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Binding at molecule/gold transport interfaces. II. Orbitals and density of states

机译:在分子/金转运界面处结合。二。轨道和状态密度

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The density of states diagrams, and the associated orbital populations and structure, are analyzed for the discrete models for dithiol bridged molecular junctions discussed in the previous paper. The orbitals closest to the Fermi surface are generally dominated by the high s and d densities of metal atoms. Some orbitals are mixed metal/sulfur/hydrocarbon, and a few (generally lower-lying occupied) are dominantly within the hydrocarbon itself. These orbital populations suggest that the frontier orbitals are, in themselves, not adequate for quantitative description of transport, essentially because the Green's functions of slightly lower-lying orbitals give large contributions to the mixing between electrodes that dominates the transport. Effects of different spin multiplicities and charges, as well as different choices of density functional, are also presented: the major conclusions seem robust, and are not strongly effected by these modifications. (C) 2003 American Institute of Physics. [References: 34]
机译:分析了状态图的密度以及相关的轨道总数和结构,以建立前一论文中讨论的二硫醇桥联分子连接的离散模型。最接近费米表面的轨道通常由金属原子的高s和d密度决定。一些轨道是金属/硫/碳氢化合物的混合轨道,而一些轨道(通常位于较低位置)主要位于烃类内部。这些轨道总数表明,边界轨道本身不足以对运输进行定量描述,这主要是因为格林在较低轨道上的功能为主导运输的电极之间的混合做出了巨大贡献。还介绍了不同的自旋多重性和电荷的影响,以及对密度泛函的不同选择:主要结论似乎是可靠的,并且不受这些修饰的强烈影响。 (C)2003美国物理研究所。 [参考:34]

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