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首页> 外文期刊>Analytical chemistry >Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking
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Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking

机译:三维跟踪研究圆柱纳米孔中慢扩散纳米颗粒的微观运动

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摘要

To study slow mass transport in confined environments, we developed a three-dimensional (3D) single-particle localization technique to track their microscopic movements in cylindrical nanopores. Under two model conditions, particles are retained much longer inside the pores: (1) increased solvent viscosity, which slows down the particle throughout the whole pore, and (2) increased pore wall affinity, which slows down the particle only at the wall. In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. As a contrast, the particles in sticky pores are microscopically active by showing limited reduction of step sizes. A restricted diffusion mode, possibly caused by the heterogeneous environment in sticky pores, is the main reason for macroscopically slow diffusion. This study shows that it is possible to differentiate slow diffusion in confined environments caused by different mechanisms.
机译:为了研究受限环境中的缓慢传质,我们开发了三维(3D)单粒子定位技术来跟踪它们在圆柱纳米孔中的微观运动。在两种模型条件下,颗粒在孔内的保留时间更长:(1)溶剂粘度增加,这会减慢整个孔中的颗粒的速度;(2)孔壁亲和力的增加,这只会使壁上的颗粒变慢。在粘性溶剂中,颗粒阶跃与粘度的增加成比例地减小,从而导致宏观上的缓慢扩散。相反,通过显示出有限的步长减小,粘性孔中的颗粒具有微观活性。宏观上缓慢扩散的主要原因是,受限的扩散模式可能是由粘性孔中的异质环境引起的。这项研究表明,有可能区分在不同环境下由不同机理引起的缓慢扩散。

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