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Experimentally engineering the edge termination of graphene nanoribbons

机译:实验设计石墨烯纳米带的边缘终止

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The edges of graphene nanoribbons (GNRs) have attracted much interest due to their potentially strong influence on GNR electronic and magnetic properties. Here we report the ability to engineer the microscopic edge termination of high-quality GNRs via hydrogen plasma etching. Using a combination of high-resolution scanning tunneling microscopy and first-principles calculations, we have determined the exact atomic structure of plasma-etched GNR edges and established the chemical nature of terminating functional groups for zigzag, armchair, and chiral edge orientations. We find that the edges of hydrogen-plasma-etched GNRs are generally flat, free of structural reconstructions, and terminated by hydrogen atoms with no rehybridization of the outermost carbon edge atoms. Both zigzag and chiral edges show the presence of edge states.
机译:石墨烯纳米带(GNR)的边缘由于对GNR的电子和磁性有潜在的强大影响,因此引起了人们的极大兴趣。在这里,我们报告了通过氢等离子体蚀刻来设计高质量GNR的微观边缘终止的能力。结合高分辨率扫描隧道显微镜和第一性原理计算,我们确定了等离子体刻蚀GNR边缘的确切原子结构,并确定了锯齿形,扶手椅形和手性边缘取向的终止官能团的化学性质。我们发现,氢等离子体刻蚀的GNR的边缘通常是平坦的,没有结构重建,并且被氢原子终止,而没有最外层碳边缘原子的再杂交。之字形和手性边缘均显示边缘状态的存在。

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