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Wettability control and patterning of PDMS using UV-ozone and water immersion

Year: 2011

Journal: Journal of Colloid and Interface Science 2011, 363 (1) pp 371-378, 20121211

Authors: Kun Ma, Javier Rivera, George J. Hirasaki, Sibani Lisa Biswal

Organizations: Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX, USA

We demonstrate a simple method to tune and pattern the wettability of polydimethylsiloxane (PDMS) to generate microfluidic mimics of heterogeneous porous media. This technique allows one to tailor the capillary forces at different regions within the PDMS channel to mimic multi-phase flow in oil reservoirs. In this method, UV–ozone treatment is utilized to oxidize and hydrophilize the surface of PDMS. To maintain a stable surface wettability, the oxidized surfaces are immersed in water. Additionally, the use of a photomask makes it convenient to pattern the wettability in the porous media. A one-dimensional diffusive reaction model is established to understand the UV–ozone oxidation as well as hydrophobic recovery of oxidized PDMS surfaces. The modeling results show that during UV–ozone, surface oxidation dominates over diffusion of low-molecular-weight (LMW) species. However, the diffusivity of LMW species plays an important role in wettabilitycontrol of PDMS surfaces.