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Synthesis of nanoparticles in a flame aerosol reactor with independent and strict control of their size, crystal phase and morphology

机译:在火焰气溶胶反应器中合成纳米颗粒,并对其尺寸,晶相和形态进行独立且严格的控制

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摘要

A flame aerosol reactor (FLAR) was developed to synthesize nanoparticles with desired properties (crystal phase and size) that could be independently controlled. The methodology was demonstrated for TiO2 nanoparticles, and this is the first time that large sets of samples with the same size but different crystal phases (six different ratios of anatase to rutile in this work) were synthesized. The degree of TiO2 nanoparticle agglomeration was determined by comparing the primary particle size distribution measured by scanning electron microscopy (SEM) to the mobility-based particle size distribution measured by online scanning mobility particle spectrometry (SMPS). By controlling the flame aerosol reactor conditions, both spherical unagglomerated particles and highly agglomerated particles were produced. To produce monodisperse nanoparticles, a high throughput multi-stage differential mobility analyser (MDMA) was used in series with the flame aerosol reactor. Nearly monodisperse nanoparticles (geometric standard deviation less than 1.05) could be collected in sufficient mass quantities (of the order of 10 mg) in reasonable time (1 h) that could be used in other studies such as determination of functionality or biological effects as a function of size.
机译:开发了火焰气溶胶反应器(FLAR)以合成具有可独立控制的所需特性(晶相和尺寸)的纳米粒子。该方法论是针对TiO2纳米颗粒而论证的,这是首次合成具有相同尺寸但晶体相不同(本研究中六种不同的锐钛矿与金红石比例)的大样本样品。通过将通过扫描电子显微镜(SEM)测量的一次粒径分布与通过在线扫描迁移率粒子光谱法(SMPS)测量的基于迁移率的粒径分布进行比较,确定TiO2纳米颗粒的团聚程度。通过控制火焰气溶胶反应器的条件,既产生了球形的未团聚的颗粒又产生了高度团聚的颗粒。为了生产单分散纳米颗粒,将高通量多级差动迁移率分析仪(MDMA)与火焰气溶胶反应器串联使用。可以在合理的时间(1 h)内以足够的质量(10 mg量级)收集几乎单分散的纳米颗粒(几何标准偏差小于1.05),这些纳米颗粒可用于其他研究,例如确定功能或生物学效应。大小的函数。

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