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首页> 外文期刊>ACS nano >Gyrification-Inspired Highly Convoluted Graphene Oxide Patterns for Ultralarge Deforming Actuators
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Gyrification-Inspired Highly Convoluted Graphene Oxide Patterns for Ultralarge Deforming Actuators

机译:用于UltraRALGE变形致动器的Gyrification-Inspired高度复杂的石墨烯氧化物图案

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摘要

Gyrification in the human brain is driven by the compressive stress induced by the tangential expansion of the cortical layer, while similar topographies can also be induced by the tangential shrinkage of the spherical substrate. Herein we introduce a simple three-dimensional (3D) shrinking method to generate the cortex-like patterns using two-dimensional (2D) graphene oxide (GO) as the building blocks. By rotation-dip-coating a GO film on an air-charged latex balloon and then releasing the air slowly, a highly folded hydrophobic GO surface can be induced. Wrinkling-to-folding transition was observed and the folding state can be easily regulated by varying the prestrain of the substrate and the thickness of the GO film. Driven by the residue stresses stored in the system, sheet-to-tube actuating occurs rapidly once the bilayer system is cut into slices. In response to some organic solvents, however, the square bilayer actuator exhibits excellent reversible, bidirectional, large-deformational curling properties on wetting and drying. An ultralarge curvature of 2.75 mm(-1) was observed within 18 s from the original negative bending to the final positive bending in response to tetrahydrofuran (THF). In addition to a mechanical hand, a swimming worm, a smart package, a bionic mimosa, and two bionic flowers, a crude oil collector has been designed and demonstrated, aided by the superhydrophobic and superoleophilic modified GO surface and the solvent-responsive bilayer system.
机译:通过皮质层的切向膨胀引起的压缩应力驱动人脑中的热化,而相似的拓扑也可以通过球面基板的切向收缩来诱导。在此,我们介绍一种简单的三维(3D)收缩方法,以使用二维(2D)石墨烯氧化物(GO)作为构建块产生皮质样图案。通过旋转 - 浸涂在风电乳胶球囊上的膜,然后缓慢地释放空气,可以诱导高度折叠的疏水性去表面。观察到皱纹到折叠的转变,并且可以通过改变基板的普通和去膜的厚度来容易地调节折叠状态。由储存在系统中的残留物应力驱动,一旦双层系统切成切片,就会迅速发生片状致动。然而,响应于一些有机溶剂,方形双层致动器在润湿和干燥上表现出优异的可逆,双向,大变形卷曲性能。在18秒内从原始负弯曲到最终正弯曲以响应于四氢呋喃(THF)而在18秒内观察到高2.75mm(-1)的超级曲率。除了机械手,游泳蠕虫,智能封装,仿生型含羞草和两个仿生花,还设计了一种原油收集器,由超疏水和超级化学改性的去表面和溶剂反应双层系统辅助。

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