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Published in: Colloid and Polymer Science 8-9/2008

01-08-2008 | Original Contribution

Sedimentation and drying dissipative patterns of ternary mixtures of colloidal silica spheres having different sizes

Authors: Tsuneo Okubo, Junichi Okamoto, Akira Tsuchida

Published in: Colloid and Polymer Science | Issue 8-9/2008

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Abstract

The sedimentation and drying dissipative structural patterns were formed during the course of drying ternary mixtures of colloidal silica spheres of 183 nm, 305 nm, and 1.205 μm in diameter in aqueous suspension on a watch glass, a glass dish, and a cover glass. The patterns were observed by closed-up pictures, metallurgical optical microscopy, 3D profile microscopy, reflection spectroscopy and AFM images. The concentrations of the three spheres ranged from 0.0023 to 0.0128 keeping the same concentrations for each spheres. Broad ring-like sedimentation patterns were formed within a short time in suspension state especially in a glass dish. In a watch glass, colorful three layered ring-like drying patterns were observed and composed of the outer, middle and inner layers of small, medium, and large spheres, respectively. The three colored segregated layers were formed by the balancing between the outward convectional flow and the inward sedimentation of spheres. In a glass dish, wave-like macroscopic drying patterns were observed in the intermediate areas between the outside edge of the broad ring at the central area and the inner wall of the cell especially at low sphere concentrations. The size of the broad ring at the central area increased as sphere concentration increased. On a cover glass, size segregation also took place, i.e., small, medium, and large spheres located at the outer, medium, and central areas, though these segregations were not so complete compared with those on a watch glass.

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Metadata
Title
Sedimentation and drying dissipative patterns of ternary mixtures of colloidal silica spheres having different sizes
Authors
Tsuneo Okubo
Junichi Okamoto
Akira Tsuchida
Publication date
01-08-2008
Publisher
Springer-Verlag
Published in
Colloid and Polymer Science / Issue 8-9/2008
Print ISSN: 0303-402X
Electronic ISSN: 1435-1536
DOI
https://doi.org/10.1007/s00396-008-1852-8

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