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Sol-gel synthesis of SiC-TiO2 nanoparticles for microwave processing

机译:溶胶-凝胶法合成用于微波处理的SiC-TiO2纳米粒子

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摘要

A novel approach has been explored to facilitate microwave processing of anatase TiO2, a material that is normally inert in a microwave field. This involves production of core-shell silicon carbide ( SiC)-titania ( TiO2) structures in which the SiC exhibits significant microwave loss, and thus a susceptibility to heating via microwave radiation, as well as a high thermal conductivity. SiC nanoparticles were coated with TiO2 using a sol-gel process, involving the hydrolysis of titanium( IV) isopropoxide. Heat treatment of the novel core-shell nanostructure carried out in a conventional furnace and a microwave oven revealed that crystallization of the titania shell to anatase phase occurred at quite different temperatures, viz. 450 degrees C and 190 +/- 10 degrees C, respectively. A range of microstructural and N-2 adsorption/desorption techniques were used to characterize the different materials obtained from the two annealing methods. The relationship between structure and resultant physical properties of these core-shell materials and their behaviour in a microwave field is discussed.
机译:已经探索出一种新颖的方法来促进对锐钛矿型TiO2的微波处理,锐钛矿型TiO2通常在微波场中呈惰性。这涉及芯-壳碳化硅(SiC)-二氧化钛(TiO2)结构的生产,其中SiC表现出显着的微波损耗,因此易受微波辐射加热的影响,并具有高导热性。使用溶胶-凝胶法将TiO2涂覆在SiC纳米颗粒上,该过程涉及异丙醇钛(IV)的水解。在常规炉和微波炉中进行的新型核-壳纳米结构的热处理表明,二氧化钛壳结晶为锐钛矿相的过程是在完全不同的温度下发生的,即。分别为450摄氏度和190 +/- 10摄氏度。一系列的微观结构和N-2吸附/解吸技术被用来表征从两种退火方法获得的不同材料。讨论了这些核-壳材料的结构和所得物理性质与它们在微波场中的行为之间的关系。

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