Department of Chemical and Biomolecular Engineering, University of Houston, Houston, Texas 77204-4004, USA.
ACS Nano. 2013 Jun 25;7(6):5122-30. doi: 10.1021/nn4007303. Epub 2013 May 20.
The diffusive dynamics of dilute dispersions of nanoparticles of diameter 200-400 nm were studied in microfabricated arrays of nanoposts using differential dynamic microscopy and single particle tracking. Posts of diameter 500 nm and height 10 μm were spaced by 1.2-10 μm on a square lattice. As the spacing between posts was decreased, the dynamics of the nanoparticles slowed. Moreover, the dynamics at all length scales were best represented by a stretched exponential rather than a simple exponential. Both the relative diffusivity and the stretching exponent decreased linearly with increased confinement and, equivalently, with decreased void volume. The slowing of the overall diffusive dynamics and the broadening distribution of nanoparticle displacements with increased confinement are consistent with the onset of dynamic heterogeneity and the approach to vitrification.
使用微分动态显微镜和单粒子跟踪技术,研究了直径为 200-400nm 的纳米颗粒在微制造的纳米柱阵列中的稀分散体系的扩散动力学。直径为 500nm 且高度为 10μm 的柱子在正方形晶格上的间距为 1.2-10μm。随着柱间距的减小,纳米颗粒的动力学行为减缓。此外,在所有尺度上,动力学行为最好用拉伸指数而不是简单的指数来表示。相对扩散率和拉伸指数都随约束的增加呈线性减小,等效地,随着空隙体积的减小而减小。整体扩散动力学的减缓以及纳米颗粒位移分布的展宽随约束的增加而增加,这与动态异质性的出现和玻璃化转变的接近相一致。