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石墨烯纳米带中一种普遍存在的长度依赖振动模式。

A Universal Length-Dependent Vibrational Mode in Graphene Nanoribbons.

作者信息

Overbeck Jan, Barin Gabriela Borin, Daniels Colin, Perrin Mickael L, Braun Oliver, Sun Qiang, Darawish Rimah, De Luca Marta, Wang Xiao-Ye, Dumslaff Tim, Narita Akimitsu, Müllen Klaus, Ruffieux Pascal, Meunier Vincent, Fasel Roman, Calame Michel

机构信息

Empa, Swiss Federal Laboratories for Materials Science and Technology , 8600 Dübendorf , Switzerland.

Department of Physics , University of Basel , 4056 Basel , Switzerland.

出版信息

ACS Nano. 2019 Nov 26;13(11):13083-13091. doi: 10.1021/acsnano.9b05817. Epub 2019 Oct 15.

Abstract

Graphene nanoribbons (GNRs) have attracted considerable interest, as their atomically tunable structure makes them promising candidates for future electronic devices. However, obtaining detailed information about the length of GNRs has been challenging and typically relies on low-temperature scanning tunneling microscopy. Such methods are ill-suited for practical device application and characterization. In contrast, Raman spectroscopy is a sensitive method for the characterization of GNRs, in particular for investigating their width and structure. Here, we report on a length-dependent, Raman-active low-energy vibrational mode that is present in atomically precise, bottom-up-synthesized armchair graphene nanoribbons (AGNRs). Our Raman study demonstrates that this mode is present in all families of AGNRs and provides information on their length. Our spectroscopic findings are corroborated by scanning tunneling microscopy images and supported by first-principles calculations that allow us to attribute this mode to a longitudinal acoustic phonon. Finally, we show that this mode is a sensitive probe for the overall structural integrity of the ribbons and their interaction with technologically relevant substrates.

摘要

石墨烯纳米带(GNRs)已引起了广泛关注,因为其原子级可调节的结构使其成为未来电子器件的有潜力候选材料。然而,获取有关GNRs长度的详细信息一直具有挑战性,通常依赖于低温扫描隧道显微镜。此类方法不适用于实际器件应用和表征。相比之下,拉曼光谱是表征GNRs的一种灵敏方法,尤其适用于研究其宽度和结构。在此,我们报道了一种与长度相关的、具有拉曼活性的低能振动模式,该模式存在于原子精确、自下而上合成的扶手椅型石墨烯纳米带(AGNRs)中。我们的拉曼研究表明,这种模式存在于所有AGNRs家族中,并能提供有关其长度的信息。我们的光谱学发现得到了扫描隧道显微镜图像的证实,并得到了第一性原理计算的支持,这些计算使我们能够将这种模式归因于纵向声学声子。最后,我们表明这种模式是带状物整体结构完整性及其与技术相关衬底相互作用的灵敏探针。

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