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Preparation and thermal decomposition of 5Mg(OH)2·MgSO4·2H2O nanowhiskers

机译:5Mg(OH)2·MgSO4·2H2O纳米晶须的制备和热分解

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Magnesium hydroxide sulfate hydrate (MHSH) nanowhiskers were prepared using magnesium chloride, ammonia and magnesium sulfate as raw materials by hydrothermal synthesis without any additional template. X-ray powder diffraction (XRD), transmission electron microscopy (TEM) and thermal analysis (TG-DTA) were employed to characterize the composition and structural features of the MHSH nanowhiskers. It is shown that the thermal decomposition of nanowhiskers followed a three-step scheme. Based on DTA data, the reaction order, activation energy and pre-exponential factor for each step were calculated using a non-isothermal Kissinger method. It is also indicated from Satava method that the first step of the thermal decomposition of nanowhiskers is an A2 nucleus formation and growth mechanism with integral form of G(a) = [-ln(1-a)]~(1/2). The second step is an A_u branching nuclei mechanism with integral form of G(a) = ln[a/(1 -a)], and the final step is a P_(1/2) nucleation mechanism with integral form of G(a) = a~(1/2).
机译:以氯化镁,氨水和硫酸镁为原料,通过水热合成法制备氢氧化镁硫酸盐水合物(MHSH)纳米晶须,无需任何其他模板。利用X射线粉末衍射(XRD),透射电子显微镜(TEM)和热分析(TG-DTA)来表征MHSH纳米晶须的组成和结构特征。结果表明,纳米晶须的热分解遵循三步法。根据DTA数据,使用非等温基辛格方法计算每个步骤的反应顺序,活化能和预指数因子。从Satava方法还表明,纳米晶须热分解的第一步是A 2核形成和生长机理,其整体形式为G(a)= [-ln(1-a)]〜(1/2)。第二步是积分形式为G(a)= ln [a /(1-a)]的A_u分支核机理,最后一步是积分形式为G(a)的P_(1/2)成核机理)= a〜(1/2)。

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