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LAMELLAR NANOSTRUCTURE IN 'SOMASIF'-BASED ORGANOCLAYS

机译:基于“ SOMASIF”的有机粘土中的层状纳米结构

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Thermally induced lamellar structure changes due to phase transition and degradation in organoclays based on a synthetic 'Somasif' mineral and two organic surfactants, di-methyl dihydro-di-tallow ammonia chloride (DMDTA) and tri-butyl-hexadecyl phosphonium bromide (HTBP) were investigated by differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), Fourier transform infrared (FTIR) spectroscopy, in situ simultaneous small-angle X-ray scattering (SAXS) and wide-angle X-ray diffraction (WAXD) over the temperature range 30-280℃. Results indicated that the surfactant layer in 'Somasif'-based organoclays underwent thermally induced melting-like order-disorder transition followed by desorption of surfactant molecules, resulting in drastic changes in the character of the layer periodicity. The transition temperature (T_(tr)), determined from the endothermic transition in DSC, was found to depend strongly on the type and the content of surfactant incorporated. Temperature-resolved SAXS indicated complex intercalated layered structures, containing multiple lamellar stack populations of two different organic layer thicknesses. A weak scattering peak (s_0), located at exactly the half angular position of the strong first scattering maximum s_1 (s_0 = 0.5s_1), was found in all tested 'Somasif' clays. The presence of this peak can be attributed to a slight breaking of the translational symmetry in the layered structure, causing the 1D repeat period in real space to be doubled. In other words, some portions of layers are grouped into pairs and a single pair forms the new repeat unit. This arrangement is reminiscent of the Peierls-like distortion.
机译:基于有机'Somasif'矿物和两种有机表面活性剂二甲基二氢二牛脂氨氯化物(DMDTA)和三丁基十六烷基溴化nium(HTBP)的有机粘土中的相变和降解,热诱导的层状结构发生变化通过差示扫描量热法(DSC),热重分析(TGA),傅立叶变换红外(FTIR)光谱,原位同时小角度X射线散射(SAXS)和广角X射线衍射(WAXD)进行了研究。温度范围30-280℃。结果表明,基于'Somasif'的有机粘土中的表面活性剂层经历了热诱导的熔融样有序-无序转变,随后发生了表面活性剂分子的解吸,从而导致层周期性特征急剧变化。发现由DSC中的吸热转变确定的转变温度(T_(tr))在很大程度上取决于所结合的表面活性剂的类型和含量。温度分辨的SAXS表示复杂的插层结构,包含两个具有不同有机层厚度的多个层状堆叠体。在所有测试的“ Somasif”黏土中都发现了一个恰好位于强第一散射最大值s_1(s_0 = 0.5s_1)的一半角位置的弱散射峰(s_0)。该峰的存在可归因于分层结构中平移对称性的轻微破坏,从而导致实际空间中的一维重复周期加倍。换句话说,层的某些部分被分组为对,并且一对形成新的重复单元。这种安排让人联想到类似Peierls的失真。

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