We report on the on-surface synthesis of 7 armchair graphene nanoribbons (7-AGNRs) substituted with nitrile (CN) functional groups. The CN groups are attached to the GNR backbone by modifying the 7-AGNR precursor. While many of these groups survive the on-surface synthesis, the reaction process causes the cleavage of some CN from the ribbon backbone and the on-surface cycloisomerization of few nitriles onto pyridine rings. Scanning Tunneling Spectroscopy and Density Functional Theory reveal that CN groups behave as very efficient n-dopants, significantly downshifting the bands of the ribbon, and introducing deep impurity levels associated to the nitrogen electron lone pairs.
翻译:我们报告了用硝酸(CN)功能组替代的7架椅子石墨纳米肋骨(7-AGNRs)的表面合成情况,氯化萘团体通过修改7-AGNR前体附属于GNR骨干,其中许多团体幸存于表面合成,反应过程导致一些氯化萘从丝带脊骨中分裂出来,并在地表上将少量硝化物分解到pyridine环上。扫描隧道光谱和密度功能理论显示,CN团体表现得非常有效率,显著降低丝带带的轮廓,并引入与氮电子单对子有关的深度不纯度。