Facultad de Ciencias Químicas, Universidad Autónoma de Coahuila, Blvd. Venustiano Carranza s/n. Saltillo, Coahuila, Mexico, C.P., 25200.
J Mol Model. 2012 Feb;18(2):611-21. doi: 10.1007/s00894-011-1106-4. Epub 2011 May 11.
The electron transport of the 4-(3-nitro-4-tetrafluorophenylthiolate-ethynyl, phenylethynyl) benzenethiolate (S-FNPPB-o) molecule assembled in two Au (111) electrodes, was studied using two approaches: in the first approximate approach an electric field was applied to the pure molecule attached to two thiolate ends fixed, and in the second approach we used the nonequilibrium Green´s function formalism (NEGF) coupled to DFT to calculate the I-V curve and the voltage dependence of the transmission function in the extended system, molecule plus electrodes. By applying an electric field to the pure molecule plus thiolate ends fixed, and visualizing the changes in the spatial distribution of the frontier molecular orbitals, we can expect based on the continuity of the conduction pathway in electron transport, that if electron transport occurs through the frontier orbitals, only the LUMO orbital would create an open channel for electron transport due to its delocalized nature and large orbital density at the thiolate groups. The NEGF calculations indicate that at applied voltages lower than ±0.8 V, the current is related to transmission values through the tails of the broad LUMO orbital, and since this orbital is the one closer to the Fermi energy, and we observed very low current values in this region, higher current values at positive bias than at negative bias. As the voltage exceeds ±0.8 V the current increases from the contribution of more states from the broadened part of the transmission function from the LUMO orbital, and when the voltage approaches ±2 V, the LUMO + 1 orbital enters into the bias window and the current increases again.
在两个 Au(111)电极中组装的 4-(3-硝基-4-四氟苯基硫代乙炔基、苯乙炔基)苯硫醇ate(S-FNPPB-o)分子的电子输运,通过两种方法进行了研究:第一种近似方法是在固定两端硫醇的纯分子上施加电场,第二种方法是使用非平衡格林函数形式(NEGF)与 DFT 耦合来计算扩展系统(分子加电极)中的 I-V 曲线和传输函数的电压依赖性。通过在固定两端硫醇的纯分子上施加电场,并可视化前沿分子轨道的空间分布变化,我们可以根据电子输运过程中传导途径的连续性预期,如果电子通过前沿轨道传输,由于其离域性质和硫醇基团处的大轨道密度,只有 LUMO 轨道会为电子传输创建一个开放通道。NEGF 计算表明,在低于±0.8 V 的施加电压下,电流与通过宽 LUMO 轨道尾部的传输值有关,由于该轨道更接近费米能级,并且我们在该区域观察到非常低的电流值,因此在正偏压下的电流值高于负偏压下的电流值。当电压超过±0.8 V 时,电流从 LUMO 轨道的传输函数变宽部分的更多状态的贡献中增加,当电压接近±2 V 时,LUMO+1 轨道进入偏压窗口,电流再次增加。