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Electrochemistry of individual monolayer graphene sheets

机译:单层石墨烯片的电化学

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We report on the fabrication and measurement of devices designed to study the electrochemical behavior of individual monolayer graphene sheets as electrodes. We have examined both mechanically exfoliated and chemical vapor deposited (CVD) graphene. The effective device areas, determined from cyclic voltammetric measurements, show good agreement with the geometric area of the graphene sheets, indicating that the redox reactions occur on clean graphene surfaces. The electron transfer rates of ferrocenemethanol at both types of graphene electrodes were found to be more than 10-fold faster than at the basal plane of bulk graphite, which we ascribe to corrugations in the graphene sheets. We further describe an electrochemical investigation of adsorptive phenomena on graphene surfaces. Our results show that electrochemistry can provide a powerful means of investigating the interactions between molecules and the surfaces of graphene sheets as electrodes.
机译:我们报告旨在研究单个单层石墨烯片作为电极的电化学行为的设备的制造和测量。我们已经研究了机械剥离和化学气相沉积(CVD)石墨烯。由循环伏安法测量确定的有效器件面积与石墨烯片的几何面积显示出良好的一致性,表明氧化还原反应发生在干净的石墨烯表面上。发现在两种类型的石墨烯电极上,二茂铁甲醇的电子传递速率比在块状石墨基面上的电子传递速率快十倍以上,这归因于石墨烯片中的波纹。我们进一步描述了石墨烯表面吸附现象的电化学研究。我们的结果表明,电化学可以为研究分子与作为电极的石墨烯片表面之间的相互作用提供强有力的手段。

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