Instituto de Telecomunicações, Instituto Superior Técnico, Avenida Rovisco Pais, P-1049-001 Lisboa, Portugal.
Nanotechnology. 2011 Oct 28;22(43):435604. doi: 10.1088/0957-4484/22/43/435604.
Molecular-scale devices can be made using a step-by-step procedure, in a controllable and highly versatile way. In this report, we describe the growth of molecular wires (MW) from zinc (II) octaethylporphyrin (ZnOEP) assembled on highly oriented pyrolytic graphite (HOPG) by a step-by-step approach using 4,4'-bipyridine (BP) to bridge the porphyrin units, via coordination of the nitrogen atom to zinc. In order to gain an insight into the molecular self-organization of these wires, we carried out a detailed scanning tunnelling microscopy (STM) analysis of each monolayer, using a solid/liquid interface technique, up to a complete ZnOEP/BP/ZnOEP/BP/ZnOEP-assembled structure. The electrical properties of the MWs were assessed by scanning tunnelling spectroscopy (STS) and by current-sensing atomic force microscopy (CS-AFM), showing an increase of electrical resistance with the length of the MW.
分子尺度器件可以通过逐步的程序,以可控且高度通用的方式制造。在本报告中,我们描述了通过逐步方法使用 4,4'-联吡啶 (BP) 桥联卟啉单元,通过氮原子与锌配位,从组装在高取向热解石墨 (HOPG) 上的锌(II)八乙基卟啉 (ZnOEP) 生长分子线 (MW)。为了深入了解这些线的分子自组织,我们使用固/液界面技术对每个单层进行了详细的扫描隧道显微镜 (STM) 分析,直到完成 ZnOEP/BP/ZnOEP/BP/ZnOEP 组装结构。通过扫描隧道谱 (STS) 和电流感应原子力显微镜 (CS-AFM) 评估了 MW 的电学性质,结果表明 MW 的电阻随长度的增加而增加。