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Graphene Oxide-Enabled Synthesis of Metal Oxide Origamis for Soft Robotics

机译:氧化石墨烯氧化物的合成软机器人的金属氧化物折簇

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摘要

Origami structures have been widely applied in various technologies especially in the fields of soft robotics. Metal oxides (MOs) have recently emerged as unconventional backbone materials for constructing complex origamis with distinct functionalities. However, the MO origami structures reported in the literature were rigid and not deformable, thus limiting their applications to soft robotics. Herein, we reported a graphene oxide (GO) enabled templating synthesis to produce complex MO origami structures from their paper origami templates with high structural replication. The MO origami structures were next stabilized with elastomer, and the MO elastomer origamis were able to be adapted into multiple actuation systems (including magnetic fields, shape-memory alloys, and pneumatics) for the fabrication of MO origami robots. Compared with conventional paper origami robots, the MO robots were lightweight, mechanically compliant, fire-retardant, magnetic responsive, and power efficient. We further demonstrated the legendary phoenix-fire-reborn concept in the soft robotics fields: a paper origami robot sacrificed itself in a fire scene and transformed itself into a downsized Al2O3 robot; the Al2O3 robot was able to crawl through a narrow tunnel where the original paper robot was unfit. These MO reconfigurable origamis provide an expanded material library for building soft robotics, and the functionalities of MO robots can be systematically engineered via the intercalation of various metal ions during the GO-enabled synthesis.
机译:Origami结构已广泛应用于各种技术,特别是在软机器人领域。最近氧化金属氧化物(MOS)作为具有不同功能的复杂折纸的非传统骨干材料。然而,文献中报告的MO折纸结构刚性且不可变形,因此将其应用限制在软机器人上。在此,我们报道了一种石墨烯(GO),使能的模板合成能够产生具有高结构复制的纸张折纸模板的复杂MO折纸结构。接下来用弹性体稳定Mo折纸结构,并且Mo弹性体折纸能够适用于用于制造Mo Origami机器人的多个致动系统(包括磁场,形状记忆合金和气动)。与传统纸张折纸机器人相比,MO机器人重量轻,机械兼容,阻燃,磁性响应性和功率效率。我们进一步展示了软机器人领域的传奇凤凰 - 防火概念:纸张折纸机器人在火灾场景中牺牲自己,并将自己转变为缩小的Al2O3机器人; Al2O3机器人能够通过狭窄的隧道爬行,原始纸质机器人不合适。这些Mo可重新配置的折纸提供了一种用于构建软机器人的扩展材料库,并且可以通过在能够在能够在Go的合成期间通过各种金属离子的插入来系统地设计Mo机器人的功能。

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