Issue 44, 2012

Particle deposition after droplet evaporation on ultra-hydrophobic micro-textured surfaces

Abstract

We study the size and shape of the final deposit obtained when a drop with colloidal particles has dried on a ultra-hydrophobic surface made of micro-posts. As expected, most of the particles lie inside a circular area, whose radius roughly corresponds to the Laplace pressure threshold for liquid impalement inside the structure (Cassie–Wenzel transition), inducing a coffee-stain deposit due to contact-line pinning. Less expected is the observation of tiny deposits on top of posts in the area external to the main ring, despite the low macroscopic liquid/solid friction. Experiments are carried out varying the concentration in particles and initial volume of drops, in order to determine the influence of these parameters on the size distribution of deposits. A microscopic insight of the tiny deposits is proposed, based on recent experiments of non-volatile liquid sliding drops.

Graphical abstract: Particle deposition after droplet evaporation on ultra-hydrophobic micro-textured surfaces

Article information

Article type
Paper
Submitted
19 May 2012
Accepted
23 Aug 2012
First published
11 Sep 2012

Soft Matter, 2012,8, 11294-11301

Particle deposition after droplet evaporation on ultra-hydrophobic micro-textured surfaces

P. Brunet, Soft Matter, 2012, 8, 11294 DOI: 10.1039/C2SM26161H

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