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首页> 外文期刊>Journal of Aerosol Science >Synthesis of non-agglomerated nanoparticles by an electrospray assisted chemical vapor deposition (ES-CVD) method
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Synthesis of non-agglomerated nanoparticles by an electrospray assisted chemical vapor deposition (ES-CVD) method

机译:通过电喷雾辅助化学气相沉积(ES-CVD)方法合成非团聚的纳米颗粒

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Non-agglomerated spherical silicon, titanium and zirconium oxide nanoparticles were prepared using an electrospray assisted chemical vapor deposition (ES-CVD) process. Metal alkoxides in conjunction with an electrospray method were used to introduce charged precursors into a CVD reactor. The ions are produced during evaporation of the charged droplets, and they probably act as seed nuclei (i.e., ion-induced nucleation) and/or, they are attached to the produced particles. The experimental results were compared with those obtain using a conventional evaporation CVD method. The particles generated using the conventional evaporation method were agglomerated to a considerable extent irregardless of the type of particle. Whereas, at the same conditions, high concentrations of non-agglomerated nanoparticles having diameters in the range of 10-40 nm were obtained using the ES-CVD method. This appears to be due to the charging effects of the generated particles, that is, the electrostatic dispersion of unipolarly charged particles. The size of the non-agglomerated particles in the ES-CVD method was reduced as the results of the decrease in the concentration of precursors introduced by electrospray.
机译:使用电喷雾辅助化学气相沉积(ES-CVD)工艺制备了非团聚的球形硅,钛和锆氧化物纳米颗粒。结合电喷雾方法使用金属醇盐将带电的前体引入CVD反应器。离子在带电液滴的蒸发过程中产生,它们可能充当种子核(即离子诱导的成核)和/或附着在产生的颗粒上。将实验结果与使用常规蒸发CVD方法获得的结果进行了比较。无论颗粒的类型如何,使用常规蒸发方法产生的颗粒都在相当大的程度上团聚。而在相同条件下,使用ES-CVD方法可获得高浓度的直径在10-40 nm范围内的非团聚纳米颗粒。这似乎是由于产生的粒子的带电作用,即单极性带电粒子的静电分散。由于电喷雾引入的前驱物浓度降低的结果,在ES-CVD方法中非聚集颗粒的尺寸减小了。

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