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Mild stratification in drying films of colloidal mixtures

Authors
Park, Jin SeokYun, JinseongChun, ByoungjinJung, Hyun Wook
Issue Date
11-5월-2022
Publisher
ROYAL SOC CHEMISTRY
Citation
SOFT MATTER, v.18, no.18, pp.3487 - 3497
Indexed
SCIE
SCOPUS
Journal Title
SOFT MATTER
Volume
18
Number
18
Start Page
3487
End Page
3497
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/141732
DOI
10.1039/d2sm00205a
ISSN
1744-683X
Abstract
Size stratification of bidisperse colloidal mixtures during vertical drying was investigated using the implicit solvent Langevin dynamics (LD) simulation and the explicit solvent lattice Boltzmann (LB) method. Simulations were performed for the Peclet number (Pe) over a wide range of 1-1000. In the case of a low size ratio of 2, mild stratification was observed in both simulation methods, in contrast to distinct stratification with thick "small-on-top" or "large-on-top" layers. The LD simulations exhibited a "small-on-top" stratification or mixed state. In contrast, the LB simulations exhibited a "large-on-top" or mixed state, according to the variation in Pe. The results demonstrated that the explicit solvent reduced the collective diffusion under moderate Pe conditions. This suppressed the steep concentration gradient of small particles in the packed region of particles near the air-solvent interface. Thus, distinguishable stratification patterns were obtained for the implicit and explicit solvent models.
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