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首页> 外文期刊>The Journal of Chemical Physics >Binding at molecule/gold transport interfaces. V. Comparison of different metals and molecular bridges
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Binding at molecule/gold transport interfaces. V. Comparison of different metals and molecular bridges

机译:在分子/金转运界面处结合。五,不同金属和分子桥的比较

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摘要

The geometric and electronic structural properties of symmetric and asymmetric metal cluster-molecule-cluster' complexes have been explored. The metals include Au, Ag, Pd, and Al, and both benzenedithiol and the three isometric forms of dicyanobenzene are included as bridging molecules. Calculated properties such as cluster-molecule interface geometry, electronic state, degree of metal -> molecule charge transfer, metal-molecule mixing in the highest occupied molecular orbital-lowest unoccupied molecular orbital (HOMO-LUMO) energy region, the HOMO-LUMO gap, cluster -> cluster' charge transfer as a function of external field strength and direction, and the form of the potential profile across such complexes have been examined. Attempts are made to correlate charge transport with the characteristics of the cluster-complex systems. Indications of rectification in complexes that are asymmetric in the molecule, clusters, and molecule-cluster interfaces are discussed. The results obtained here are only suggestive because of the limitations of the cluster-complex model as it relates to charge transport.
机译:研究了对称和不对称金属簇-分子-簇'配合物的几何和电子结构性质。金属包括Au,Ag,Pd和Al,并且苯二硫醇和三氰基苯的三种等距形式均作为桥连分子包括在内。计算的特性,例如簇-分子界面的几何形状,电子态,金属的程度->分子电荷转移,在最高占据分子轨道-最低未占据分子轨道(HOMO-LUMO)能量区域,HOMO-LUMO间隙的金属-分子混合,团簇->团簇的电荷转移与外部场强和方向的函数关系,以及跨此类络合物的电势分布的形式均已得到检验。试图使电荷传输与簇复合系统的特性相关。讨论了在分子,簇和分子-簇界面不对称的复合物中的整流指示。由于簇复合模型与电荷传输有关的局限性,此处获得的结果仅是提示性的。

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