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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal behavior of kaolinite-urea intercalation complex and molecular dynamics simulation for urea molecule orientation
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Thermal behavior of kaolinite-urea intercalation complex and molecular dynamics simulation for urea molecule orientation

机译:高岭石-尿素插层配合物的热行为和尿素分子取向的分子动力学模拟

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摘要

The thermal behavior of kaolinite-urea intercalation complex was investigated by thermogravimetry- differential scanning calorimetry (TG-DSC), X-ray diffraction (XRD), and fourier transform infrared spectroscopy (FTIR). In addition, the interaction mode of urea molecules intercalated into the kaolinite gallery was studied by means of molecular dynamics simulation. Three main mass losses were observed at 136 ℃, in the range of 210-270 ℃, and at 500 ℃ in the TG-DSC curves, which were, respectively, attributed to (1) melting of the surfaceadsorbed urea, (2) removal of the intercalated urea, and (3) dehydroxylation of the deintercalated kaolinite. The three DSC endothermic peaks at 218, 250, and 261 ℃ were related to the successive removals of intercalated urea with three different distribution structures. Based on the angle between the dipole moment vector of urea and the basal surface of kaolinite, the three urea models could be described as follows: (1) Type A, the dipole moment vector is nearly parallel to the basal surface of kaolinite; (2) Type B, the dipole moment vector points to the silica tetrahedron with the angle between it and the basal surface of kaolinite ranging from 20oto 40o; and (3) Type C, the dipole moment vector is nearly perpendicular to the basal surface of kaolinite. The three distribution structures of urea molecules were validated by the results of the molecular dynamics simulation. Furthermore, the thermal behavior of the kaolinite- urea intercalation complex investigated by TG-DSC was also supported by FTIR and XRD analyses.
机译:通过热重-差示扫描量热法(TG-DSC),X射线衍射(XRD)和傅里叶变换红外光谱法(FTIR)研究了高岭石-尿素插层配合物的热行为。此外,还通过分子动力学模拟研究了插入尿素分子进入高岭土通道的相互作用模式。 TG-DSC曲线分别在136℃,210-270℃和500℃观察到三个主要质量损失,分别归因于(1)表面吸附尿素的熔化,(2)去除(3)脱嵌的高岭石的脱羟基作用。 DSC的三个吸热峰分别在218、250和261℃,与具有三种不同分布结构的插层尿素的连续去除有关。基于尿素的偶极矩矢量和高岭石基面之间的夹角,可以描述三种尿素模型:(1)A型,偶极矩矢量几乎平行于高岭石的基面; (2)B型偶极矩矢量指向二氧化硅四面体,它与高岭石基面之间的夹角在20oto至40o之间; (3)C型,偶极矩矢量几乎垂直于高岭石的基面。分子动力学模拟结果验证了尿素分子的三种分布结构。此外,通过FTIR和XRD分析也支持了TG-DSC研究的高岭石-尿素插层复合物的热行为。

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