首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Structure determination of the crystalline phase of n-butanol by powder X-ray diffraction and study of intermolecular associations by Raman spectroscopy
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Structure determination of the crystalline phase of n-butanol by powder X-ray diffraction and study of intermolecular associations by Raman spectroscopy

机译:粉末X射线衍射确定正丁醇结晶相的结构及拉曼光谱研究分子间缔合

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X-ray powder diffraction patterns of n-butanol at 110K and the isothermal transformation above the glass transition temperature of the supercooled liquid into the glacial state were recorded with a laboratory diffractometer. The starting structural model of the crystalline stable phase was found by a Monte-Carlo simulated annealing method. The final structure was obtained through Rietveld refinements with soft restraints on the interatomic bond lengths and angles. The cell is triclinic with space group P1 and contains two molecules. The width of the Bragg peaks is interpreted by a phenomenological microstructural approach in terms of anisotropic strain effects. The study of the hydrogen bonds by Raman spectroscopy shows the existence of two main kinds of hydrogen bonds in the crystal, in agreement with the structure obtained by diffraction. The glacial state resulting from an abortive crystallization is composed of microcrystallites of the stable phase coexisting with non-transformed supercooled liquid. Crystalline features of the glacial state were determined as closely connected to the microstructural description of the crystal, leading to information about the origin of the glacial state.
机译:用实验室衍射仪记录正丁醇在110K时的X射线粉末衍射图和高于过冷液体的玻璃化转变温度到冰河状态的等温转变。通过蒙特卡罗模拟退火法发现了晶体稳定相的起始结构模型。通过Rietveld精制获得最终结构,并对原子间键合长度和角度进行软约束。该细胞是三斜晶的,具有空间群P1,包含两个分子。布拉格峰的宽度由各向异性微观效应的现象学微观结构方法解释。用拉曼光谱法研究氢键表明,晶体中存在两种主要的氢键,这与通过衍射获得的结构一致。流产结晶产生的冰川状态由稳定相的微晶与未转化的过冷液体共存组成。确定冰川状态的晶体特征与晶体的微观结构描述密切相关,从而得出有关冰川状态起源的信息。

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