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Determination of nanopowders using microwave plasma optical emission spectrometry operating in a single particle mode

机译:使用单粒子模式操作的微波等离子体光发射光谱法测定纳米粉末

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摘要

Material science requires advanced analytical methods which allow size-fractionated and chemical quantification of powdered nanomaterials. Nanopowders can be introduced to a helium plasma by pneumatic nebulization based on fluidized bed approach and measure with a time resolution of 4-20 ms. This new analytical technique is accessible by an microwave plasma optical emission spectrometry (MWP-OES) operated in single-particle mode, providing information about their elemental composition, size, dispersity and agglomeration of nanoparticles (NPs). Next, NPs can be characterized by the corresponding element-to-element molar ratios and compared to the theoretically expected values. For a series of nanooxides, size detection limits between 5 and 250 nm are achieved at an integration time of 10 ms. For mixed nanooxides sample, satisfactory temporal resolution is obtained with particle coincidence events below 5%. (C) 2019 Elsevier B.V. All rights reserved.
机译:材料科学需要先进的分析方法,其允许粉末纳米材料的尺寸分级和化学定量。 通过基于流化床方法的气动雾化可以通过气动雾化引入纳米粉末,并测量时间分辨率为4-20ms。 通过单粒子模式操作的微波等离子体光发射光谱法(MWP-OES)可访问这种新的分析技术,提供有关它们的元素组成,尺寸,分散度和纳米颗粒的附聚物的信息。 接下来,NPS可以通过相应的元素到元素摩尔比,并与理论上预期的值相比。 对于一系列纳米氧化物,在10ms的集成时间实现5至250nm之间的尺寸检测限。 对于混合纳米氧化物样品,获得令人满意的时间分辨率,颗粒巧合事件低于5%。 (c)2019年Elsevier B.V.保留所有权利。

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