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Ultrasonic synthesis of silica-alumina nanomaterials with controlled mesopore distribution without using surfactants

机译:Ultrasonic synthesis of silica-alumina nanomaterials with controlled mesopore distribution without using surfactants

摘要

A novel sol-gel process has been developed for the synthesis of amorphous silica-aluminas with controlled mesopore distribution without the use of organic templating agents, e.g., surfactant molecules. Ultrasonic treatment during the synthesis enables production of precursor sols with narrow particle size distribution. Atomic force microscopy analysis shows that these sol particles are spherical in shape with a narrow size distribution (i.e., 13-25 nm) and their aggregation during the gelation creates clusters containing similar sized interparticle mesopores. A nitrogen physiadsorption study indicates that the mesoporous materials containing different Si/Al ratios prepared by the new synthesis method has a large specific surface area (i.e., 587-692 m(2)/g) and similar pore sizes of 2-11 nm. Solid-state Al-27 magic angle spinning (MAS) NMR shows that most of the aluminum is located in the tetrahedral position. A transmission electron microscopy (TEM) image shows that the mesoporous silica-alumina consists of 12-25 nm spheres. Additionally, high-resolution TEM and electron diffraction indicate that some nanoparticles are characteristic of a crystal, although X-ray diffraction and Si-29 MAS NMR analysis show an amorphous material.
机译:已经开发了一种新颖的溶胶-凝胶法,用于合成具有受控的中孔分布的无定形二氧化硅-氧化铝,而无需使用有机模板剂,例如表面活性剂分子。合成过程中的超声波处理能够生产出粒度分布窄的前体溶胶。原子力显微镜分析表明,这些溶胶颗粒是球形的,具有窄的尺寸分布(即13-25nm),并且它们在胶凝过程中的聚集产生了包含相似尺寸的颗粒间中孔的簇。氮的物理吸附研究表明,通过新的合成方法制备的含有不同Si / Al比的介孔材料具有较大的比表面积(即587-692 m(2)/ g)和类似的2-11 nm孔径。固态Al-27幻角旋转(MAS)NMR表明,大多数铝位于四面体位置。透射电子显微镜(TEM)图像显示介孔二氧化硅-氧化铝由12-25 nm的球组成。此外,尽管X射线衍射和Si-29 MAS NMR分析显示出非晶态材料,但高分辨率TEM和电子衍射表明某些纳米粒子具有晶体特征。

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