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Reversible electrical reduction and oxidation of graphene oxide

机译:氧化石墨烯的可逆电还原和氧化

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摘要

We demonstrate that graphene oxide can be reversibly reduced and oxidized using electrical stimulus. Controlled reduction and oxidation in two-terminal devices containing multilayer graphene oxide films are shown to result in switching between partially reduced graphene oxide and graphene, a process which modifies the electronic and optical properties. High-resolution tunneling current and electrostatic force imaging reveal that graphene oxide islands are formed on multilayer graphene, turning graphene into a self-assembled heterostructure random nanomesh. Charge storage and resistive switching behavior is observed in two-terminal devices made of multilayer graphene oxide films, correlated with electrochromic effects. Tip-induced reduction and oxidation are also demonstrated. Results are discussed in terms of thermodynamics of oxidation and reduction reactions.
机译:我们证明了氧化石墨烯可以使用电刺激可逆地还原和氧化。显示出在包含多层氧化石墨烯薄膜的两端器件中受控的还原和氧化作用会导致部分还原的氧化石墨烯和石墨烯之间的转换,该过程会改变电子和光学性能。高分辨率隧道电流和静电力成像显示,石墨烯氧化物岛形成在多层石墨烯上,从而将石墨烯变成自组装的异质结构随机纳米网。在由多层氧化石墨烯薄膜制成的两端子器件中观察到电荷存储和电阻切换行为,这与电致变色效应相关。还显示了尖端引起的还原和氧化。根据氧化和还原反应的热力学讨论了结果。

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