论文标题

石墨烯纳米甲合成,电子脱钩和自旋极化测量的多功能平台

A versatile platform for graphene nanoribbon synthesis, electronic decoupling, and spin polarized measurements

论文作者

Cahlík, Aleš, Liu, Danyang, Zengin, Berk, Taskin, Mert, Schwenk, Johannes, Natterer, Fabian Donat

论文摘要

纳米格芬烯的表面合成领导了原型制造结构的指控,其视角以外的是基于硅的技术。在报告了石墨烯 - 纳米邦(GNR)中开放式壳系统(GNR)的报道之后,一系列研究活动旨在以敏锐的眼光研究其磁性特性。尽管纳米含磷酸的合成通常在金上很直接,但很难将其用于电子解耦和自旋极化测量。使用二元合金CU3AU(111),我们展示了如何将有效的金色纳米石膏形成与自旋极化和从铜知道的电子脱钩相结合。我们准备氧化铜层,展示了GNR的热和尖端辅助合成,并生长了热稳定的磁Co岛。我们将扫描隧道显微镜的尖端与千氧化碳,镍或附加CO簇一起使用,以进行高分辨率成像,磁传感或自旋偏置测量。这个多功能平台将是磁性纳米涂片的高级研究中的宝贵工具。

The on-surface synthesis of nano-graphenes has led the charge in prototyping structures with perspectives beyond silicon-based technology. Following reports of open-shell systems in graphene-nanoribbons (GNR), a flurry of research activities is directed at investigating their magnetic properties with a keen eye for spintronic applications. Although the synthesis of nano-graphenes is usually straightforward on gold, it is difficult to use it for electronic decoupling and spin-polarized measurements. Using a binary alloy Cu3Au(111), we show how to combine the efficient gold-like nano-graphene formation with spin polarization and electronic decoupling known from copper. We prepare copper oxide layers, demonstrate thermally and tip-assisted synthesis of GNR and grow thermally stable magnetic Co islands. We functionalize the tip of a scanning tunneling microscope with carbon-monoxide, nickelocene, or attach Co clusters for high-resolution imaging, magnetic sensing, or spin-polarized measurements. This versatile platform will be a valuable tool in the advanced study of magnetic nano-graphenes.

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