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Fabrication inside microchannels using fluid flow

Kenis, Paul J. A. and Ismagilov, Rustem F. and Takayama, Shuichi and Whitesides, George M. and Li, Shulong and White, Henry S. (2000) Fabrication inside microchannels using fluid flow. Accounts of Chemical Research, 33 (12). pp. 841-847. ISSN 0001-4842. doi:10.1021/ar000062u.

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This Account summarizes techniques for carrying out microfabrication of structures with dimensions down to 10 mum in microchannels that are 0.02-2 mm wide. These methods are largely based on the exploitation of laminar flow at low Reynolds number (Re) to control the spatial delivery of reagents. These methods are illustrated by fabrication of fibers, microelectrode arrays, arrays of crystals, and patterns of proteins and cells.

Item Type:Article
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Ismagilov, Rustem F.0000-0002-3680-4399
Whitesides, George M.0000-0001-9451-2442
Additional Information:Copyright © 2000 American Chemical Society. Published In Issue: December 19, 2000. Received April 18, 2000. The work at Harvard was supported financially by DARPA through NSF Grant ECS-97294505, and MRSEC-shared facilities supported by the NSF under Grant NSF DMR-9809363 were used. Work at the University of Utah was supported by the Office of Naval Research. P.J.A.K. acknowledges the Netherlands Organization for Scientific Research (NWO) for a postdoctoral fellowship. S.T. thanks the Leukemia and Lymphoma Society for a postdoctoral fellowship.
Funding AgencyGrant Number
Office of Naval ResearchUNSPECIFIED
Netherlands Organization for Scientific Research (NWO)UNSPECIFIED
Leukemia and Lymphoma SocietyUNSPECIFIED
Subject Keywords:capillary-electrophoresis; fractionation; networks; fiber; cells
Issue or Number:12
Record Number:CaltechAUTHORS:20130821-160721858
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Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:40811
Deposited By: Whitney Barlow
Deposited On:28 Aug 2013 22:03
Last Modified:10 Nov 2021 00:08

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