首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Synergistic effect of a r-GO/PANI nanocomposite electrode based air working ionic actuator with a large actuation stroke and long-term durability
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Synergistic effect of a r-GO/PANI nanocomposite electrode based air working ionic actuator with a large actuation stroke and long-term durability

机译:基于r-GO / PANI纳米复合电极的气动工作离子致动器的协同效应,具有较大的致动行程和长期的耐用性

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摘要

Actuators can directly convert various types of energy into mechanical motions. In this work, we constructed a novel air working ionic actuator by sandwiching sulfuric acid-poly(vinyl alcohol) (H2SO4-PVA) gel electrolyte between two pieces of reduced graphene oxide/polyaniline (r-GO/PANI) nanocomposite film based electrode, in which the PANI nanoparticles were uniformly decorated onto the r-GO sheet surfaces through an in situ polymerization method. A combination of the supramechanical properties, electrical conductivity, large surface area of the individual graphene sheets and excellent electrochemical properties of the PANI component results in the composite electrode having good mechanical properties and a high electrochemical capacitance. Later tests indicated that the actuator could be stimulated under a low driving voltage (<= 0.5 V) without trade-off actuator strokes, and showed excellent long-term actuation durability. Under a 0.5 V operating voltage, the actuation strain of the r-GO/PANI actuator could reach 0.327%, corresponding to a 30 MPa generated stress. We attribute the excellent actuation performance to the synergistic effect of the r-GO sheets and the PANI component.
机译:执行器可以直接将各种类型的能量转换为机械运动。在这项工作中,我们将硫酸-聚乙烯醇(H2SO4-PVA)凝胶电解质夹在两片还原的氧化石墨烯/聚苯胺(r-GO / PANI)纳米复合膜基电极之间,构造了一种新型的空气工作离子致动器,其中,通过原位聚合方法将PANI纳米颗粒均匀地装饰在r-GO片材表面上。超机械性能,电导率,单个石墨烯片的大表面积以及PANI组分的优异电化学性能的组合导致复合电极具有良好的机械性能和较高的电化学电容。后来的测试表明,可以在低驱动电压(<= 0.5 V)下激励执行器,而无需权衡执行器行程,并显示出出色的长期执行耐久性。在0.5 V的工作电压下,r-GO / PANI执行器的执行应变可达到0.327%,对应于30 MPa的产生应力。我们将出色的驱动性能归因于r-GO片和PANI组件的协同效应。

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