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Monolayer graphene oxide as a building block for artificial muscles

机译:单层氧化石墨烯作为人造肌肉的基础

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The electromechanical actuation of a highly ordered compound of graphene oxide (GO) is shown via ab initio simulations to produce high-performance quantum-mechanical responses, which mimic the behaviour of mammalian skeletal muscle. In addition to large expansive strains (∼10%), this GO compound (asymmetrically unzipped face='roman'>C4 face='roman'>O) exhibits large contractive strains of -4.8% upon -0.15 e/C-atom electron injection. Furthermore, as these contractive strains are coupled with equally high stresses (∼100 GPa) and short response times (∼1  face='roman'>ns), we show that this GO material meets all of the functional requirements of an artificial muscle building block.
机译:通过从头开始的模拟显示了高度有序的氧化石墨烯(GO)的机电致动,以产生高性能的量子力学响应,该响应模仿哺乳动物骨骼肌的行为。除较大的膨胀应变(约10%)外,该GO化合物(不对称解压缩的 face ='roman'> C 4 face ='roman'> O )在注入-0.15 e / C原子电子时表现出-4.8%的大收缩应变。此外,由于这些收缩应变与同样高的应力(〜100 GPa)和较短的响应时间(〜1 face ='roman'> ns )耦合,我们证明了这一点GO材料可满足人造肌肉构造块的所有功能要求。

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