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Electrochemical investigation of chemical vapour deposition monolayer and bilayer graphene on the microscale

机译:化学气相沉积单层和双层石墨烯的微观电化学研究

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摘要

A micromanipulator combined with a microinjection system was employed to inject micro-droplets of aqueous solutions containing redox-active species on selected areas of graphene. Chronoamperometric and voltammetric measurements were performed in order to investigate the diffusion regime established within the micro-droplets. The heterogeneous electron transfer rate for two model redox couples, Fe(CN)_6~(3-) and IrCl_6~(2-) were estimated on various regions of chemical vapour deposited monolayer and turbostratic bilayer graphene on the basis of the voltammetric responses. New insights are thus obtained into the electron transfer properties of graphene, which is of primary importance for its exploitation as an electrode material.
机译:使用与显微注射系统结合的显微操纵器,在石墨烯的选定区域上注射含有氧化还原活性物质的水溶液的微滴。进行计时安培法和伏安法测量是为了研究微滴内建立的扩散方式。根据伏安法响应,在化学气相沉积单层和涡轮层双层石墨烯的各个区域,估算了两个模型氧化还原对Fe(CN)_6〜(3-)和IrCl_6〜(2-)的异质电子传输速率。因此获得了对石墨烯的电子转移性质的新见解,这对于将其用作电极材料至关重要。

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