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Measuring the relative concentration of particle populations using differential centrifugal sedimentation

机译:使用差分离心沉降测量颗粒种群的相对浓度

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The factors that affect the accuracy and precision of differential centrifugal sedimentation (DCS) for the analysis of nanoparticle concentration are described. Particles are separated by their sedimentation rate and detected using light absorption. In principle, the relative concentration of particles in different populations can be found, but the uncertainty in such measurements is unclear. We show that the most appropriate measurement of particle concentration using this technique is the mass concentration, rather than the number concentration. The relative mass concentration of two discrete populations can be measured with reasonable precision, usually without resorting to complicated data analysis. We provide practical approaches to find the relative mass concentrations for two cases: spherical particles of different materials and agglomerated particles of the same material. For spherical particles made of different materials, naive analysis of the results can provide relative mass concentrations that are many orders of magnitude in error. Correction factors can be calculated that reduce the error to less than 50%. In the case of agglomerated particles we show that errors of less than 20% are possible and demonstrate, in the case of gold particles, that a combination of UV-visible spectroscopy and DCS enable practical values of mass and number based particle concentrations to be obtained.
机译:描述了影响差分离心沉降(DCS)对纳米粒子浓度分析的准确度和精度的因素。颗粒通过它们的沉降速率分离并使用光吸收检测。原则上,可以找到不同群体中颗粒的相对浓度,但这种测量中的不确定性尚不清楚。我们表明使用该技术的颗粒浓度最合适的测量是质量浓度,而不是数量浓度。两个离散群体的相对质量浓度可以通过合理的精度测量,通常不诉诸复杂的数据分析。我们提供实际方法,以找到两种情况的相对质量浓度:不同材料的球形颗粒和相同材料的附聚颗粒。对于由不同材料制成的球形颗粒,结果的天真分析可以提供相对质量浓度,其误差是许多数量级。可以计算校正因子,从而将误差降至小于50%。在附聚颗粒的情况下,我们表明,在金颗粒的情况下,误差小于20%,在金颗粒的情况下,UV可见光光谱和DCS的组合能够获得待获得的质量和数量的颗粒浓度的实际值。

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