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Ion bridges in microfluidic systems

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dc.contributor.authorPark, Sangyun-
dc.contributor.authorChung, Taek Dong-
dc.contributor.authorKim, Hee Chan-
dc.date.accessioned2012-06-29T01:12:00Z-
dc.date.available2012-06-29T01:12:00Z-
dc.date.issued2009-03-
dc.identifier.citationMICROFLUIDICS AND NANOFLUIDICS; Vol.6 3; 315-331ko_KR
dc.identifier.issn1613-4982-
dc.identifier.urihttps://hdl.handle.net/10371/77858-
dc.description.abstractRecently many microfluidic systems are increasingly equipped with functional units for ionic controls for various applications. In this review article, we define an ion bridge as a structure that controls current or distribution of ions in a microfluidic system, and summarize the ion bridges in the literature in terms of characteristics, fabrication methods, advantages and disadvantages. The ion bridges play two basic roles, namely to ensure electrical contact in a microfluidic network and mechanically separate a liquid phase from another. More interestingly, the charged surfaces of ion bridges, which can be chemically modified, create new characteristics such as permselectivity and concentration polarization. Asymmetric ion transport as well as ionic conductivity through the ion bridges suggests a variety of applications including sample preconcentration, electroosmotic pump, electrospray ionization, electrically driven valve and many others. This review categorizes the ion bridges into several classes and describes the structures, materials, fundamental functions and applications. In Perspectives, new opportunities of microfluidics and nanofluidics provided by the ion bridges are discussed.ko_KR
dc.description.sponsorshipThis work was supported by the Korea Science
and Engineering Foundation (KOSEF) grant funded by the Korea
government (MEST) (No. R11-2008-012-00000-0) and by the Next
Generation New Technology Development Program funded by MKE,
Korea.
ko_KR
dc.language.isoenko_KR
dc.publisherSPRINGER HEIDELBERGko_KR
dc.subjectIon bridgeko_KR
dc.subjectMicrofluidicsko_KR
dc.subjectIon controlko_KR
dc.subjectConcentration polarizationko_KR
dc.subjectPhotopolymerizationko_KR
dc.subjectNanochannelko_KR
dc.titleIon bridges in microfluidic systemsko_KR
dc.typeArticleko_KR
dc.contributor.AlternativeAuthor박상윤-
dc.contributor.AlternativeAuthor정택동-
dc.contributor.AlternativeAuthor김희찬-
dc.identifier.doi10.1007/s10404-008-0391-4-
dc.citation.journaltitleMICROFLUIDICS AND NANOFLUIDICS-
dc.description.citedreferenceZhou KM, 2008, J AM CHEM SOC, V130, P8614, DOI 10.1021/jaS02692x-
dc.description.citedreferenceLiu JK, 2008, ELECTROPHORESIS, V29, P2241, DOI 10.1002/elps.200700608-
dc.description.citedreferenceEhlert S, 2008, MICROFLUID NANOFLUID, V4, P471, DOI 10.1007/s10404-007-0200-5-
dc.description.citedreferenceLee JH, 2008, ANAL CHEM, V80, P3198, DOI 10.1021/ac800362e-
dc.description.citedreferenceTandon V, 2008, ELECTROPHORESIS, V29, P1092, DOI 10.1002/elps.200700734-
dc.description.citedreferenceGong M, 2008, ELECTROPHORESIS, V29, P1237, DOI 10.1002/elps.200700486-
dc.description.citedreferenceTandon V, 2008, ELECTROPHORESIS, V29, P1102, DOI 10.1002/elps.200800735-
dc.description.citedreferenceNischang I, 2008, ELECTROPHORESIS, V29, P1140, DOI 10.1002/elps.200700727-
dc.description.citedreferenceDhopeshwarkar R, 2008, ANAL CHEM, V80, P1039-
dc.description.citedreferenceKovarik ML, 2008, ANAL CHEM, V80, P657, DOI 10.1021/ac701759t-
dc.description.citedreferenceChung AJ, 2008, LAB CHIP, V8, P330, DOI 10.1039/b713325a-
dc.description.citedreferenceHlushkou D, 2008, LAB CHIP, V8, P1153, DOI 10.1039/b800549d-
dc.description.citedreferenceKim D, 2008, LAB CHIP, V8, P625, DOI 10.1039/b717268k-
dc.description.citedreferenceLee JH, 2008, LAB CHIP, V8, P596, DOI 10.1039/b717900f-
dc.description.citedreferenceChun H, 2008, LAB CHIP, V8, P764, DOI 10.1039/b715229a-
dc.description.citedreferenceSEIBEL K, 2008, J MICROMECH MICROENG, V18, P25008, DOI 10.1088/0960-1317/18/2/025008-
dc.description.citedreferenceKIM DK, 2008, J MICROMECH MICROENG, V18, P55006-
dc.description.citedreferenceJin XZ, 2007, LANGMUIR, V23, P13209, DOI 10.1021/la702326v-
dc.description.citedreferenceKohlheyer D, 2007, ANAL CHEM, V79, P8190, DOI 10.1021/ac071419b-
dc.description.citedreferenceKim SK, 2007, ANAL CHEM, V79, P7761, DOI 10.1021/ac071197h-
dc.description.citedreferenceChang CC, 2007, MICROFLUID NANOFLUID, V3, P501, DOI 10.1007/s10404-007-0178-z-
dc.description.citedreferenceCayre OJ, 2007, J AM CHEM SOC, V129, P10801, DOI 10.1021/ja072449z-
dc.description.citedreferenceLee JH, 2007, ANAL CHEM, V79, P6868, DOI 10.1021/ac071162h-
dc.description.citedreferenceHumble PH, 2007, J CHROMATOGR A, V1160, P311, DOI 10.1016/j.chroma.2007.04.013-
dc.description.citedreferenceLiu SR, 2007, J PHYS CHEM C, V111, P10818, DOI 10.1021/jp071252q-
dc.description.citedreferenceHoltzel A, 2007, J SEP SCI, V30, P1398, DOI 10.1002/jssc.200600427-
dc.description.citedreferenceZaltzman B, 2007, J FLUID MECH, V579, P173, DOI 10.1017/S0022112007004880-
dc.description.citedreferenceByun CK, 2007, ANAL CHEM, V79, P3862, DOI 10.1021/ac062457i-
dc.description.citedreferencePaek SH, 2007, BIOCHIP J, V1, P1-
dc.description.citedreferencePark SW, 2007, BIOCHIP J, V1, P35-
dc.description.citedreferenceKarnik R, 2007, NANO LETT, V7, P547, DOI 10.1021/nl062806o-
dc.description.citedreferenceDas C, 2007, SENSOR ACTUAT A-PHYS, V134, P271, DOI 10.1016/j.sna.2006.04.022-
dc.description.citedreferenceLong ZC, 2007, LAB CHIP, V7, P1819, DOI 10.1039/b711741h-
dc.description.citedreferenceKoster S, 2007, LAB CHIP, V7, P1394, DOI 10.1039/b709706a-
dc.description.citedreferenceSlouka Z, 2007, PHYS CHEM CHEM PHYS, V9, P5374, DOI 10.1039/b707197c-
dc.description.citedreferenceDas C, 2007, LAB CHIP, V7, P1806, DOI 10.1039/b712794d-
dc.description.citedreferenceWhitesides GM, 2006, NATURE, V442, P368, DOI 10.1038/nature05058-
dc.description.citedreferenceHatch AV, 2006, ANAL CHEM, V78, P4976, DOI 10.1021/ac0600454-
dc.description.citedreferenceKim SM, 2006, ANAL CHEM, V78, P4779, DOI 10.1021/ac060031y-
dc.description.citedreferenceLiu JK, 2006, ANAL CHEM, V78, P4654, DOI 10.1021/ac060204j-
dc.description.citedreferenceKim SK, 2006, SENSOR ACTUAT B-CHEM, V115, P212, DOI 10.1016/j.snb.2005.09.005-
dc.description.citedreferenceKohlheyer D, 2006, LAB CHIP, V6, P374, DOI 10.1039/b514731j-
dc.description.citedreferenceLee TMH, 2006, ANAL CHIM ACTA, V556, P26, DOI 10.1016/j.aca.2005.05.075-
dc.description.citedreferenceDatta A, 2006, TALANTA, V68, P659, DOI 10.1016/j.talanta.2005.05.011-
dc.description.citedreferenceGatimu EN, 2006, ANALYST, V131, P705, DOI 10.1039/b600158k-
dc.description.citedreferenceKARNIK R, 2006, APPL PHYS LETT, V88-
dc.description.citedreferenceIannacone JM, 2005, ELECTROPHORESIS, V26, P4684, DOI 10.1002/elps.200500498-
dc.description.citedreferencePennathur S, 2005, ANAL CHEM, V77, P6782, DOI 10.1021/ac0508346-
dc.description.citedreferenceChatterjee AN, 2005, J NANOPART RES, V7, P507, DOI 10.1007/s11051-005-5133-x-
dc.description.citedreferenceKarnik R, 2005, NANO LETT, V5, P1638, DOI 10.1021/nl050966e-
dc.description.citedreferenceWang YC, 2005, ANAL CHEM, V77, P4293, DOI 10.1021/ac050321z-
dc.description.citedreferenceRubinstein I, 2005, PHYS REV E, V72, DOI 10.1103/PhysRevE.72.011505-
dc.description.citedreferenceLiu SR, 2005, NANO LETT, V5, P1389, DOI 10.1021/nl050712t-
dc.description.citedreferencePlecis A, 2005, NANO LETT, V5, P1147, DOI 10.1021/nl050265h-
dc.description.citedreferenceKarnik R, 2005, NANO LETT, V5, P943, DOI 10.1021/nl050493b-
dc.description.citedreferenceLucchetta EM, 2005, NATURE, V434, P1134, DOI 10.1038/nature03509-
dc.description.citedreferenceChun HG, 2005, ANAL CHEM, V77, P2490, DOI 10.1021/ac048535o-
dc.description.citedreferenceFoote RS, 2005, ANAL CHEM, V77, P57, DOI 10.1021/ac049136w-
dc.description.citedreferenceTallarek U, 2005, ELECTROPHORESIS, V26, P391, DOI 10.1002/elps.200406167-
dc.description.citedreferenceDhopeshwarkar R, 2005, LAB CHIP, V5, P1148, DOI 10.1039/b509063f-
dc.description.citedreferenceYue GE, 2005, LAB CHIP, V5, P619, DOI 10.1039/b502446c-
dc.description.citedreferenceHumble PH, 2004, ANAL CHEM, V76, P5641, DOI 10.1021/ac040055+-
dc.description.citedreferenceLu H, 2004, ANAL CHEM, V76, P5257, DOI 10.1021/ac049837t-
dc.description.citedreferenceSong S, 2004, ANAL CHEM, V76, P4589, DOI 10.1022/ac0497151-
dc.description.citedreferencePu QS, 2004, NANO LETT, V4, P1099, DOI 10.1021/nl0494811-
dc.description.citedreferencePu QS, 2004, ANAL CHIM ACTA, V511, P105, DOI 10.1016/j.aca.2004.01.044-
dc.description.citedreferenceSong S, 2004, ANAL CHEM, V76, P2367, DOI 10.1021/ac035290r-
dc.description.citedreferenceLee SJ, 2004, APPL MICROBIOL BIOT, V64, P289, DOI 10.1007/s00253-003-1515-0-
dc.description.citedreferenceGascoyne PRC, 2004, P IEEE, V92, P22, DOI 10.1109/JPROC.2003.820535-
dc.description.citedreferenceKirby BJ, 2004, ELECTROPHORESIS, V25, P203, DOI 10.1002/elps.200305755-
dc.description.citedreferenceKirby BJ, 2004, ELECTROPHORESIS, V25, P187, DOI 10.1002/elps.200305754-
dc.description.citedreferenceLazar IM, 2003, ELECTROPHORESIS, V24, P3655, DOI 10.1002/elps.200305609-
dc.description.citedreferenceDai JH, 2003, J AM CHEM SOC, V125, P13026, DOI 10.1021/ja0374776-
dc.description.citedreferenceJung B, 2003, ELECTROPHORESIS, V24, P3476, DOI 10.1002/elps.200305611-
dc.description.citedreferenceLiu SR, 2003, J CHROMATOGR A, V1013, P57, DOI 10.1016/S0021-9673(03)00941-5-
dc.description.citedreferenceBrask A, 2003, SENSOR ACTUAT B-CHEM, V92, P127, DOI 10.1016/S0925-4005(03)00130-8-
dc.description.citedreferenceCannon DM, 2003, ANAL CHEM, V75, P2224, DOI 10.1021/ac020629f-
dc.description.citedreferenceKuo TC, 2003, ANAL CHEM, V75, P1861-
dc.description.citedreferenceCho BS, 2003, ANAL CHEM, V75, P1671, DOI 10.1021/ac020579e-
dc.description.citedreferenceWu CC, 2003, ANAL CHEM, V75, P947, DOI 10.1021/ac025912t-
dc.description.citedreferenceTakamura Y, 2003, ELECTROPHORESIS, V24, P185-
dc.description.citedreferenceKuo TC, 2003, SENSOR ACTUAT A-PHYS, V102, P223-
dc.description.citedreferenceLazar IM, 2002, ANAL CHEM, V74, P6259, DOI 10.1021/ac0203950-
dc.description.citedreferenceSeong GH, 2002, ANAL CHEM, V74, P3372, DOI 10.1021/ac020069k-
dc.description.citedreferenceLiu RH, 2002, J MICROELECTROMECH S, V11, P45, DOI 10.1109/84.982862-
dc.description.citedreferenceKhandurina J, 2002, J CHROMATOGR A, V943, P159-
dc.description.citedreferenceLacher NA, 2001, ELECTROPHORESIS, V22, P2526-
dc.description.citedreferenceGao J, 2001, ANAL CHEM, V73, P2648, DOI 10.1021/ac001126h-
dc.description.citedreferenceJiang Y, 2001, ANAL CHEM, V73, P2048-
dc.description.citedreferenceYu Q, 2001, APPL PHYS LETT, V78, P2589-
dc.description.citedreferenceSnita D, 2001, FARADAY DISCUSS, V120, P53, DOI 10.1039/b103530b-
dc.description.citedreferenceLazar IM, 2000, J CHROMATOGR A, V892, P195-
dc.description.citedreferenceKhandurina J, 2000, ANAL CHEM, V72, P2995, DOI 10.1021/ac991471a-
dc.description.citedreferenceTantra R, 2000, ANAL CHEM, V72, P2875, DOI 10.1021/ac000036+-
dc.description.citedreferenceBeebe DJ, 2000, NATURE, V404, P588-
dc.description.citedreferenceKrasemann L, 2000, LANGMUIR, V16, P287, DOI 10.1021/1a991240z-
dc.description.citedreferenceWen J, 2000, ELECTROPHORESIS, V21, P191-
dc.description.citedreferenceOcvirk G, 2000, ELECTROPHORESIS, V21, P107-
dc.description.citedreferenceSchasfoort RBM, 1999, SCIENCE, V286, P942-
dc.description.citedreferenceKhandurina J, 1999, ANAL CHEM, V71, P1815-
dc.description.citedreferenceKemery PJ, 1998, LANGMUIR, V14, P2884-
dc.description.citedreferenceRAMIREZ P, 1992, J APPL PHYS, V72, P259-
dc.description.citedreferenceMAFE S, 1990, PHYS REV A, V42, P6245-
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