankai University Tianjin 300071 P.R. China.
Adv Sci (Weinh). 2016 Mar 31;3(6):1500438. doi: 10.1002/advs.201500438. eCollection 2016 Jun.
Smart actuators have many potential applications in various areas, so the development of novel actuation materials, with facile fabricating methods and excellent performances, are still urgent needs. In this work, a novel electromechanical bimorph actuator constituted by a graphene layer and a PVDF layer, is fabricated through a simple yet versatile solution approach. The bimorph actuator can deflect toward the graphene side under electrical stimulus, due to the differences in coefficient of thermal expansion between the two layers and the converse piezoelectric effect and electrostrictive property of the PVDF layer. Under low voltage stimulus, the actuator (length: 20 mm, width: 3 mm) can generate large actuation motion with a maximum deflection of about 14.0 mm within 0.262 s and produce high actuation stress (more than 312.7 MPa/g). The bimorph actuator also can display reversible swing behavior with long cycle life under high frequencies. on this basis, a fish-like robot that can swim at the speed of 5.02 mm/s is designed and demonstrated. The designed graphene-PVDF bimorph actuator exhibits the overall novel performance compared with many other electromechanical avtuators, and may contribute to the practical actuation applications of graphene-based materials at a macro scale.
智能致动器在各个领域有许多潜在应用,因此开发具有简便制造方法和优异性能的新型致动材料仍然是迫切需求。在这项工作中,通过一种简单而通用的溶液法制备了一种由石墨烯层和聚偏氟乙烯(PVDF)层构成的新型机电双压电晶片致动器。由于两层之间的热膨胀系数差异以及PVDF层的逆压电效应和电致伸缩特性,双压电晶片致动器在电刺激下会向石墨烯一侧偏转。在低电压刺激下,该致动器(长度:20毫米,宽度:3毫米)可在0.262秒内产生最大挠度约为14.0毫米的大驱动运动,并产生高驱动应力(超过312.7兆帕/克)。双压电晶片致动器在高频下也能表现出具有长循环寿命的可逆摆动行为。在此基础上,设计并展示了一种能以5.02毫米/秒的速度游动的鱼形机器人。与许多其他机电致动器相比,所设计的石墨烯-PVDF双压电晶片致动器展现出整体新颖的性能,并可能有助于石墨烯基材料在宏观尺度上的实际驱动应用。