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同系无水银(I)正烷酸酯系列的结构、奇偶交替链和热研究。

Structural, odd-even chain alternation and thermal investigation of a homologous series of anhydrous silver(I) n-alkanoates.

机构信息

Department of Chemistry, University of the West Indies, Mona, Kingston 7, Jamaica.

出版信息

Dalton Trans. 2012 Mar 7;41(9):2632-8. doi: 10.1039/c2dt11638c. Epub 2012 Jan 6.

DOI:10.1039/c2dt11638c
PMID:22227952
Abstract

Molecular and lattice structures of a homologous series (n(c) = 8-20, inclusive) of silver (I) n-alkanoates are determined from X-ray Powder Diffraction, Solid State spin decoupled (13)C-NMR and variable temperature Fourier Transform Infrared Spectroscopies. The compounds crystallize in a monoclinic crystal system with hydrocarbon chains in the fully extended all-trans conformation. Moreover, the chains are tilted ca. 75° with respect to the metal basal plane and are arranged as methyl(tail)-to-methyl(tail) bilayers within a lamellar. The methyl chain ends, from different layers in the bilayer, do not overlap but are in such close proximity to cause methyl-methyl interactions. In a molecule, two carboxylate groups bind in a syn-syn type bridging bidentate mode to two silver atoms to form an eight-membered structure. Intramolecular silver-silver and intermolecular Ag-O-Ag interactions stabilize the head group and promote the formation of layer type polymeric sheets. Though the compounds are nearly isostructural, odd-even chain alternation is observed in density, anti-symmetric stretching vibrations of methyl and unusually, carboxylate (head) groups, as a result of packing differences of hydrocarbon chains within the crystal lattice. These arise from the relative vertical distances between polymeric sheets, which are not in the same plane. Thus, for odd chain length compounds, where those distances are less than for even chains, more ordered packing and hence higher densities are observed for these adducts. Also, the numbers and natures of the thermotropic phase transitions are chain length dependent and irreversible.

摘要

银(I)正烷酸酯同系物(n(c) = 8-20,包含 8 和 20)的分子和晶格结构是通过 X 射线粉末衍射、固态去耦(13)C-NMR 和变温傅里叶变换红外光谱确定的。这些化合物在单斜晶系中结晶,其中烃链处于完全伸展的全反式构象。此外,这些链相对于金属基面倾斜约 75°,并在层状结构中排列为甲基(尾)到甲基(尾)双层。双层中来自不同层的甲基链末端不重叠,但彼此非常接近,导致甲基-甲基相互作用。在一个分子中,两个羧酸盐基团以顺式-顺式类型桥联双齿方式结合到两个银原子上,形成一个八元环结构。分子内银-银和银-氧-银相互作用稳定了头基并促进了层状聚合片的形成。尽管这些化合物几乎具有相同的结构,但在密度、甲基的反对称伸缩振动以及羧酸(头)基团中观察到奇偶链交替,这是由于晶体晶格中烃链的堆积差异所致。这些差异源于聚合片之间的相对垂直距离,它们不在同一平面上。因此,对于奇数链长化合物,由于这些距离小于偶数链,这些加合物的堆积更有序,因此密度更高。此外,热致相变的数量和性质取决于链长,且是不可逆的。

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