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首页> 外文期刊>Journal of the American Chemical Society >Mixed Copper, Silver, and Gold Cyanides, (M_XM'_(1-X) CN: TailoringChain Structures To Influence Physical Properties
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Mixed Copper, Silver, and Gold Cyanides, (M_XM'_(1-X) CN: TailoringChain Structures To Influence Physical Properties

机译:混合的铜,银和金氰化物(M_XM'_(1-X)CN:量身定制影响物理性质的链结构

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摘要

Binary mixed-metal variants of the one-dimensional MCN compounds (M = Cu, Ag, and Au) have been prepared and characterized using powder X-ray diffraction, vibrational spectroscopy, and total neutron diffraction. A solid solution with the AgCN structure exists in the (Cu_xAg_(1-x)CN system over the range (0 ≤ x ≤ l). Line phases with compositions (Cu_(1/2)Au_(1/2))CN, (Cu_(7/12)Au_(5/12))CN, (Cu_(2/3)Au_(1/3))CN, and (Ag_(1/2)Au_(1/2))CN, all of which have the AuCN structure, are found in the gold-containing systems. Infrared and Raman spectroscopies show that complete ordering of the type [M-C=N-M'-N=C-]_n occurs only in (Cu_(1/2)Au_(1/2))CN and (Ag_(1/2)Au_(1/2))CN. The sense of the cyanide bonding was determined by total neutron diffraction to be [Ag-NC-Au-CN-]_n in (Ag_(1/2)Au_(1/2))CN and [Cu-NC-Au-CN-]_n in (Cu_(1/2)Au_(1/2))CN. In contrast, in (Cu_(0.50)Ag_(0.50))CN, metal ordering is incomplete, and strict alternation of metals does not occur. However, there is a distinct preference (85%) for the N end of the cyanide ligand to be bonded to copper and for Ag-CN-Cu links to predominate. Contrary to expectation, aurophilic bonding does not appear to be the controlling factor which leads to (Cu_(1/2)Au_(1/2))CN and (Ag_(1/2)Au_(1/2))CN adopting the AuCN structure. The diffuse reflectance, photoluminescence, and 1-D negative thermal expansion (NTE) behaviors of all three systems are reported and compared with those of the parent cyanide compounds. The photophysical properties are strongly influenced both by the composition of the individual chains and by how such chains pack together. The NTE behavior is also controlled by structure type: the gold-containing mixed-metal cyanides with the AuCN structure show the smallest contraction along the chain length on heating.
机译:一维MCN化合物(M = Cu,Ag和Au)的二元混合金属变体已经制备,并使用粉末X射线衍射,振动光谱和总中子衍射进行了表征。 (Cu_xAg_(1-x)CN系统中存在(0≤x≤l)范围内的具有AgCN结构的固溶体。具有(Cu_(1/2)Au_(1/2))CN, (Cu_(7/12)Au_(5/12))CN,(Cu_(2/3)Au_(1/3))CN和(Ag_(1/2)Au_(1/2))CN含金系统中发现其中有AuCN结构。红外和拉曼光谱表明,[MC = N-M'-N = C-] _ n类型的完全有序仅在(Cu_(1/2 )Au_(1/2))CN和(Ag_(1/2)Au_(1/2))CN。通过总中子衍射确定的氰化物键合感为[Ag-NC-Au-CN-] (Ag_(1/2)Au_(1/2))CN中的_n和(Cu_(1/2)Au_(1/2))CN中的[Cu-NC-Au-CN-] _ n。 (Cu_(0.50)Ag_(0.50))CN,金属有序不完全,不会发生金属的严格交替,但是氰化物配体的N端特别倾向于(85%)与铜键合并与预期相反,亲金结合似乎不是导致(Cu_(1/2)Au_(1/2))CN和(Ag_(1/2)Au_(1/2))CN采用AuCN结构。报告了所有三个系统的漫反射率,光致发光和一维负热膨胀(NTE)行为,并与母体氰化物进行了比较。光物理性质受单个链的组成以及此类链如何堆积在一起的强烈影响。 NTE行为也受结构类型控制:加热时,具有AuCN结构的含金混合金属氰化物沿链长方向的收缩最小。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第39期|p.16387-16400|共14页
  • 作者单位

    Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, U.K.;

    ISIS Facility, Rutherford Appleton Laboratory, Chilton, Didcot, Oxon OX11 0QX, U.K.;

    Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, U.K.;

    Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, U.K.;

    ISIS Facility, Rutherford Appleton Laboratory, Chilton, Didcot, Oxon OX11 0QX, U.K.;

    PPSM, CNRS UMR 8531, Ecole Normale Superieure de Cachan, 61, avenue du President Wilson, 94235 Cachan, France;

    PPSM, CNRS UMR 8531, Ecole Normale Superieure de Cachan, 61, avenue du President Wilson, 94235 Cachan, France;

    Department of Chemistry, University of Reading, Whiteknights, Reading RG6 6AD, U.K;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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