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首页> 外文期刊>Angewandte Chemie >Single-Molecule Conductance of 1,4-Azaborine Derivatives as Models of BN-doped PAHs
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Single-Molecule Conductance of 1,4-Azaborine Derivatives as Models of BN-doped PAHs

机译:1,4-氮杂曲线衍生物的单分子电导作为BN掺杂PAHs的模型

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摘要

The single-molecule conductance of a series of BN-acene-like derivatives has been measured by using scanning tunneling break-junction techniques. A strategic design of the target molecules has allowed us to include azaborine units in positions that unambiguously ensure electron transport through both heteroatoms, which is relevant for the development of customized BN-doped nanographenes. We show that the conductance of the anthracene azaborine derivative is comparable to that of the pristine all-carbon anthracene compound. Notably, this heteroatom substitution has also allowed us to perform similar measurements on the corresponding pentacene-like compound, which is found to have a similar conductance, thus evidencing that B-N doping could also be used to stabilize and characterize larger acenes for molecular electronics applications. Our conclusions are supported by state-of-the-art transport calculations.
机译:利用扫描隧道断裂结技术测量了一系列BN-乙炔类衍生物的单分子电导。目标分子的战略设计使我们能够在明确确保电子通过两个杂原子传输的位置包含氮杂硼烷单元,这与开发定制的掺BN纳米石墨烯有关。我们表明,蒽氮杂硼烷衍生物的电导与纯全碳蒽化合物的电导相当。值得注意的是,这种杂原子取代也使我们能够对相应的并五苯类化合物进行类似的测量,发现该化合物具有类似的电导,从而证明B-N掺杂也可以用于稳定和表征用于分子电子学应用的较大的炔类化合物。我们的结论得到了最先进的运输计算的支持。

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