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Molecular Structure and Decomposition Kinetics of Kaolinite/Alkylamine Intercalation Compounds

机译:高岭石/烷基胺插层化合物的分子结构和分解动力学

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摘要

Although the development of clay/polymer nanocomposites and their applications have attracted much attention in recent years, a thorough understanding of the structure and the decomposition mechanism of clay/polymer nanocomposites is still lacking. In this research, the intercalation of kaolinite (Kaol) with different alkylamines were investigated by X-ray diffracion (XRD), Fourier-transform infrared spectroscopy (FTIR), and thermogravimetry and differential scanning calorimetry (TG-DSC). The results showed that the intercalation of Kaol/methanol compound with hexylamine (HA), dodecylamine (DA), and octadecylamine (OA) led to the expansion of the interlayer distance and resulted in the dominant basal diffraction at 2.86, 4.08, and 5.66 nm. The alky chains of HA, DA, and OA are tilted toward the Kaol surface in bilayer with an inclination angle of ~40°. The most probable mechanism function, activation energy E, and pre-exponential factor A were obtained by mutual authentication using KAS and Ozawa methods, itrative and Satava integral method. The average activation energy E of the three intercalation compounds are 104.44, 130.80, and 154.59 kJ mol−1, respectively. It shows a positive correlation with the alkyl chain length. The pre-exponential factor A was estimated to be 1.09 × 1015, 1.15 × 108, and 4.17 × 1021 s−1, respectively. The optimized mechanism function for the decomposition of alkylamine is G(α) = [(1-α) −1/3−1]2.
机译:尽管近年来粘土/聚合物纳米复合材料的发展及其应用引起了人们的广泛关注,但仍缺乏对粘土/聚合物纳米复合材料的结构和分解机理的透彻了解。在这项研究中,通过X射线衍射(XRD),傅里叶变换红外光谱(FTIR)以及热重分析和差示扫描量热法(TG-DSC)研究了高岭石(Kaol)与不同烷基胺的插层。结果表明,Kaol /甲醇化合物与己胺(HA),十二烷基胺(DA)和十八烷基胺(OA)的插入导致层间距离的扩大,并导致在2.86、4.08和5.66 nm处的主要基础衍射。 HA,DA和OA的烷基链朝双层的Kaol表面倾斜,倾斜角度约为40°。通过使用KAS和Ozawa方法,迭代法和Satava积分方法的相互认证,获得了最可能的机理函数,活化能E和预指数因子A。三种插入化合物的平均活化能E分别为104.44、130.80和154.59 kJ mol -1 。它与烷基链长呈正相关。指数前因子A估计为1.09×10 15 ,1.15×10 8 和4.17×10 21 s -1 。烷基胺分解的最佳机理为:G(α)= [(1-α) -1/3 -1] 2

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