Laboratory of Atomic and Solid State Physics, Kavli Institute at Cornell, Cornell University, Ithaca, New York 14853, United States.
ACS Nano. 2011 Jun 28;5(6):5115-23. doi: 10.1021/nn201199b. Epub 2011 May 23.
We have investigated the conductance of individual optically switchable dithienylethene molecules in both their conducting closed configuration and nonconducting open configuration, using the technique of repeatedly formed break-junctions. We employed pyridine groups to link the molecules to gold electrodes in order to achieve relatively well-defined molecular contacts and stable conductance. For the closed form of each molecule, we observed a peak in the conductance histogram constructed without any data selection, allowing us to determine the conductance of the fully stretched molecules. For two different dithienylethene derivatives, these closed-configuration conductances were (3.3 ± 0.5) × 10(-5)G(0) and (1.5 ± 0.5) × 10(-6)G(0), where G(0) is the conductance quantum. For the open configuration of the molecules, the existence of electrical conduction via the molecule was evident in traces of conductance versus junction displacement, but the conductance of the fully stretched molecules was less than the noise floor of our measurement. We can set a lower limit of 30 for the on/off ratio for the simplest dithienylethene derivative we have investigated. Density functional theory calculations predict an on/off ratio consistent with this result.
我们使用反复形成的断接技术,研究了单个光致开关二噻吩乙烯分子在其导通的闭合构象和不导通的开环构象中的电导。我们采用吡啶基团将分子连接到金电极上,以实现相对明确的分子接触和稳定的电导。对于每个分子的闭合形式,我们在没有任何数据选择的情况下构建电导直方图时观察到一个峰值,从而能够确定完全拉伸分子的电导。对于两种不同的二噻吩乙烯衍生物,这些闭合构象的电导分别为(3.3 ± 0.5)×10(-5)G(0)和(1.5 ± 0.5)×10(-6)G(0),其中 G(0)为电导量子。对于分子的开环构象,电导随结位移的变化轨迹表明分子中存在电导,但是完全拉伸分子的电导小于我们测量的噪声基底。我们可以为我们研究的最简单的二噻吩乙烯衍生物设定一个 30 的开关比下限。密度泛函理论计算预测的开关比与该结果一致。