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Structure and properties of chemically prepared nanographene islands characterized by scanning tunneling microscopy

机译:化学制备的纳米石墨烯岛的结构和性能的扫描隧道显微镜表征

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摘要

Single-layer graphene islands with a typical diameter of several nanometers were grown on a Pt (111) substrate. Scanning tunneling microscopy (STM) analysis showed most of islands are hexagonally shaped and the zigzag-type edge predominates over the armchair-type edge. The apparent height at the atoms on the zigzag edge is enhanced with respect to the inside atoms for a small sample bias voltage, while such an enhancement was not observed at the atoms on the armchair edge. This result provides an experimental evidence of spatially (at the zigzag edge) and energetically (at the Fermi level) localized edge state in the nanographene islands, which were prepared chemically on Pt (111).
机译:在Pt(111)基板上生长典型直径为几纳米的单层石墨烯岛。扫描隧道显微镜(STM)分析显示,大多数岛呈六边形形状,而锯齿形边缘在扶手椅形边缘上占主导地位。对于较小的样品偏置电压,锯齿形边缘上的原子处的表观高度相对于内部原子有所增强,而在扶手椅形边缘上的原子处未观察到这种增强。该结果提供了在石墨烯上化学制备的纳米石墨烯岛的空间(在之字形边缘)和能量(在费米能级)局部边缘状态的实验证据。

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