Core-shell particles preserve the bulk properties (e.g. magnetic, optical) of the core while its surface is modified by a shell material. Continuous aerosol coating of core TiO(2) nanoparticles with nanothin silicon dioxide shells by jet injection of hexamethyldisiloxane precursor vapor downstream of titania particle formation is elucidated by combining computational fluid and aerosol dynamics. The effect of inlet coating vapor concentration and mixing intensity on product shell thickness distribution is presented. Rapid mixing of the core aerosol with the shell precursor vapor facilitates efficient synthesis of hermetically coated core-shell nanoparticles. The predicted extent of hermetic coating shells is compared to the measured photocatalytic oxidation of isopropanol by such particles as hermetic SiO(2) shells prevent the photocatalytic activity of titania. Finally the performance of a simpler, plug-flow coating model is assessed by comparisons to the present detailed CFD model in terms of coating efficiency and silica average shell thickness and texture.
Design of Gas-phase Synthesis of Core-Shell Particles by Computational Fluid - Aerosol Dynamics.
利用计算流体动力学气相合成核壳粒子的设计——气溶胶动力学
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作者:Buesser B, Pratsinis S E
| 期刊: | AIChE Journal | 影响因子: | 4.000 |
| 时间: | 2011 | 起止号: | 2011 Nov;57(11):3132-3142 |
| doi: | 10.1002/aic.12512 | ||
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