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Probing the chemistry of molecular heterojunctions using thermoelectricity

机译:使用热电探测分子异质结的化学性质

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Thermopower measurements offer an alternative transport measurement that can characterize the dominant transport orbital and is independent of the number of molecules in the junction. This method is now used to explore the effect of chemical structure on the electronic structure and charge transport. We interrogate junctions, using a modified scanning tunneling microscope break junction technique, where: (i) the-1,4-benzenedithiol (BDT) molecule has been modified by the addition of electron-withdrawing or -donating groups such as fluorine, chlorine, and methyl on the benzene ring; and (ii) the thiol end groups on BDT have been replaced by the cyanide end groups. Cyanide end groups were found to radically change transport relative to BDT such that transport is dominated by the lowest unoccupied molecular orbital in 1,4-benzenedicyanide, while substituents on BDT generated small and predictable changes in transmission.
机译:热功率测量提供了另一种传输测量,可以表征主要传输轨道,并且与结中的分子数量无关。该方法现在用于探索化学结构对电子结构和电荷传输的影响。我们使用改进的扫描隧道显微镜断裂连接技术来询问连接,其中:(i)-1,4-苯二硫醇(BDT)分子已通过添加吸电子或供电子基团(例如氟,氯,苯环上的甲基; (ii)BDT的硫醇端基已被氰化物端基取代。发现氰化物端基相对于BDT发生了根本性的变化,从而使传输受1,4-苯二氰化物中最低的未占据分子轨道支配,而BDT上的取代基产生了较小且可预测的传输变化。

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