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首页> 外文期刊>ACS nano >High on-off conductance switching ratio in optically-driven self-assembled conjugated molecular systems
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High on-off conductance switching ratio in optically-driven self-assembled conjugated molecular systems

机译:光驱动自组装共轭分子系统中的高开-关电导切换比

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摘要

A new azobenzene-thiophene molecular switch is designed, synthesized, and used to form self-assembled monolayers (SAM) on gold. An "on/off" conductance ratio up to 7 × 10~3 (with an average value of 1.5 × 10~3) is reported. The "on" conductance state is clearly identified to the cis isomer of the azobenzene moiety. The high on/off ratio is explained in terms of photoinduced, configuration-related changes in the electrode-molecule interface energetics (changes in the energy position of the molecular orbitals with respect to the Fermi energy of electrodes) in addition to changes in the tunnel barrier length (length of the molecules). First principles density functional calculations demonstrate a better delocalization of the frontier orbitals as well as a stronger electronic coupling between the azobenzene moiety and the electrode for the cis configuration over the trans one. Measured photoionization cross sections for the molecules in the SAM are close to the known values for azobenzene derivatives in solution.
机译:设计,合成了一种新的偶氮苯-噻吩分子开关,并用于在金上形成自组装单分子层(SAM)。据报道,电导率高达7×10〜3(平均值为1.5×10〜3)。对于偶氮苯部分的顺式异构体,清楚地确定了“导通”电导状态。高通/断比的解释是,除了隧穿中的变化以外,还与电极-分子界面高能的光诱导,构型相关的变化(分子轨道的能量位置相对于电极的费米能的变化)有关。势垒长度(分子的长度)。第一原理密度泛函计算表明边界轨道上有更好的离域性,并且偶氮苯部分与电极之间的反式构型上的顺式构型之间的电子耦合更强。 SAM中分子测得的光电离截面接近溶液中偶氮苯衍生物的已知值。

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