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Precise Measurement of the Size of Nanoparticles by Dynamic Light Scattering with Uncertainty Analysis

机译:动态光散射不确定度分析精确测量纳米颗粒的尺寸

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摘要

Dynamic light scattering(DLS)is a powerful technique for the sizing of nanoparticles and characterization of their properties in the liquid phase.However,the precision of this technique remains unclear and therefore,in the current work,the precision of the DLS technique for sizing polystyrene latex suspensions and the uncertainty of the DLS data are estimated.Precise measurements of the short time correlation function at seven scattering angles and five different concentrations are performed for four kinds of polystyrene latex suspensions with diameters of 30-100 nm.The extrapolations of apparent diffusion coefficients to infinite dilution and to lower angles yield more precise values than those obtained at one angle and one concentration.The extrapolated particle size measured by DLS is compared to the size determined by a differential mobility analyzer(DMA)in air.Before the comparison,the intensity-averaged size measured by DLS is recalculated to the number-averaged size in the case of DMA from the particle size distribution.After the recalculation,consistent values of mean particle diameter are found to be between those obtained by DLS and DMA within the estimated uncertainties.
机译:动态光散射(DLS)是一种用于纳米颗粒尺寸测定和表征其液相特性的强大技术。但是,这种技术的精度尚不清楚,因此,在当前工作中,DLS技术用于尺寸确定的精度估算了聚苯乙烯乳胶悬浮液的悬浮液和DLS数据的不确定性,对四种直径为30-100 nm的聚苯乙烯乳胶悬浮液进行了七个散射角和五个不同浓度的短时相关函数的精确测量。与在一个角度和一个浓度下获得的扩散系数相比,无限稀释和更低角度的扩散系数产生更精确的值。将DLS测量的外推粒径与差动迁移率分析仪(DMA)在空气中确定的粒径进行比较。 ,在这种情况下,将通过DLS测量的强度平均大小重新计算为数均大小重新计算后,发现在估计的不确定性范围内,平均粒径的一致值介于DLS和DMA获得的值之间。

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