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Quasi-Continuously Tuning the Size of Graphene Quantum Dots via an Edge-Etching Mechanism

机译:通过边缘刻蚀机制准连续地调整石墨烯量子点的大小

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摘要

Graphene quantum dots (GQDs), a nano version of graphene whose interesting properties that distinguish them from bulk graphene, have recently received significant scientific attention. The quantum confinement effect referring to the size-dependence of physical and chemical properties opens great possibility in the practical applications of this material. However, tuning the size of graphene quantum dots is still difficult to achieve. Here, an edge-etching mechanism which is able to tune the size of GQDs in a quasi-continuous manner is discovered. Different from the ‘unzipping’ mechanism which has been adopted to cut bulk graphitic materials into small fragments and normally cut through the basal plane along the ‘zig-zag’ direction where epoxy groups reside, the mechanism discovered in this research could gradually remove the peripheral carbon atoms of nano-scaled graphene (i.e. GQDs) due to the higher chemical reactivity of the edge carbon atoms than that of inner carbon atoms thereby tuning the size of GQDs in a quasi-continuous fashion. It enables the facile manipulate of the size and properties of GQDs through controlling merely the reaction duration. It is also believed the as discovered mechanism could be generalized for synthesizing various sizes of GQDs from other graphitic precursors (e.g. carbon fibres, carbon nanotubes, etc).
机译:石墨烯量子点(GQDs)是一种石墨烯的纳米形式,其有趣的性质将其与本体石墨烯区分开来,最近受到了广泛的科学关注。涉及物理和化学性质的尺寸依赖性的量子限制效应在该材料的实际应用中打开了很大的可能性。然而,仍然难以实现调节石墨烯量子点的尺寸。在这里,发现了一种边缘蚀刻机制,该机制能够以准连续的方式调整GQD的大小。与已采用的将大块石墨材料切成小碎片并通常沿着环氧基所在的“ Z字形”方向穿过基面的“解压”机制不同,本研究发现的机制可以逐渐消除边缘由于边缘碳原子的化学反应性比内部碳原子的化学反应性高,因此纳米级石墨烯(即GQD)的碳原子数多,从而以准连续的方式调节GQD的大小。通过仅控制反应时间,可以轻松控制GQD的大小和性质。还认为,可以将所发现的机理概括为用于从其他石墨前体(例如碳纤维,碳纳米管等)合成各种尺寸的GQD。

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