首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >A universal biological-materials-assisted hydrothermal route to prepare various inorganic hollow microcapsules in the presence of pollens
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A universal biological-materials-assisted hydrothermal route to prepare various inorganic hollow microcapsules in the presence of pollens

机译:在花粉存在下制备各种无机空心微胶囊的通用生物材料辅助水热法

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摘要

A universal bio-economical hydrothermal route has been developed to prepare various inorganic hollow micro capsules with the help of rapeseed pollens for the first time. The pollens were used without any modifications. TiO2, ZnO, zeolite ZSM-5, BaTiO3 and ZnS were prepared by this route using the regular synthesis solutions added with rapeseed pollens. The obtained products were examined by scanning and transmission electron microscopy, X-ray diffraction, FT-IR, N-2 adsorption and thermogravimetric analysis. The hollow microcapsules are composed of inorganic particles around the derivations of pollens. And the diameter of the hollow has been demonstrated almost the same size as the derivations microspheres. The derivations were decomposed in high temperature crystallization procedure; therefore, no additional procedure is needed to remove the templates for the hollow structure. The hollow microcapsules prepared with rapeseeds have much higher specific surface area. The formation mechanism can be ascribed to the template effect of derivative microspheres formed from decomposition of these pollen grains. Furthermore, other pollens are also used in the preparation by the universal hydrothermal route. Still, inorganic hollow microcapsules but with different hollow diameters were obtained, probably resulting from the different size of the derivations. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经开发了一种普遍的生物经济的水热路线,以首次借助油菜花粉制备各种无机空心微胶囊。花粉未经任何修饰即可使用。通过这种方法,使用添加了菜籽花粉的常规合成溶液,通过该方法制备了TiO2,ZnO,沸石ZSM-5,BaTiO3和ZnS。通过扫描和透射电子显微镜,X射线衍射,FT-IR,N-2吸附和热重分析检查所得产物。中空微囊由围绕花粉衍生的无机颗粒组成。并且已经证明,空腔的直径几乎与衍生微球的尺寸相同。该衍生物在高温结晶过程中分解。因此,不需要额外的步骤来移除用于中空结构的模板。用油菜籽制备的中空微胶囊具有更高的比表面积。形成机理可以归因于由这些花粉粒的分解形成的衍生微球的模板作用。此外,通过通用热液途径在制备中还使用了其他花粉。仍然获得了具有不同中空直径的无机中空微囊,这可能是由于衍生物的大小不同所致。 (C)2016 Elsevier B.V.保留所有权利。

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