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A small graphene oxide sheet/polyvinylidene fluoride bilayer actuator with large and rapid responses to multiple stimuli

机译:一张小的氧化石墨烯/聚乙二烯氟化物双层大和快速的执行机构对多个刺激反应

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摘要

A high-performance actuator should be able to deliver large-shape deformations, fast actuations and sensitive responses to multiple stimuli. Here, we report such an actuator constructed from one layer of polyvinylidene fluoride (PVDF) with a high coefficient of thermal expansion (CTE), and another layer of small sheets of graphene oxide (SGO) with a negative CTE. The opposite deformations of both actuation layers make the SGO/PVDF bilayer actuator highly sensitive to the temperature stimulus with a large bending sensitivity of 1.5 cm(-1) degrees C-1. Upon irradiation with 60 mW cm(-2) infrared light, this SGO/PVDF bilayer actuator displayed an extremely rapid tip displacement rate of 140 mm s(-1). Furthermore, this actuator can also sensitively respond to moisture because of its SGO layer, showing a curvature change from -22 to 13 cm(-1) upon changing the relative humidity (RH) from 11% to 86%. This actuator can generate a contractile or relaxed stress 18 times that of mammalian skeletal muscle, under light irradiation or moisture with a response time as short as 1 s, being capable of lifting an object with a weight 80 times that of itself. Furthermore, it also showed excellent stability and repeatability.
机译:高性能驱动器应该可以交付large-shape变形、快速动作和多个刺激的敏感反应。在这里,我们报告这样的致动器由一层的聚偏二氟乙烯(PVDF)高热膨胀系数(CTE),和一层小石墨烯氧化- CTE (SGO)。驱动层的变形SGO / PVDF双层致动器高度敏感温度刺激与一个大弯灵敏度的1.5厘米(1)颈- 1度。辐照与60 mW厘米(2)红外线,这个SGO / PVDF双层致动器显示一个极其快速的尖端位移速度为140毫米(1)。因为它的敏感响应水分SGO层,显示从-22年到曲率变化13厘米(1)变化的相对湿度(RH)从11%降至86%。收缩或放松压力的18倍哺乳动物的骨骼肌,光之下辐照或水分响应时间短1 s,能够提升一个对象本身重量的80倍。此外,它还显示良好的稳定性和可重复性。

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