Phys. Rev. E 62, 756 - 765 (2000)

Contact line deposits in an evaporating drop

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Robert D. Deegan, Olgica Bakajin, Todd F. Dupont, Greg Huber, Sidney R. Nagel, and Thomas A. Witten
James Franck Institute, 5640 South Ellis Avenue, Chicago, Illinois 60637

Received 26 October 1999

Solids dispersed in a drying drop will migrate to the edge of the drop and form a solid ring. This phenomenon produces ringlike stains and occurs for a wide range of surfaces, solvents, and solutes. Here we show that the migration is caused by an outward flow within the drop that is driven by the loss of solvent by evaporation and geometrical constraint that the drop maintain an equilibrium droplet shape with a fixed boundary. We describe a theory that predicts the flow velocity, the rate of growth of the ring, and the distribution of solute within the drop. These predictions are compared with our experimental results.


©2000 The American Physical Society

URL: http://link.aps.org/abstract/PRE/v62/p756
DOI: 10.1103/PhysRevE.62.756
PACS: 81.15.-z, 68.10.Jy, 47.55.Dz, 83.70.Hq

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