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Tunable doping of graphene nanoribbon arrays by chemical functionalization

机译:可调的掺杂石墨烯nanoribbon数组化学功能化

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We demonstrate the controlled tuning of the electronic band structure of large-arrays of graphene nanoribbons (GNRs) by chemical functionalization. The GNR arrays are synthesized by substrate-controlled metal-assisted etching of graphene in H-2 at high temperature, and functionalized with different molecules. From Raman spectroscopy and carrier transport measurements, we found that 4-nitrobenzenediazonium (4-NBD) and diethylene triamine (DETA) molecules can tune the doping level of the GNR arrays to p-and n-type, respectively. In both cases, the doping effects induced in the GNRs were found to be higher than for a pristine graphene sheet, due to the presence of a large quantity of edges. Effects of chemical doping on the Raman spectrum of sp(2) carbon materials are also discussed. Our findings offer an effective way to control the electronic structure of GNRs by chemical functionalization, and are expected to facilitate the production of nanoribbon-based p-n junctions for future implementation into electronic circuits.
机译:我们展示的优化控制电子能带结构的大数组石墨烯带的制作都由化学(GNRs)功能化。由substrate-controlled metal-assisted蚀刻石墨烯在高温、2携带不同的分子。拉曼光谱和航空运输测量,我们发现4-nitrobenzenediazonium (4-NBD)和二三胺(DETA)分子可以优化掺杂GNR水平再n型数组,分别。诱导的GNRs高于被发现原始的石墨烯片,由于存在大量的边缘。拉曼光谱的化学掺杂sp (2)碳材料进行了讨论。提供了一个有效的方法来控制电子结构的GNRs化学功能化,,预计,以方便生产为未来nanoribbon-based pn结实现电子电路。

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