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An ionic electro-active actuator made with graphene film electrode, chitosan and ionic liquid

机译:由石墨烯薄膜电极,壳聚糖和离子液体制成的离子电活性致动器

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摘要

A newly developed ionic electro-active actuator composed of an ionic electrolyte layer sandwiched between two graphene film layers was investigated. Scanning electronic microscopy observation and x-ray diffraction analysis showed that the graphene sheets in the film stacked in a nearly face-to-face fashion but did not restack back to graphite, and the resulting graphene film with low sheet resistance (10 Omega sq(-1)) adheres well to the electrolyte membrane. Contact angle measurement showed the surface energy (37.98 mJ m(-2)) of the ionic electrolyte polymer is 2.67 times higher than that (14.2 mJ m(-2)) of the Nafion membrane, contributing to the good adhesion between the graphene film electrode and the electrolyte membrane. An electric double-layer is formed at the interface between the graphene film electrode and the ionic electrolyte membrane under the input potential, resulting in a higher capacitance of 27.6 mF cm(-2). We report that this ionic actuator exhibits adequate bending strain, ranging from 0.032 to 0.1% (305 to 945 mu m) as functions of voltage.
机译:研究了由离子电解质层夹在两个石墨烯薄膜层之间构成的新开发的离子电活性致动器。扫描电子显微镜观察和X射线衍射分析表明,薄膜中的石墨烯片几乎以面对面的方式堆叠,但没有重新堆叠回石墨,并且所得石墨烯薄膜的薄层电阻低(10 Omega sq( -1))很好地粘附到电解质膜上。接触角测量表明,离子电解质聚合物的表面能(37.98 mJ m(-2))比Nafion膜的表面能(14.2 mJ m(-2))高2.67倍,有助于石墨烯膜之间的良好粘合电极和电解质膜。在输入电势下,石墨烯膜电极与离子电解质膜之间的界面处会形成双电层,从而产生27.6 mF cm(-2)的更高电容。我们报告说,该离子致动器表现出足够的弯曲应变,其弯曲范围为电压的0.032至0.1%(305至945μm)。

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