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Soft matter / Pumps / Fluid dynamics / Microfluidics / Diaphragm pump / Fluoropolymers / Diaphragm valve / Polydimethylsiloxane / Polytetrafluoroethylene / Fluid mechanics / Valves / Technology


www.rsc.org/loc | Lab on a Chip PAPER Teflon films for chemically-inert microfluidic valves and pumps†‡ William H. Grover,a Marcio G. von Muhlena and Scott R. Manalis*a,b
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Document Date: 2011-02-10 14:18:35


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microfluidic device / harsh chemicals / valve test chip / chemical attack / chemical resistance / w/v sodium hydroxide solution / pump test chips / completed microfluidic device / chemical compatibility / microfluidic applications / caustic piranha solution / uorescence applications / soft-lithography devices / manufacturing contexts / microfluidic devices / piranha solution / glass microfluidic devices / chemical inertness / imaging / valved microfluidic devices / Chemical compatibility data / extreme chemical inertness / glass devices / maximum chemical resistance / chemical groups / ight applications / terrestrial applications / test chip / chemicals / /

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California Institute of Technology / MIT Cell Decision Processes Center / Massachusetts Institute of Technology / Royal Society of Chemistry / National Institute of General Medical Sciences / Department of Biological Engineering / Department of Mechanical Engineering / Institute for Collaborative Biotechnologies / Lab on a Chip PAPER Teflon / MIT Center for Materials Science and Engineering / United States Army / /

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Jongyoon Han / G. von Muhlena / B. D. Hunt / V / Scott R. Manalis / William H. Grover / Libby Shaw / /

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valve test chip / X-ray / Electrophoresis / Previously-demonstrated monolithic membrane valves Lab Chip / polymerization / lab-on-a-chip / lithography / HTML / photolithography / test chip / spectroscopy / http / pump test chips / Lab Chip / /

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