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采用嵌入氧化锌纳米线渗滤网络的光寻址介电弹性体致动器阵列。

Optically addressable dielectric elastomer actuator arrays using embedded percolative networks of zinc oxide nanowires.

机构信息

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.

出版信息

Mater Horiz. 2022 Nov 28;9(12):3110-3117. doi: 10.1039/d2mh01032a.

Abstract

Dielectric elastomer actuators (DEAs) are electrically driven soft actuators that generate fast and reversible deformations, enabling lightweight actuation of many novel soft robots and haptic devices. However, the high-voltage operation of DEAs combined with the paucity of soft, small high-voltage microelectronics has limited the number of discrete DEAs that can be incorporated into soft robots. This has hindered the versatility as well as complexity of the tasks that they can perform which, in practice, depends on the number of independently addressable actuating elements. This paper presents a new class of optically addressable dielectric elastomer actuators that utilize the photoconductivity of semiconducting zinc oxide nanowires to create optically switchable and stretchable electrical channels. This enables non-contact, optical control of local actuation. To illustrate the versatility of the new capabilities of this integration, we describe the response of dielectric elastomer actuators with integrated photoconductive channels, formed from thin films of percolating semiconducting nanoparticles. By using a switchable array of small light emitting diodes to optically address the actuator array, its actuation can be controlled both spatially and temporally.

摘要

介电弹性体致动器(Dielectric Elastomer Actuators,简称 DEAs)是一种电驱动的软致动器,能够产生快速且可逆的变形,从而实现许多新型软体机器人和触觉设备的轻巧驱动。然而,DEAs 的高压操作与缺乏柔软、小型高压微电子技术相结合,限制了可集成到软体机器人中的离散 DEAs 的数量。这不仅限制了它们能够执行任务的多功能性和复杂性,而且还取决于能够独立寻址的致动元件的数量。本文提出了一种新型的光寻址介电弹性体致动器,它利用半导体氧化锌纳米线的光电导性来创建光可切换和可拉伸的电通道。这实现了非接触式、光学局部致动控制。为了说明这种集成的新功能的多功能性,我们描述了具有集成光电导通道的介电弹性体致动器的响应,这些通道由半导体纳米颗粒的渗流薄膜形成。通过使用可切换的小发光二极管阵列对致动器阵列进行光学寻址,可以对其进行空间和时间控制。

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