首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Temperature-dependent analysis of thermal motion, disorder and structures of tris(ethylenediamine)zinc(II) sulfate and tris(ethylenediamine)copper(II) sulfate
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Temperature-dependent analysis of thermal motion, disorder and structures of tris(ethylenediamine)zinc(II) sulfate and tris(ethylenediamine)copper(II) sulfate

机译:硫酸三(乙二胺)锌(II)和硫酸三(乙二胺)铜(II)的热运动,无序和结构的温度依赖性分析

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The crystal structures of the title compounds have been determined in the temperature range 140-290 K for the zinc complex, and 190-270 K for the copper complex. The two structures are isostructural in the trigonal space group with the sulfate anion severely disordered on a site with 32 (D 3) symmetry. This sulfate disorder leads to a disordered three-dimensional hydrogen-bond network, with the N - H atoms acting as donors and the sulfate O atoms as acceptors. The displacement parameters of the N and C atoms in both compounds contain disorder contributions in the out-of-ligand plane direction owing to ring puckering and/or disorder in hydrogen bonding. In the Zn compound the vibrational amplitudes in the bond directions are closely similar. Their differences show no significant deviations from rigid-bond behaviour. In the Cu compound, a (presumably) dynamic Jahn-Teller effect is identified from a temperature-independent contribution to the displacement ellipsoids of the N atom along the N - Cu bond. These conclusions derive from analyses of the atomic displacement parameters with the Hirshfeld test, with rigid-body models at different temperatures, and with a normal coordinate analysis. This analysis considers the atomic displacement parameters (ADPs) from all different temperatures simultaneously and provides a detailed description of both the thermal motion and the disorder in the cation. The Jahn-Teller radii of the Cu compound derived on the basis of the ADP analysis and from the bond distances in the statically distorted low-temperature phase [Lutz (2010). Acta Cryst. C66, m330-m335] are found to be the same.
机译:对于锌配合物,已经在140-290K的温度范围内确定了标题化合物的晶体结构,对于铜配合物,已经在190-270K的温度范围内确定了标题化合物的晶体结构。这两个结构在三角形空间组中是同构的,其中硫酸根阴离子在具有32(D 3)对称性的位点上严重无序。这种硫酸盐紊乱导致无序的三维氢键网络,其中N-H原子充当施主,而硫酸盐O原子充当受主。两种化合物中N和C原子的位移参数由于环起皱和/或氢键合无序而在配体平面外方向上具有无序贡献。在锌化合物中,键方向的振动幅度非常相似。它们的差异表明与刚性键合行为无明显差异。在Cu化合物中,根据对N原子沿N-Cu键的位移椭球的温度无关性贡献,可以确定(大概)动态Jahn-Teller效应。这些结论来自于通过Hirshfeld检验,不同温度下的刚体模型以及法向坐标分析对原子位移参数的分析。该分析同时考虑了来自所有不同温度的原子位移参数(ADP),并提供了热运动和阳离子中无序的详细描述。 Cu化合物的Jahn-Teller半径是根据ADP分析得出的,并且是由静态变形的低温相中的键距得出的[Lutz(2010)。 Acta Cryst。 C66,m330-m335]被发现是相同的。

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