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Characteristics of Gallium-Substituted Hexagonal Mesoporous Silica: Effects of Gallium Content

机译:镓取代的六方介孔二氧化硅的特征:镓含量的影响

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Gallium-substituted hexagonal mesoporous silicas (Ga-HMS) with various Si/Ga ratios in the range of 15 and 200 were prepared at ambient temperature by neutral surfanctant templating pathway. The materials were synthesized by using dodecylamine as a template and tetraethylorthosilicate as a silicon source. They were characterized by energy dispersive X-ray spectroscopy, powder X-ray diffraction (XRD), N_2 adsorption-desorption, thermogravimetric analysis, differential scanning calorimetry, scanning electron microscopy, transmission electron microscopy, Fourier-transform infrared absorption spectroscopy and ultraviolet-visible absorption spectroscopy. Ga-HMS samples had high surface areas and uniform mesoporous channels, which are similar to MCM-41. However, they differed from MCM-41 in presenting only a single peak in XRD patterns. They also possessed other characters of larger framework wall thickness, small crystallite domain sizes, and complementary textural mesoporosities in comparison with M41S materials. Ga-HMS materials had micropores and the hysteresis loops were obvious. These small crystallite size and complementary textural mesoporosity provided better access of the framework-confined mesopores. These mesoporous Ga-HMS samples exhibited irregularly shaped mesoscale fundamental particles which aggregated into larger particles. They also demonstrated better thermal stability than MCM-41. The textural pore volumes of Ga-HMS specimens could be up to 20 times as large as the framework volumes. The surfactant could be removed completely by calcination at 650℃. An absorption band of FT-IR at ca. 960 cm~(-1) was assigned to the vibration of Si—O—Ga linkages. These samples also showed an absorbance band at 255 nm and 250 nm in UV-vis spectra. The results show that gallium was incorporated into the structure of HMS. The efforts in preparing Ga-HMS specimens by neutral-template synthesis route had led to new mesoporous silica molecular sieves with catalytically active gallium centers.
机译:在室温下,通过中性表面活性剂模板化途径制备了具有15/200范围内的各种Si / Ga比的镓取代六角形介孔二氧化硅(Ga-HMS)。以十二烷基胺为模板,原硅酸四乙酯为硅源合成了该材料。它们的特征在于能量色散X射线光谱,粉末X射线衍射(XRD),N_2吸附-脱附,热重分析,差示扫描量热法,扫描电子显微镜,透射电子显微镜,傅里叶变换红外吸收光谱和紫外可见光吸收光谱。 Ga-HMS样品具有较高的表面积和均匀的介孔通道,类似于MCM-41。但是,它们与MCM-41的区别仅在于XRD图谱中仅显示一个峰。与M41S材料相比,它们还具有较大的框架壁厚,较小的微晶畴尺寸和互补的介孔介孔特性。 Ga-HMS材料具有微孔,并且具有明显的磁滞回线。这些小的微晶尺寸和互补的介孔介孔使骨架限定的介孔更好地进入。这些介孔的Ga-HMS样品显示不规则形状的中尺度基础颗粒,这些颗粒聚集成较大的颗粒。他们还表现出比MCM-41更好的热稳定性。 Ga-HMS标本的结构孔体积可高达框架体积的20倍。通过在650℃下煅烧可以完全去除表面活性剂。 FT-IR的吸收带约为960 cm〜(-1)被分配给Si-O-Ga键的振动。这些样品在UV-可见光谱中还显示出在255nm和250nm的吸收带。结果表明,镓被结合到HMS的结构中。通过中性模板合成路线制备Ga-HMS标本的努力导致了具有催化活性镓中心的新型中孔二氧化硅分子筛。

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