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A density functional investigation of thiolate-protected bimetal PdAu24(SR)_(18)~z clusters: doping the superatom complex

机译:硫醇盐保护的双金属PdAu24(SR)_(18)〜z团簇的密度泛函研究:掺杂超原子复合物

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Structure, electronic properties, optical absorption and charging properties of methylthiolate-protected bimetal PdAu_(24)(SR)_(18)~z (R = Me) clusters with various charge states (-3 ≤ z ≤ +3) are investigated by using density functional theory. The results are compared to properties of the well-understood singly anionic pure gold complex Au_(25)(SR)_(18)~((-1)) [J. Akola, M. Walter, H. Hakkinen and H. Gronbeck, J. Am. Chem. Soc, 2008, 130, 3756]. The atomic structure of this all-gold complex can be written in a "divide-and-protect" way [H. Hakkinen, M. Walter and H. Gronbeck, J. Phys. Chem. B, 2006, 110, 9927] as Au_(13)[Au2(SR)3]_6~((-1)) where 6 v-shaped Au2(SR)3 ligands protect the close-to-icosahedral Au_(13) core and where eight delocalized metal electrons, derived from Au(6s) electrons, comprise a stable closed-shell 1S~21P~6 "superatom" configuration in the core. We show that the di-anion PdAu_(24)(SR)_(18)~((-2)) is a corresponding eight-electron closed-shell species whereas the clusters PdAu_(24)(SR)_(18)~z, -1 ≤ z ≤+3, have holes in the 1P HOMO manifold. This indicates that the doping Pd atom remains close to the zero- valent 4d~(10)5s~0 configuration and does not contribute electrons to the delocalized electron density in the gold core. Structural optimization shows that the all-gold "divide-and-protect" structure motif is robust with respect to replacing the Au by Pd at the center of the core, at the surface of the core or in one of the protecting Au2(SR)3 ligands. However, optical absorption and the HOMO-LUMO and electrochemical gaps depend sensitively on the site of the doping Pd atom, which may turn out be useful for assigning the structure of PdAu_(24)(SR)_(18) from experimental data.
机译:研究了具有不同电荷态(-3≤z≤+3)的甲基硫醇盐保护的双金属PdAu_(24)(SR)_(18)〜z(R = Me)团簇的结构,电子性能,光吸收和带电性能。使用密度泛函理论将该结果与易于理解的单阴离子纯金络合物Au_(25)(SR)_(18)〜((-1))的性质进行比较[J. Akola,M。Walter,H.Hakkinen和H.Gronbeck,J。Am。化学Soc,2008,130,3756]。这种全金络合物的原子结构可以“分而保护”的方式写成[H. Hakkinen,M。Walter和H. Gronbeck,J。Phys。化学B,2006,110,9927]作为Au_(13)[Au2(SR)3] _6〜((-1)),其中6个v形Au2(SR)3配体保护了接近二十面体的Au_(13)核和来自Au(6s)电子的八个离域金属电子在核中包含稳定的闭壳1S〜21P〜6“超原子”构型。我们表明二阴离子PdAu_(24)(SR)_(18)〜((-2))是相应的八电子闭壳物种,而簇PdAu_(24)(SR)_(18)〜 z -1≤z≤+ 3,在1P HOMO歧管中有孔。这表明掺杂的Pd原子保持接近零价4d〜(10)5s〜0构型,并且对金核中的离域电子密度没有贡献。结构优化表明,全金的“分而保护”结构模体相对于在芯中心,芯表面或其中一个保护性Au2(SR)中用Pd代替Au而言是稳健的3个配体。然而,光吸收,HOMO-LUMO和电化学间隙敏感地取决于掺杂Pd原子的位置,这对于从实验数据中分配PdAu_(24)(SR)_(18)的结构可能是有用的。

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