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Investigation of the concentration- and temperature-dependent motion of colloidal nanoparticles

机译:调查和浓度与温度有关的运动的胶体纳米粒子

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Although the motion of a single nanoparticle suspended in a fluid can be easily modeled, things get complicated for non-infinitely diluted systems. Coincidentally, these are the systems of interest in relevant fields such as, nanomedicine, microfluidics and miniaturized energy storage devices. Hence, a better understanding of the dynamics of colloidal nanoparticles is utterly needed. Herein, the motion of colloidal suspension of plasmonic nanoparticles (i.e., gold nanoshells) is investigatedvialaser speckle imaging. The method relies on the analysis of the speckle pattern generated by colloidal suspensions forced to flow at specific velocities. Temperature-dependent measurements corroborated that the dynamics of non-infinitely diluted nanoparticle suspensions are better described through a diffusive model rather than by the equipartition theorem. Under the tested experimental conditions, an average diffusion velocity between 0.37 and 1.57 mm s(-1)was found. Most importantly, these values were largely dependent on the nanoparticle concentration. These results are in agreement with previous reports and indicate the existence of long-range interactions between nanoparticles.
机译:虽然单个纳米粒子的运动悬浮在液体很容易建模,事情变得复杂了non-infinitely稀释系统。等相关领域有兴趣,纳米、微流体和小型化能源存储设备。对胶体的动力学的理解纳米粒子是完全必要的。运动电浆的胶态悬浮体纳米粒子(即黄金nanoshells)investigatedvialaser散斑成像。依赖于对散斑图的分析生成的胶体悬浮液被迫流在特定的速度。动态测量证实non-infinitely稀释纳米颗粒悬浮液更好的通过扩散模型描述吗而不是由能量均分定理。测试实验条件,平均0.37和1.57毫米之间的扩散速度(1)被发现。在很大程度上依赖于纳米颗粒吗浓度。与先前的报告和说明存在远程的纳米粒子之间的相互作用。

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