Department of Applied Physics and Mathematics, Columbia University , New York, New York 10027, United States.
J Am Chem Soc. 2014 Jul 23;136(29):10486-92. doi: 10.1021/ja505277z. Epub 2014 Jul 15.
We have measured the single-molecule conductance of a family of oligothiophenes comprising 1-6 thiophene moieties terminated with methyl-sulfide linkers using the scanning tunneling microscope-based break-junction technique. We find an anomalous behavior: the peak of the conductance histogram distribution does not follow a clear exponential decay with increasing number of thiophene units in the chain. The electronic properties of the materials were characterized by optical spectroscopy and electrochemistry to gain an understanding of the factors affecting the conductance of these molecules. We postulate that different conformers in the junction are a contributing factor to the anomalous trend in the observed conductance as a function of molecule length.
我们使用基于扫描隧道显微镜的断键技术测量了一系列由 1-6 个噻吩单元组成的寡噻吩,这些单元的末端带有甲基硫醚链接器。我们发现了一种异常行为:电导直方图分布的峰值并没有随着链中噻吩单元数量的增加而呈现明显的指数衰减。通过光学光谱和电化学对材料的电子性质进行了表征,以了解影响这些分子电导的因素。我们假设在结处的不同构象是导致观察到的电导随分子长度变化的异常趋势的一个因素。