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Thermodiffusion motion of electrically charged nanoparticles

机译:带电纳米粒子的热扩散运动

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摘要

The present work deals with experimental studies to examine the theoretical model of thermodiffusion of electrically charged nanoparticles. Three different ionic magnetic colloid samples have been synthesized and profoundly analyzed. The theoretical model is a classical one, based on the calculation of the temperature and the electric potential distribution around nanoparticles. The discrepancy between experimental data and theory turns out not to exceed 20%. We focus on applying different approximations between calculated electrical double layer in the theoretical model and experimental determination of the surface charge density of colloidal particles. We assume this is the main reason for obtained discrepancy.
机译:本工作涉及实验研究,以检查带电纳米粒子热扩散的理论模型。合成并深入分析了三种不同的离子磁性胶体样品。该理论模型是经典模型,基于对纳米颗粒周围的温度和电势分布的计算。实验数据和理论之间的差异证明不超过20%。我们着重于在理论模型中计算的双电层和胶体颗粒表面电荷密度的实验确定之间应用不同的近似值。我们认为这是导致差异的主要原因。

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