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颗粒形状对胶体悬浮液蒸发液滴边缘生长动力学的影响。

Effects of particle shape on growth dynamics at edges of evaporating drops of colloidal suspensions.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Phys Rev Lett. 2013 Jan 18;110(3):035501. doi: 10.1103/PhysRevLett.110.035501.

Abstract

We study the influence of particle shape on growth processes at the edges of evaporating drops. Aqueous suspensions of colloidal particles evaporate on glass slides, and convective flows during evaporation carry particles from drop center to drop edge, where they accumulate. The resulting particle deposits grow inhomogeneously from the edge in two dimensions, and the deposition front, or growth line, varies spatiotemporally. Measurements of the fluctuations of the deposition front during evaporation enable us to identify distinct growth processes that depend strongly on particle shape. Sphere deposition exhibits a classic Poisson-like growth process; deposition of slightly anisotropic particles, however, belongs to the Kardar-Parisi-Zhang universality class, and deposition of highly anisotropic ellipsoids appears to belong to a third universality class, characterized by Kardar-Parisi-Zhang fluctuations in the presence of quenched disorder.

摘要

我们研究了颗粒形状对蒸发液滴边缘生长过程的影响。胶体颗粒的水悬浮液在玻璃载玻片上蒸发,蒸发过程中的对流流将颗粒从液滴中心带到液滴边缘,在那里它们积聚。由此产生的颗粒沉积物从二维边缘不均匀地生长,沉积前沿或生长线随时间和空间变化。蒸发过程中对沉积前沿波动的测量使我们能够识别出强烈依赖于颗粒形状的不同生长过程。球形沉积表现出经典的泊松样生长过程;然而,略微各向异性的颗粒的沉积属于 Kardar-Parisi-Zhang 普适类,而高度各向异性的椭球体的沉积似乎属于第三普适类,其特征是在存在淬火无序的情况下出现 Kardar-Parisi-Zhang 涨落。

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