首页> 外文期刊>Metrologia: International Journal of Scientific Metrology: = Internationale Zeitschrift fur Wissenschaftliche Metrologie: = Journal International de Metrologie Scientifique >Interlaboratory comparison of nanoparticle size measurements between NMIJ and NIST using two different types of dynamic light scattering instruments
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Interlaboratory comparison of nanoparticle size measurements between NMIJ and NIST using two different types of dynamic light scattering instruments

机译:使用两种不同类型的动态光散射仪器纳米和NIST之间纳米粒子尺寸测量的互责任比较

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摘要

The question of how to relate particle sizes measured using a fixed-angle dynamic light scattering (DLS) instrument with those measured using a multi-angle DLS instrument is addressed. A series of nearly monodisperse polystyrene latex (PSL) particles with nominal diameters of 100nm, 70nm, 50nm, and 30nm were measured using two different types of DLS instruments: one owned by the National Metrology Institute of Japan (NMU) of the multi-angle type and the other owned by the National Institute of Standards and Technology (MST) of the fixed-angle type. The mean particle size of the PSL particles was measured using the multi-angle-type instrument at various scattering angles and at various concentrations of particle suspension. These data were used to establish the functional dependence of the measured particle size on the scattering angle and particle concentration through the least-squares fitting method. The established function was then used to predict the mean particle sizes that would have been obtained if the same scattering angle and particle concentrations as those used at NIST had been selected at NMIJ. The mean particle sizes obtained at NIST and at NMIJ agreed quite well for all four PSI, particle samples after compensating for the angle and concentration differences. The result of this study clearly demonstrates that consideration for the dependence of measured particle sizes on the scattering angle and particle concentration is crucial in infra-method comparisons of mean particle sizes obtained using DLS.
机译:如何解决如何使用固定角度动态光散射(DLS)仪器测量的粒径与使用多角度DLS仪器测量的那些进行筛选的粒子尺寸。使用两种不同类型的DLS仪器测量具有100nm,70nm,50nm和30nm的标称直径的几乎单分散聚苯乙烯胶乳(PSL)颗粒:由日本国家计量研究所(NMU)拥有的多角度类型与固定角类型国家标准和技术研究所(MST)所拥有的。使用多角度型仪器以各种散射角度和各种浓度的颗粒悬浮液测量PSL颗粒的平均粒度。这些数据用于通过最小二乘拟合方法建立测量粒度对散射角度和颗粒浓度的功能依赖性。然后使用已建立的功能来预测,在NMIJ在NMIJ中选择了与NIST上使用的散射角和颗粒浓度相同的散射角和颗粒浓度将获得的平均颗粒尺寸。在补偿角度和浓度差异之后,在NIST和NMIJ处获得的平均粒子尺寸非常吻合所有四个PSI,颗粒样品。该研究的结果清楚地表明,对测量粒径对散射角和颗粒浓度的依赖性的考虑对于使用DL获得的平均粒子尺寸的红外法比较至关重要。

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