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Real-time measurement of size-resolved elemental composition ratio for flame synthesized composite nanoparticle aggregates using a tandem SMPS-ICP-OES

机译:使用串联SMPS-ICP-OES实时测量火焰合成的复合纳米颗粒聚集体的尺寸分辨元素组成比

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摘要

Composite nanoparticles find application in catalysis, drug delivery, and energy storage and require increasingly fine control of their physical properties and composition. While composite nanoparticles have been widely synthesized and characterized, little work has systematically correlated the initial concentration of precursors and the final composition of flame synthesized composite nanoparticles. This relationship is explored in a diffusion flame aerosol reactor by coupling a scanning mobility particle sizer (SMPS) with an inductively coupled plasma optical emission spectrometer (ICP-OES). A framework for studying the relationship between the initial precursor concentrations of different elements and the final nanoparticle composition is explored. The size-resolved elemental composition was measured by directly injecting size-selected fractions of aggregated magnetite and silicon dioxide composite nanoparticles into the ICP-OES plasma. This work showed a correlation between precursor molar ratio and the measured elemental ratio in the mobility size range of 50 to 140 nm. Building on previous work studying size resolved elemental composition of engineered nanoparticles, the analysis is extended to flame synthesized composite nanoparticle aggregates in this work.
机译:复合纳米颗粒可用于催化,药物递送和能量存储,并且需要对其物理性质和组成的日益精细的控制。尽管复合纳米颗粒已经得到了广泛的合成和表征,但很少有工作将前驱体的初始浓度和火焰合成的复合纳米颗粒的最终组成进行系统地关联。通过将扫描迁移率粒度仪(SMPS)与电感耦合等离子体发射光谱仪(ICP-OES)耦合,在扩散火焰气溶胶反应器中探索了这种关系。探索了用于研究不同元素的初始前体浓度与最终纳米颗粒组成之间关系的框架。通过将聚集的磁铁矿和二氧化硅复合纳米颗粒的尺寸选择馏分直接注入ICP-OES等离子体中来测量尺寸分辨的元素组成。这项工作表明在迁移率大小范围为50至140 nm的情况下,前驱物摩尔比与测得的元素比之间存在相关性。在先前研究工程化纳米粒子的尺寸分辨元素组成的基础上,该研究将分析扩展到了火焰合成的复合纳米粒子聚集体。

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