Steady states of thin film droplets on chemically heterogeneous substrates

Author:

Liu Weifan1,Witelski Thomas P2

Affiliation:

1. Department of Mathematics, Syracuse University, Syracuse, New York, 13244, USA

2. Department of Mathematics, Duke University, Durham, North Carolina, 27708-0320, USA

Abstract

Abstract We study steady-state thin films on chemically heterogeneous substrates of finite size, subject to no-flux boundary conditions. Based on the structure of the bifurcation diagram, we classify the 1D steady-state solutions that exist on such substrates into six different branches and develop asymptotic estimates for the steady states on each branch. Using perturbation expansions, we show that leading-order solutions provide good predictions of the steady-state thin films on stepwise-patterned substrates. We show how the analysis in one dimension can be extended to axisymmetric solutions. We also examine the influence of the wettability contrast of the substrate pattern on the linear stability of droplets and the time evolution for dewetting on small domains. Results are also applied to describe 2D droplets on hydrophilic square patches and striped regions used in microfluidic applications.

Funder

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Applied Mathematics

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