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Electric-field induced bistability in single-molecule conductance measurements for boron coordinated curcuminoid compounds

机译:硼配位的姜黄素类化合物的单分子电导测量中的电场诱导双稳态

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摘要

We have studied the single-molecule conductance of a family of curcuminoid molecules (CCMs) using the mechanically controlled break junction (MCBJ) technique. The CCMs under study contain methylthio (MeS–) as anchoring groups: MeS-CCM (>1), the free-ligand organic molecule, and two coordination compounds, MeS-CCM-BF2 (>2) and MeS-CCM-Cu (>3), where ligand >1 coordinates to a boron center (BF2 group) and to a CuII moiety, respectively. We found that the three molecules present stable molecular junctions allowing detailed statistical analysis of their electronic properties. Compound >3 shows a slight increase in the conductance with respect to free ligand >1, whereas incorporation of BF2 (compound >2) promotes the presence of two conductance states in the measurements. Additional experiments with control molecules point out that this bistability is related to the combination of MeS– anchoring groups and the BF2 moiety within the structure of the molecules. Theoretical calculations show that this can be explained by the presence of two conformers once compound >2 is anchored between the gold electrodes. An energy minimum is found for a flat structure but there is a dramatic change in the magnitude and orientation of dipole moment (favouring a non-flat conformer in the presence of an external electric field) due to a conformational change of one of the terminal MeS– groups. The results thus point to an intricate interplay between the applied bias voltage and the molecule dipole moment which could be the basis for designing new molecules aiming at controlling their conformation in devices.
机译:我们已经研究了使用机械控制的断裂连接(MCBJ)技术的一类姜黄素分子(CCM)的单分子电导。所研究的CCM包含甲硫基(MeS–)作为固定基团:MeS-CCM(> 1 ),游离配体有机分子和两个配位化合物MeS-CCM-BF2(> 2 )和MeS-CCM-Cu(> 3 ),其中配体> 1 与硼中心(BF2基团)和Cu II < / sup>部分。我们发现这三个分子呈现稳定的分子连接,可以对其电子性质进行详细的统计分析。化合物> 3 与游离配体> 1 相比电导略有增加,而BF2(化合物> 2 )的引入促进了两种离子的存在。测量中的电导状态。对照分子的其他实验指出,这种双稳性与分子结构内MeS锚定基团和BF2部分的结合有关。理论计算表明,一旦化合物> 2 固定在金电极之间,则可以通过存在两个构象异构体来解释。发现平坦结构的能量最小,但是由于末端MeS之一的构象变化,偶极矩的大小和方向发生了巨大变化(在存在外部电场的情况下有利于非平坦构象子) –组。因此,结果表明施加的偏置电压与分子偶极矩之间存在复杂的相互作用,这可能是设计新分子的基础,旨在控制器件中的分子构象。

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