首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Solid state C-13-NMR, infrared, X-ray powder diffraction and differential thermal studies of the homologous series of some mono-valent metal (Li, Na, K, Ag) n-alkanoates: A comparative study
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Solid state C-13-NMR, infrared, X-ray powder diffraction and differential thermal studies of the homologous series of some mono-valent metal (Li, Na, K, Ag) n-alkanoates: A comparative study

机译:某些单价金属(Li,Na,K,Ag)正链烷酸酯的同源系列的固态C-13-NMR,红外,X射线粉末衍射和差热研究:对比研究

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摘要

A comparative study of the molecular packing, lattice structures and phase behaviors of the homologous series of some mono-valent metal carboxylates (Li, Na, K and Ag) is carried out via solid state Fr-infrared and C-13-NMR spectroscopes, X-rays powder diffraction, density measurements, differential scanning calorimetry, polarizing light microscopy and variable temperature infrared spectroscopy. It is proposed that, for lithium, sodium and potassium carboxylates, metal-carboxyl coordination is via asymmetric chelating bidentate bonding with extensive intermolecular interactions to form tetrahedral metal centers, irrespective of chain length. However, for silver n-alkanoates, carboxyl moieties are bound to silver ions via syn-syn type bridging bidentate coordination to form dimeric units held together by extensive head group inter-molecular interactions. Furthermore, the fully extended hydrocarbon chains which are crystallized in the all-trans conformation are tilted at ca. 30 degrees, 27 degrees, 15 degrees and 31 degrees with respect to a normal to the metal plane, for lithium, sodium, silver and potassium carboxylates, respectively. All compounds are packed as lamellar bilayer structures, however, lithium compounds are crystallized in a triclinic crystal system whilst silver, sodium and potassium n-alkanoates are all monoclinic with possible P1 bravais lattice. Odd even alternation observed in various physical features is associated with different interplanar spacing between closely packed layers in the bilayer which are not in the same plane; a phenomenon controlled by lattice packing symmetry requirements.
机译:通过固态Fr红外光谱和C-13-NMR光谱对某些单价金属羧酸盐(Li,Na,K和Ag)的同源系列的分子堆积,晶格结构和相行为进行了比较研究, X射线粉末衍射,密度测量,差示扫描量热法,偏光显微镜和可变温度红外光谱。对于锂,钠和钾的羧酸盐,建议金属-羧基配位是通过不对称的螯合双齿键与广泛的分子间相互作用形成四面体金属中心而与链长无关。然而,对于正链烷酸银,羧基部分通过顺式-顺式桥接二齿配位键与银离子结合,形成通过广泛的头基分子间相互作用保持在一起的二聚体单元。此外,以全反式构型结晶的完全延伸的烃链在约5°倾斜。相对于金属平面的法线,分别为锂,钠,银和钾的羧酸盐为30度,27度,15度和31度。所有化合物均以层状双层结构堆积,但是,锂化合物在三斜晶系晶体中结晶,而正链烷酸酯的银,钠和钾盐均为单斜晶,可能具有P1布拉维斯晶格。在各种物理特征中观察到的奇数甚至交替现象与双层的紧密堆积的层(不在同一平面上)之间的不同面间距有关。受晶格堆积对称性要求控制的现象。

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