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Nanoporous-Gold-Based Hybrid Cantilevered Actuator Dealloyed and Driven by A Modified Rotary Triboelectric Nanogenerator

机译:基于纳米多孔金的混合悬臂执行器由改进的旋转摩擦电纳米发电机调动和驱动

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摘要

We firstly designed an electrochemical system for dealloying to synthesize nanoporous gold (NPG) and also driving the novel NPG based actuator by utilizing a modified rotary triboelectric nanogenerator (TENG). Compared to the previous reported TENG whose outputs decline due to temperature rising resulting from electrodes friction, the modified TENG with a cooling system has stable output current and voltage increased by 14% and 20%, respectively. The novel cantilevered hybrid actuator characterised by light-weight (ca. 3 mg) and small volume (ca. 30 mm × 2 mm × 10 μm) is driven by a microcontroller modulated TENG with the displacement of 2.2 mm, which is about 106 times larger than that of traditional cantilever using planar surfaces. The energy conversion efficiencies defined as the energy consumed during dealloying and actuation compared with the output of TENG are 47% and 56.7%, respectively.
机译:我们首先设计了一种电化学系统,用于脱金属合成纳米多孔金(NPG),并且还利用改进的旋转摩擦电纳米发电机(TENG)驱动基于NPG的新型致动器。与先前报道的TENG的输出由于电极摩擦导致的温度升高而降低输出功率相比,带有冷却系统的改进型TENG的输出电流和电压稳定增加了14%和20%。新型悬臂混合执行器的特点是重量轻(约3μmg),体积小(约30μmm××2μm××10μm),由微控制器调制的TENG驱动,其位移为2.2μmm,约为10毫米。 sup> 6 倍于使用平面的传统悬臂梁。能量转换效率定义为脱合金和驱动过程中消耗的能量与TENG的输出相比分别为47%和56.7%。

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