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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Formation of Molecularly Ordered Layered Mesoporous Silica via Phase Transformation of Silicate-Surfactant Composites
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Formation of Molecularly Ordered Layered Mesoporous Silica via Phase Transformation of Silicate-Surfactant Composites

机译:通过硅酸盐-表面活性剂复合材料的相变形成分子有序的层状介孔二氧化硅

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We have prepared molecularly ordered layered silicate-surfactant mesophases from the stepwise phase transformation of surfactant-silicate composites.The hexagonal-cubic-lamellar phase transformations were achieved by varying the time allowed for hydrothermal crystallization of simple CTAOH/SiO_2/H_2O systems at 135 deg C.At short(3 h)crystallization periods,the hexagonal phase(MCM-41)was obtained,which after 24 h transformed into a cubic(MCM-48)phase stable for up to 4 days.At 6 days a mixture of cubic and lamellar phases was observed,which finally transformed into the molecularly ordered pure lamellar phase after 12 days of hydrothermal synthesis.Molecular ordering,which was probed using powder XRD and silicon-29 solid state NMR,was only observed for the lamellar phase.Crystallization of the silica framework,at long hydrothermal synthesis time,therefore acts as a driving force for the high to low curvature cubic-lamellar transformation.The phase transformations were accompanied by changes in particle morphology and gradual densification of the silica network.The molecular ordering of the layered material was,to some extent,retained after template removal by calcination.The calcined molecularly ordered layered mesoporous silica exhibited structurally well-ordered domains and had relatively high surface area and pore volume.
机译:我们通过表面活性剂-硅酸盐复合物的逐步相转变制备了分子有序的层状硅酸盐-表面活性剂中间相。通过改变简单的CTAOH / SiO_2 / H_2O体系在135度水热结晶的时间来实现六方-立方-层状相变。 C.在短的(3 h)结晶周期中获得六方相(MCM-41),六方相在24 h后转变为立方(MCM-48)相,可稳定长达4天。在6天时,立方相的混合物水热合成12天后观察到层状相,最终转变成分子有序的纯层状相。仅使用粉末XRD和硅29固态NMR探测的分子有序性仅在层状相中观察到。二氧化硅骨架,在长时间的水热合成过程中,因此成为高曲率至低曲率立方-层状相变的驱动力。二氧化硅网络的颗粒形态和逐渐致密化。通过煅烧除去模板后,层状材料的分子有序在一定程度上得以保留。煅烧的分子有序的层状介孔二氧化硅表现出结构良好的结构域并且具有相对较高的表面面积和孔体积。

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