Department of Chemistry, Temple University, Philadelphia, Pennsylvania 19122, USA.
Department of Chemistry, Northwestern University, Evanston, Illinois 60208, USA.
Nat Commun. 2015 Feb 20;6:6321. doi: 10.1038/ncomms7321.
α-Graphyne, a carbon-expanded version of graphene ('carbo-graphene') that was recently evidenced as an alternative zero-gap semiconductor, remains a theoretical material. Nevertheless, using specific synthesis methods, molecular units of α-graphyne ('carbo-benzene' macrocycles) can be inserted between two anilinyl (4-NH2-C6H4)-anchoring groups that allow these fragments to form molecular junctions between gold electrodes. Here, electrical measurements by the scanning tunnelling microscopy (STM) break junction technique and electron transport calculations are carried out on such a carbo-benzene, providing unprecedented single molecule conductance values: 106 nS through a 1.94-nm N-N distance, essentially 10 times the conductance of a shorter nanographenic hexabenzocoronene analogue. Deleting a C4 edge of the rigid C18 carbo-benzene circuit results in a flexible 'carbo-butadiene' molecule that has a conductance 40 times lower. Furthermore, carbo-benzene junctions exhibit field-effect transistor behaviour when an electrochemical gate potential is applied, opening the way for device applications. All the results are interpreted on the basis of theoretical calculations.
α-石墨炔,一种碳扩展的石墨烯(“碳烯”),最近被证明是一种替代零带隙半导体的物质,仍然是一种理论材料。然而,通过特定的合成方法,可以将α-石墨炔的分子单元(“碳苯”大环)插入两个苯胺基(4-NH2-C6H4)锚定基团之间,从而使这些片段在金电极之间形成分子结。在这里,通过扫描隧道显微镜(STM)断键技术和电子输运计算对这样的碳苯进行了电测量,提供了前所未有的单分子电导值:在 1.94nm 的 N-N 距离下通过 106nS,基本上是较短纳米石墨烯六苯并蒄类似物的 10 倍。删除刚性 C18 碳苯电路的 C4 边缘会导致柔性“碳丁二烯”分子的电导降低 40 倍。此外,当施加电化学门控电势时,碳苯结表现出场效应晶体管行为,为器件应用开辟了道路。所有结果都是基于理论计算进行解释的。