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Integration of large-area polymer nanopillar arrays into microfluidic devices using in situ polymerization cast
Guofang Chen1, Gregory T McCandless, Robin L McCarley
1Department of Chemistry and Center for Biomodular Multiscale Systems, Louisiana State University, Baton Rouge, LA 70803-1804, USA. tunnel@lsu.edu
Abstract:
Presented here is a simple and robust approach for the integration of mixed-scale (nm-cm) structures into fluidic devices. We report on devices composed of large-area polymer nanopillar arrays of high aspect ratio (33-667) integrated into microfluidic channels fabricated by cast-molding polymerization of methyl methacrylate with mechanically/lithographically patterned, nanoporous aluminium oxide (AAO) templates. The microchannels containing the nanopillar arrays can be chemically functionalized and used for a variety of applications, such as separation beds or solid-phase reactors/extractors.

