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The edge- and basal-plane-specific electrochemistry of a single-layer graphene sheet

机译:单层石墨烯片的边缘和基面特定的电化学

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Graphene has a unique atom-thick two-dimensional structure and excellent properties, making it attractive for a variety of electrochemical applications, including electrosynthesis, electrochemical sensors or electrocatalysis, and energy conversion and storage. However, the electrochemistry of single-layer graphene has not yet been well understood, possibly due to the technical difficulties in handling individual graphene sheet. Here, we report the electrochemical behavior at single-layer graphene-based electrodes, comparing the basal plane of graphene to its edge. The graphene edge showed 4 orders of magnitude higher specific capacitance, much faster electron transfer rate and stronger electrocatalytic activity than those of graphene basal plane. A convergent diffusion effect was observed at the sub-nanometer thick graphene edge-electrode to accelerate the electrochemical reactions. Coupling with the high conductivity of a high-quality graphene basal plane, graphene edge is an ideal electrode for electrocatalysis and for the storage of capacitive charges.
机译:石墨烯具有独特的原子厚的二维结构和出色的性能,使其对各种电化学应用具有吸引力,包括电合成,电化学传感器或电催化以及能量转换和存储。然而,单层石墨烯的电化学尚未被很好地理解,这可能是由于处理单个石墨烯片的技术困难。在这里,我们报告了在单层石墨烯基电极上的电化学行为,将石墨烯的基面与其边缘进行了比较。石墨烯边缘显示出比石墨烯基底平面高4个数量级的比电容,更快的电子传递速率和更强的电催化活性。在亚纳米厚的石墨烯边缘电极上观察到会聚扩散效应,以加速电化学反应。石墨烯边缘与高质量石墨烯基面的高电导率相结合,是用于电催化和存储电容电荷的理想电极。

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