Dadosh Tali, Gordin Yoav, Krahne Roman, Khivrich Ilya, Mahalu Diana, Frydman Veronica, Sperling Joseph, Yacoby Amir, Bar-Joseph Israel
Department of Condensed Matter Physics, Weizmann Institute of Science, 76100 Rehovot, Israel.
Nature. 2005 Aug 4;436(7051):677-80. doi: 10.1038/nature03898.
Electrical conduction through molecules depends critically on the delocalization of the molecular electronic orbitals and their connection to the metallic contacts. Thiolated (- SH) conjugated organic molecules are therefore considered good candidates for molecular conductors: in such molecules, the orbitals are delocalized throughout the molecular backbone, with substantial weight on the sulphur-metal bonds. However, their relatively small size, typically approximately 1 nm, calls for innovative approaches to realize a functioning single-molecule device. Here we report an approach for contacting a single molecule, and use it to study the effect of localizing groups within a conjugated molecule on the electrical conduction. Our method is based on synthesizing a dimer structure, consisting of two colloidal gold particles connected by a dithiolated short organic molecule, and electrostatically trapping it between two metal electrodes. We study the electrical conduction through three short organic molecules: 4,4'-biphenyldithiol (BPD), a fully conjugated molecule; bis-(4-mercaptophenyl)-ether (BPE), in which the conjugation is broken at the centre by an oxygen atom; and 1,4-benzenedimethanethiol (BDMT), in which the conjugation is broken near the contacts by a methylene group. We find that the oxygen in BPE and the methylene groups in BDMT both suppress the electrical conduction relative to that in BPD.
分子间的导电作用严重依赖于分子电子轨道的离域化及其与金属触点的连接。因此,硫醇化(-SH)共轭有机分子被认为是分子导体的良好候选物:在这类分子中,轨道在整个分子主链上离域,硫-金属键上有大量电子云分布。然而,它们相对较小的尺寸,通常约为1纳米,这就需要创新方法来实现一个能正常工作的单分子器件。在此,我们报告一种接触单分子的方法,并利用它来研究共轭分子中定位基团对导电的影响。我们的方法基于合成一种二聚体结构,它由两个通过二硫醇化短有机分子连接的胶体金颗粒组成,并通过静电作用将其捕获在两个金属电极之间。我们研究了通过三种短有机分子的导电情况:4,4'-联苯二硫醇(BPD),一种完全共轭的分子;双(4-巯基苯基)醚(BPE),其共轭在中心处被一个氧原子打断;以及1,4-苯二甲硫醇(BDMT),其共轭在触点附近被一个亚甲基打断。我们发现,相对于BPD,BPE中的氧和BDMT中的亚甲基都抑制了导电。