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Microfluidics
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===Fuel cells=== {{Further|Electroosmotic pump}} Microfluidic [[fuel cells]] can use laminar flow to separate the fuel and its oxidant to control the interaction of the two fluids without the physical barrier that conventional fuel cells require.<ref>{{cite web| vauthors = Santiago JG |work = Stanford Microfluidics Laboratory|url = http://microfluidics.stanford.edu/fuel_cells.htm|title = Water Management in PEM Fuel Cells|archive-url = https://web.archive.org/web/20080628192632/http://microfluidics.stanford.edu/fuel_cells.htm|archive-date = 28 June 2008 }}</ref><ref>{{cite journal| vauthors = Tretkoff E |date = May 2005|volume = 14|issue = 5|pages = 3|journal = APS News|url = http://www.aps.org/publications/apsnews/200505/fuel.cfm|title = Building a Better Fuel Cell Using Microfluidics }}</ref><ref>{{cite web| vauthors = Allen J |url = http://www.me.mtu.edu/mnit/|title = Fuel Cell Initiative at MnIT Microfluidics Laboratory|publisher = Michigan Technological University|archive-url = https://web.archive.org/web/20080305215325/http://www.me.mtu.edu/mnit/|archive-date = 2008-03-05 }}</ref>
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