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首页> 外文期刊>Journal of Colloid and Interface Science >Accurate particle size distribution determination by nanoparticle tracking analysis based on 2-D Brownian dynamics simulation
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Accurate particle size distribution determination by nanoparticle tracking analysis based on 2-D Brownian dynamics simulation

机译:基于二维布朗动力学模拟的纳米粒子跟踪分析确定准确的粒度分布

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摘要

A physical model is presented to simulate the average step length distribution during nanoparticle tracking analysis experiments as a function of the particle size distribution and the distribution of the number of steps within the tracks. Considering only tracks of at least five steps, numerical simulation could be replaced by a normal distribution approximation. Based on this model, simulation of a step length distribution allows obtaining a much more reliable estimation of the particle size distribution, thereby reducing the artificial broadening of the distribution, as is typically observed by direct conversion of step length to particle size data. As this fitting procedure also allowed including data from particles that were followed for a relatively low number of steps, the measurement time could be reduced for particles that are known to be monodisperse. Whereas the inversion is less sensitive towards the particle size distribution width, still similar values were obtained for both the average diameter and standard deviation of a polystyrene latex sample irrespective of the track length, provided that the latter included at least five steps.
机译:提出了一个物理模型来模拟纳米粒子跟踪分析实验期间平均步长分布,该平均步长是粒径分布和轨道内步数分布的函数。仅考虑至少五个步骤的轨迹,可以用正态分布近似代替数值模拟。基于该模型,步长分布的仿真允许获得更可靠的粒度分布估计,从而减少了分布的人为加宽,这通常是通过将步长直接转换为粒度数据而观察到的。由于该拟合过程还允许包含来自相对较少步骤数的粒子的数据,因此对于已知为单分散的粒子,可以减少测量时间。尽管倒置对粒度分布宽度较不敏感,但聚苯乙烯乳胶样品的平均直径和标准偏差无论走线长度如何都可获得相似的值,条件是走线长度至少应包括五个步骤。

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