-
1
-
-
33747117373
-
The origins and the future of microfluidics
-
DOI 10.1038/nature05058, PII NATURE05058
-
G.M. Whitesides The origins and the future of microfluidics Nature 442 2006 368 373 (Pubitemid 44264779)
-
(2006)
Nature
, vol.442
, Issue.7101
, pp. 368-373
-
-
Whitesides, G.M.1
-
2
-
-
34347256054
-
Microfluidic large-scale integration: The evolution of design rules for biological automation
-
DOI 10.1146/annurev.biophys.36.040306.132646
-
J. Melin, and S.R. Quake Microfluidic large-scale integration: the evolution of design rules for biological automation Annu. Rev. Biophys. Biomol. Struct. 36 2007 213 231 (Pubitemid 46998117)
-
(2007)
Annual Review of Biophysics and Biomolecular Structure
, vol.36
, pp. 213-231
-
-
Melin, J.1
Quake, S.R.2
-
3
-
-
78149242494
-
Microfluidics for bacterial chemotaxis
-
(Camb)
-
T. Ahmed, T.S. Shimizu, and R. Stocker Microfluidics for bacterial chemotaxis Integr. Biol. 2 2010 604 629 (Camb)
-
(2010)
Integr. Biol.
, vol.2
, pp. 604-629
-
-
Ahmed, T.1
Shimizu, T.S.2
Stocker, R.3
-
4
-
-
77958559522
-
Advances in microfluidics for drug discovery
-
D. Lombardi, and P.S. Dittrich Advances in microfluidics for drug discovery Expert Opin. Drug Dis. 5 2010 1081 1094
-
(2010)
Expert Opin. Drug Dis.
, vol.5
, pp. 1081-1094
-
-
Lombardi, D.1
Dittrich, P.S.2
-
5
-
-
77952633579
-
Transforming microfluidics into laboratory automation
-
T.H. Wang, and P.K. Wong Transforming microfluidics into laboratory automation JALA - J. Assoc. Lab. Aut. 15 2010 A15 A16
-
(2010)
JALA - J. Assoc. Lab. Aut.
, vol.15
-
-
Wang, T.H.1
Wong, P.K.2
-
6
-
-
77249095926
-
Monitoring the escape of DNA from a nanopore using an alternating current signal
-
D.K. Lathrop, E.N. Ervin, G.A. Barrall, M.G. Keehan, R. Kawano, M.A. Krupka, H.S. White, and A.H. Hibbs Monitoring the escape of DNA from a nanopore using an alternating current signal J. Am. Chem. Soc. 132 2010 1878 1885
-
(2010)
J. Am. Chem. Soc.
, vol.132
, pp. 1878-1885
-
-
Lathrop, D.K.1
Ervin, E.N.2
Barrall, G.A.3
Keehan, M.G.4
Kawano, R.5
Krupka, M.A.6
White, H.S.7
Hibbs, A.H.8
-
7
-
-
66449084672
-
Ionic field effect transistors with sub-10 nm multiple nanopores
-
S.W. Nam, M.J. Rooks, K.B. Kim, and S.M. Rossnagel Ionic field effect transistors with sub-10 nm multiple nanopores Nano Lett. 9 2009 2044 2048
-
(2009)
Nano Lett.
, vol.9
, pp. 2044-2048
-
-
Nam, S.W.1
Rooks, M.J.2
Kim, K.B.3
Rossnagel, S.M.4
-
8
-
-
67649966587
-
A silica nanochannel and its applications in sensing and molecular transport
-
B. Zhang, M. Wood, and H. Lee A silica nanochannel and its applications in sensing and molecular transport Anal. Chem. 81 2009 5541 5548
-
(2009)
Anal. Chem.
, vol.81
, pp. 5541-5548
-
-
Zhang, B.1
Wood, M.2
Lee, H.3
-
9
-
-
77949699110
-
Field effect modulation of ionic conductance of cylindrical silicon-on-insulator nanopore array
-
P. Joshi, A. Smolyanitsky, L. Petrossian, M. Goryll, M. Saraniti, and T.J. Thornton Field effect modulation of ionic conductance of cylindrical silicon-on-insulator nanopore array J. Appl. Phys. 107 2010 054701
-
(2010)
J. Appl. Phys.
, vol.107
, pp. 054701
-
-
Joshi, P.1
Smolyanitsky, A.2
Petrossian, L.3
Goryll, M.4
Saraniti, M.5
Thornton, T.J.6
-
10
-
-
24944498780
-
Microfluidics: Fluid physics at the nanoliter scale
-
DOI 10.1103/RevModPhys.77.977
-
T.M. Squires, and S.R. Quake Microfluidics: fluid physics at the nanoliter scale Rev. Mod. Phys. 77 2005 977 1026 (Pubitemid 43272528)
-
(2005)
Reviews of Modern Physics
, vol.77
, Issue.3
, pp. 977-1026
-
-
Squires, T.M.1
Quake, S.R.2
-
12
-
-
84856220215
-
Electrokinetics
-
Elsevier Academic Press NY, USA
-
D.Q. Li Electrokinetics Microfluidics 2004 Elsevier Academic Press NY, USA
-
(2004)
Microfluidics
-
-
Li, D.Q.1
-
13
-
-
63649135074
-
Electrokinetic motion of particles and cells in microchannels
-
Y.J. Kang, and D.Q. Li Electrokinetic motion of particles and cells in microchannels Microfluid. Nanofluid. 6 2009 431 460
-
(2009)
Microfluid. Nanofluid.
, vol.6
, pp. 431-460
-
-
Kang, Y.J.1
Li, D.Q.2
-
17
-
-
77957588922
-
Induced-charge electrokinetic phenomena
-
Y. Daghighi, and D.Q. Li Induced-charge electrokinetic phenomena Microfluid. Nanofluid. 9 2010 593 611
-
(2010)
Microfluid. Nanofluid.
, vol.9
, pp. 593-611
-
-
Daghighi, Y.1
Li, D.Q.2
-
18
-
-
19944383809
-
Electrostatic control of ions and molecules in nanofluidic transistors
-
DOI 10.1021/nl050493b
-
R. Karnik, R. Fan, M. Yue, D.Y. Li, P.D. Yang, and A. Majumdar Electrostatic control of ions and molecules in nanofluidic transistors Nano Lett. 5 2005 943 948 (Pubitemid 40749059)
-
(2005)
Nano Letters
, vol.5
, Issue.5
, pp. 943-948
-
-
Karnik, R.1
Fan, R.2
Yue, M.3
Li, D.4
Yang, P.5
Majumdar, A.6
-
19
-
-
0022043690
-
Boundary effects on electrophoretic motion of colloidal spheres
-
H.J. Keh, and J.L. Anderson Boundary effects on electrophoretic motion of colloidal spheres J. Fluid Mech. 153 1985 417 439 (Pubitemid 15494047)
-
(1985)
Journal of Fluid Mechanics
, vol.153
, pp. 417-439
-
-
Keh, H.J.1
Anderson, J.L.2
-
20
-
-
0025934317
-
Field-effect electroosmosis
-
K. Ghowsi, and R.J. Gale Field-effect electroosmosis J. Chromatogr. 559 1991 95 101
-
(1991)
J. Chromatogr.
, vol.559
, pp. 95-101
-
-
Ghowsi, K.1
Gale, R.J.2
-
21
-
-
84855920334
-
Gated transport in nanofluidic devices
-
X. Jin, and N. Aluru Gated transport in nanofluidic devices Microfluid. Nanofluid. 11 2011 297 306
-
(2011)
Microfluid. Nanofluid.
, vol.11
, pp. 297-306
-
-
Jin, X.1
Aluru, N.2
-
22
-
-
79959669677
-
Ionic current rectification in a conical nanofluidic field effect transistor
-
Y. Ai, J. Liu, B. Zhang, and S. Qian Ionic current rectification in a conical nanofluidic field effect transistor Sens. Actuators B 157 2011 742 751
-
(2011)
Sens. Actuators B
, vol.157
, pp. 742-751
-
-
Ai, Y.1
Liu, J.2
Zhang, B.3
Qian, S.4
-
23
-
-
77952872319
-
Electrofluidic gating of a chemically reactive surface
-
Z.J. Jiang, and D. Stein Electrofluidic gating of a chemically reactive surface Langmuir 26 2010 8161 8173
-
(2010)
Langmuir
, vol.26
, pp. 8161-8173
-
-
Jiang, Z.J.1
Stein, D.2
-
25
-
-
78650280059
-
Gating of nanopores: Modeling and implementation of logic gates
-
S. Mafe, J.A. Manzanares, and P. Ramirez Gating of nanopores: modeling and implementation of logic gates J. Phys. Chem. C 114 2010 21287 21290
-
(2010)
J. Phys. Chem. C
, vol.114
, pp. 21287-21290
-
-
Mafe, S.1
Manzanares, J.A.2
Ramirez, P.3
-
26
-
-
79953152328
-
Charge regulation in nanopore ionic field-effect transistors
-
Z.J. Jiang, and D. Stein Charge regulation in nanopore ionic field-effect transistors Phys. Rev. E 83 2011 031203
-
(2011)
Phys. Rev. e
, vol.83
, pp. 031203
-
-
Jiang, Z.J.1
Stein, D.2
-
27
-
-
77957322357
-
Field effect regulation of DNA translocation through a nanopore
-
Y. Ai, J. Liu, B. Zhang, and S. Qian Field effect regulation of DNA translocation through a nanopore Anal. Chem. 82 2010 8217 8225
-
(2010)
Anal. Chem.
, vol.82
, pp. 8217-8225
-
-
Ai, Y.1
Liu, J.2
Zhang, B.3
Qian, S.4
-
28
-
-
4344568092
-
Surface-charge-governed ion transport in nanofluidic channels
-
D. Stein, M. Kruithof, and C. Dekker Surface-charge-governed ion transport in nanofluidic channels Phys. Rev. Lett. 93 2004 035901
-
(2004)
Phys. Rev. Lett.
, vol.93
, pp. 035901
-
-
Stein, D.1
Kruithof, M.2
Dekker, C.3
-
29
-
-
33751269969
-
A pH-tunable nanofluidic diode: Electrochemical rectification in a reconstituted single ion channel
-
DOI 10.1021/jp063204w
-
A. Alcaraz, P. Ramirez, E. Garcia-Gimenez, M.L. Lopez, A. Andrio, and V.M. Aguilella A pH-tunable nanofluidic diode: electrochemical rectification in a reconstituted single ion channel J. Phys. Chem. B 110 2006 21205 21209 (Pubitemid 44797392)
-
(2006)
Journal of Physical Chemistry B
, vol.110
, Issue.42
, pp. 21205-21209
-
-
Alcaraz, A.1
Ramirez, P.2
Garcia-Gimenez, E.3
Lopez, M.L.4
Andrio, A.5
Aguilella, V.M.6
-
30
-
-
63649138398
-
A pH-tunable nanofluidic diode with a broad range of rectifying properties
-
M. Ali, P. Ramirez, S. Mafe, R. Neumann, and W. Ensinger A pH-tunable nanofluidic diode with a broad range of rectifying properties ACS Nano 3 2009 603 608
-
(2009)
ACS Nano
, vol.3
, pp. 603-608
-
-
Ali, M.1
Ramirez, P.2
Mafe, S.3
Neumann, R.4
Ensinger, W.5
-
31
-
-
75649089112
-
Logic gates using nanofluidic diodes based on conical nanopores functionalized with polyprotic acid chains
-
M. Ali, S. Mafe, P. Ramirez, R. Neumann, and W. Ensinger Logic gates using nanofluidic diodes based on conical nanopores functionalized with polyprotic acid chains Langmuir 25 2009 11993 11997
-
(2009)
Langmuir
, vol.25
, pp. 11993-11997
-
-
Ali, M.1
Mafe, S.2
Ramirez, P.3
Neumann, R.4
Ensinger, W.5
-
32
-
-
67749143918
-
Tuning transport properties of nanofluidic devices with local charge inversion
-
Y. He, D. Gillespie, D. Boda, I. Vlassiouk, R.S. Eisenberg, and Z.S. Siwy Tuning transport properties of nanofluidic devices with local charge inversion J. Am. Chem. Soc. 131 2009 5194 5202
-
(2009)
J. Am. Chem. Soc.
, vol.131
, pp. 5194-5202
-
-
He, Y.1
Gillespie, D.2
Boda, D.3
Vlassiouk, I.4
Eisenberg, R.S.5
Siwy, Z.S.6
-
33
-
-
77249178764
-
Nanoscale ionic diodes with tunable and switchable rectifying behavior
-
M.X. Macrae, S. Blake, M. Mayer, and J. Yang Nanoscale ionic diodes with tunable and switchable rectifying behavior J. Am. Chem. Soc. 132 2010 1766 1767
-
(2010)
J. Am. Chem. Soc.
, vol.132
, pp. 1766-1767
-
-
MacRae, M.X.1
Blake, S.2
Mayer, M.3
Yang, J.4
-
34
-
-
68649120710
-
Surface modification of single track-etched nanopores with surfactant CTAB
-
Y. Xie, J. Xue, L. Wang, X. Wang, K. Jin, L. Chen, and Y. Wang Surface modification of single track-etched nanopores with surfactant CTAB Langmuir 25 2009 8870 8874
-
(2009)
Langmuir
, vol.25
, pp. 8870-8874
-
-
Xie, Y.1
Xue, J.2
Wang, L.3
Wang, X.4
Jin, K.5
Chen, L.6
Wang, Y.7
-
35
-
-
34047096978
-
Rectification of ionic current in a nanofluidic diode
-
DOI 10.1021/nl062806o
-
R. Karnik, C. Duan, K. Castelino, H. Daiguji, and A. Majumdar Rectification of ionic current in a nanofluidic diode Nano Lett. 7 2007 547 551 (Pubitemid 46516024)
-
(2007)
Nano Letters
, vol.7
, Issue.3
, pp. 547-551
-
-
Karnik, R.1
Duan, C.2
Castelino, K.3
Daiguji, H.4
Majumdar, A.5
-
37
-
-
77951172459
-
Polyelectrolyte junction field effect transistor based on microfluidic chip
-
K.B. Kim, J.H. Han, H.C. Kim, and T.D. Chung Polyelectrolyte junction field effect transistor based on microfluidic chip Appl. Phys. Lett. 96 2010 143506
-
(2010)
Appl. Phys. Lett.
, vol.96
, pp. 143506
-
-
Kim, K.B.1
Han, J.H.2
Kim, H.C.3
Chung, T.D.4
-
38
-
-
77954044603
-
Limiting and overlimiting conductance in field-effect gated nanopores
-
Y. Liu, D.E. Huber, and R.W. Dutton Limiting and overlimiting conductance in field-effect gated nanopores Appl. Phys. Lett. 96 2010 253108
-
(2010)
Appl. Phys. Lett.
, vol.96
, pp. 253108
-
-
Liu, Y.1
Huber, D.E.2
Dutton, R.W.3
-
40
-
-
33645744236
-
Effect of the surface charge on ion transport through nanoslits
-
R.B. Schoch, H. van Lintel, and P. Renaud Effect of the surface charge on ion transport through nanoslits Phys. Fluids 17 2005 100604
-
(2005)
Phys. Fluids
, vol.17
, pp. 100604
-
-
Schoch, R.B.1
Van Lintel, H.2
Renaud, P.3
-
41
-
-
72849121683
-
Field-effect based attomole titrations in nanoconfinement
-
R.B.H. Veenhuis, E.J. van der Wouden, J.W. van Nieuwkasteele, A. van den Berg, and J.C.T. Eijkel Field-effect based attomole titrations in nanoconfinement Lab Chip 9 2009 3472 3480
-
(2009)
Lab Chip
, vol.9
, pp. 3472-3480
-
-
Veenhuis, R.B.H.1
Van Der Wouden, E.J.2
Van Nieuwkasteele, J.W.3
Van Den Berg, A.4
Eijkel, J.C.T.5
-
42
-
-
21744454977
-
Transport of ions and biomolecules through single asymmetric nanopores in polymer films
-
DOI 10.1016/j.nimb.2005.03.265, PII S0168583X05004921, Ionizing Radiation and Polymers Proceedings of the 6th International Symposium in Ionizing Radiation and Polymers
-
B. Schiedt, K. Healy, A.P. Morrison, R. Neumann, and Z. Siwy Transport of ions and biomolecules through single asymmetric nanopores in polymer films Nucl. Instrum. Methods Phys. Res. Sect. B - Beam Interact. Mater. Atoms 236 2005 109 116 (Pubitemid 40940673)
-
(2005)
Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms
, vol.236
, Issue.1-4
, pp. 109-116
-
-
Schiedt, B.1
Healy, K.2
Morrison, A.P.3
Neumann, R.4
Siwy, Z.5
-
43
-
-
33645704642
-
Ion-current rectification in nanopores and nanotubes with broken symmetry
-
Z.S. Siwy Ion-current rectification in nanopores and nanotubes with broken symmetry Adv. Funct. Mater. 16 2006 735 746
-
(2006)
Adv. Funct. Mater.
, vol.16
, pp. 735-746
-
-
Siwy, Z.S.1
-
45
-
-
69249086081
-
Nanopore analytics: Sensing of single molecules
-
S. Howorka, and Z. Siwy Nanopore analytics: sensing of single molecules Chem. Soc. Rev. 38 2009 2360 2384
-
(2009)
Chem. Soc. Rev.
, vol.38
, pp. 2360-2384
-
-
Howorka, S.1
Siwy, Z.2
-
47
-
-
67749133717
-
Single conical nanopores displaying pH-tunable rectifying characteristics. Manipulating ionic transport with zwitterionic polymer brushes
-
B. Yameen, M. Ali, R. Neumann, W. Ensinger, W. Knoll, and O. Azzaroni Single conical nanopores displaying pH-tunable rectifying characteristics. Manipulating ionic transport with zwitterionic polymer brushes J. Am. Chem. Soc. 131 2009 2070 2071
-
(2009)
J. Am. Chem. Soc.
, vol.131
, pp. 2070-2071
-
-
Yameen, B.1
Ali, M.2
Neumann, R.3
Ensinger, W.4
Knoll, W.5
Azzaroni, O.6
-
48
-
-
77949289658
-
Effects of electroosmotic flow on ionic current rectification in conical nanopores
-
Y. Ai, M. Zhang, S.W. Joo, M.A. Cheney, and S. Qian Effects of electroosmotic flow on ionic current rectification in conical nanopores J. Phys. Chem. C 114 2010 3883 3890
-
(2010)
J. Phys. Chem. C
, vol.114
, pp. 3883-3890
-
-
Ai, Y.1
Zhang, M.2
Joo, S.W.3
Cheney, M.A.4
Qian, S.5
-
50
-
-
70349298420
-
Nanopore DNA sensors based on dendrimer-modified nanopipettes
-
Y.Q. Fu, H. Tokuhisa, and L.A. Baker Nanopore DNA sensors based on dendrimer-modified nanopipettes Chem. Commun. 2009 4877 4879
-
(2009)
Chem. Commun.
, pp. 4877-4879
-
-
Fu, Y.Q.1
Tokuhisa, H.2
Baker, L.A.3
-
52
-
-
0037021311
-
Fabrication of a synthetic nanopore ion pump
-
Z. Siwy, and A. Fulinski Fabrication of a synthetic nanopore ion pump Phys. Rev. Lett. 89 2002 198103
-
(2002)
Phys. Rev. Lett.
, vol.89
, pp. 198103
-
-
Siwy, Z.1
Fulinski, A.2
-
54
-
-
25444456902
-
Field-effect control of electro-osmotic flow in microfluidic networks
-
DOI 10.1016/j.colsurfa.2005.06.048, PII S092777570500470X, Recent Advances in Electrokinetics: A Collection of Papers Presented at the 7th Internatioanl Electrokinetic Phenomena Conference
-
E.J.v.d. Wouden, T. Heuser, D.C. Hermes, R.E. Oosterbroek, J.G.E. Gardeniers, and A.v.d. Berg Field-effect control of electro-osmotic flow in microfluidic networks Colloid Surf. A: Physicochem. Eng. Aspects 267 2005 110 116 (Pubitemid 41368097)
-
(2005)
Colloids and Surfaces A: Physicochemical and Engineering Aspects
, vol.267
, Issue.1-3
, pp. 110-116
-
-
Van Der Wouden, E.J.1
Heuser, T.2
Hermes, D.C.3
Oosterbroek, R.E.4
Gardeniers, J.G.E.5
Van Den Berg, A.6
-
55
-
-
0034767184
-
Field-effect flow control in a polydimethylsiloxane-based microfluidic system
-
DOI 10.1002/1522-2683(200110)22:18<3902::AID-ELPS3902>3.0.CO;2-K
-
J.S. Buch, P.C. Wang, D.L. DeVoe, and C.S. Lee Field-effect flow control in a polydimethylsiloxane-based microfluidic system Electrophoresis 22 2001 3902 3907 (Pubitemid 33040207)
-
(2001)
Electrophoresis
, vol.22
, Issue.18
, pp. 3902-3907
-
-
Buch, J.S.1
Wang, P.-C.2
DeVoe, D.L.3
Lee, C.S.4
-
56
-
-
37149048114
-
Micropumps based on the enhanced electroosmotic effect of aluminum oxide membranes
-
DOI 10.1002/adma.200700767
-
J.Y. Miao, Z.L. Xu, X.Y. Zhang, N. Wang, Z.Y. Yang, and P. Sheng Micropumps based on the enhanced electroosmotic effect of aluminum oxide membranes Adv. Mater. 19 2007 4234 4237 (Pubitemid 350254803)
-
(2007)
Advanced Materials
, vol.19
, Issue.23
, pp. 4234-4237
-
-
Miao, J.1
Xu, Z.2
Zhang, X.3
Wang, N.4
Yang, Z.5
Sheng, P.6
-
58
-
-
46949085485
-
Low-voltage electroosmotic pumping using porous anodic alumina membranes
-
Y.F. Chen, M.C. Li, Y.H. Hu, W.J. Chang, and C.C. Wang Low-voltage electroosmotic pumping using porous anodic alumina membranes Microfluid. Nanofluid. 5 2008 235 244
-
(2008)
Microfluid. Nanofluid.
, vol.5
, pp. 235-244
-
-
Chen, Y.F.1
Li, M.C.2
Hu, Y.H.3
Chang, W.J.4
Wang, C.C.5
-
59
-
-
77955776362
-
A low-voltage nano-porous electroosmotic pump
-
Y. Ai, S.E. Yalcin, D. Gu, O. Baysal, H. Baumgart, S. Qian, and A. Beskok A low-voltage nano-porous electroosmotic pump J. Colloid Interface Sci. 350 2010 465 470
-
(2010)
J. Colloid Interface Sci.
, vol.350
, pp. 465-470
-
-
Ai, Y.1
Yalcin, S.E.2
Gu, D.3
Baysal, O.4
Baumgart, H.5
Qian, S.6
Beskok, A.7
-
60
-
-
71549157122
-
Field-effect control of electroosmotic pumping using porous silicon-silicon nitride membranes
-
S.K. Vajandar, D.Y. Xu, J.S. Sun, D.A. Markov, W.H. Hofmeister, and D.Y. Li Field-effect control of electroosmotic pumping using porous silicon-silicon nitride membranes J. Microelectromech. Syst. 18 2009 1173 1183
-
(2009)
J. Microelectromech. Syst.
, vol.18
, pp. 1173-1183
-
-
Vajandar, S.K.1
Xu, D.Y.2
Sun, J.S.3
Markov, D.A.4
Hofmeister, W.H.5
Li, D.Y.6
-
61
-
-
66149105797
-
Impact of leakage current and electrolysis on FET flow control and pH changes in nanofluidic channels
-
Y.J. Oh, D. Bottenus, C.F. Ivory, and S.M. Han Impact of leakage current and electrolysis on FET flow control and pH changes in nanofluidic channels Lab Chip 9 2009 1609 1617
-
(2009)
Lab Chip
, vol.9
, pp. 1609-1617
-
-
Oh, Y.J.1
Bottenus, D.2
Ivory, C.F.3
Han, S.M.4
-
63
-
-
0036683497
-
A chaotic electroosmotic stirrer
-
DOI 10.1021/ac025601i
-
S. Qian, and H.H. Bau A chaotic electroosmotic stirrer Anal. Chem. 74 2002 3616 3625 (Pubitemid 34855850)
-
(2002)
Analytical Chemistry
, vol.74
, Issue.15
, pp. 3616-3625
-
-
Qian, S.1
Bau, H.H.2
-
64
-
-
20444454596
-
Theoretical investigation of electro-osmotic flows and chaotic stirring in rectangular cavities
-
DOI 10.1016/j.apm.2004.10.006, PII S0307904X04001519
-
S. Qian, and H.H. Bau Theoretical investigation of electro-osmotic flows and chaotic stirring in rectangular cavities Appl. Math. Model. 29 2005 726 753 (Pubitemid 40815272)
-
(2005)
Applied Mathematical Modelling
, vol.29
, Issue.8
, pp. 726-753
-
-
Qian, S.1
Bau, H.H.2
-
65
-
-
7044272550
-
Electrokinetically driven active micro-mixers utilizing zeta potential variation induced by field effect
-
C.Y. Lee, G.B. Lee, L.M. Fu, K.H. Lee, and R.J. Yang Electrokinetically driven active micro-mixers utilizing zeta potential variation induced by field effect J. Micromech. Microeng. 14 2004 1390 1398
-
(2004)
J. Micromech. Microeng.
, vol.14
, pp. 1390-1398
-
-
Lee, C.Y.1
Lee, G.B.2
Fu, L.M.3
Lee, K.H.4
Yang, R.J.5
-
66
-
-
3543016123
-
Dispersion control in microfluidic chips by localized zeta potential variation using the field effect
-
G.B. Lee, L.M. Fu, C.H. Lin, C.Y. Lee, and R.J. Yang Dispersion control in microfluidic chips by localized zeta potential variation using the field effect Electrophoresis 25 2004 1879 1887
-
(2004)
Electrophoresis
, vol.25
, pp. 1879-1887
-
-
Lee, G.B.1
Fu, L.M.2
Lin, C.H.3
Lee, C.Y.4
Yang, R.J.5
-
67
-
-
1842423818
-
Induced Pressure Pumping in Polymer Microchannels via Field-Effect Flow Control
-
DOI 10.1021/ac034783t
-
N.J. Sniadecki, C.S. Lee, P. Sivanesan, and D.L. DeVoe Induced pressure pumping in polymer microchannels via field-effect flow control Anal. Chem. 76 2004 1942 1947 (Pubitemid 38451511)
-
(2004)
Analytical Chemistry
, vol.76
, Issue.7
, pp. 1942-1947
-
-
Sniadecki, N.J.1
Lee, C.S.2
Sivanesan, P.3
DeVoe, D.L.4
-
68
-
-
78049236434
-
Numerical analysis of field-modulated electroosmotic flows in microchannels with arbitrary numbers and configurations of discrete electrodes
-
K. Chao, B. Chen, and J.K. Wu Numerical analysis of field-modulated electroosmotic flows in microchannels with arbitrary numbers and configurations of discrete electrodes Biomed. Microdevices 12 2010 959 966
-
(2010)
Biomed. Microdevices
, vol.12
, pp. 959-966
-
-
Chao, K.1
Chen, B.2
Wu, J.K.3
-
69
-
-
29644444892
-
Active mixing inside microchannels utilizing dynamic variation of gradient zeta potentials
-
J.L. Lin, K.H. Lee, and G.B. Lee Active mixing inside microchannels utilizing dynamic variation of gradient zeta potentials Electrophoresis 26 2005 4605 4615
-
(2005)
Electrophoresis
, vol.26
, pp. 4605-4615
-
-
Lin, J.L.1
Lee, K.H.2
Lee, G.B.3
-
70
-
-
9944243120
-
A novel electrokinetic micromixer
-
H.Y. Wu, and C.H. Liu A novel electrokinetic micromixer Sens. Actuators A 118 2005 107 115
-
(2005)
Sens. Actuators A
, vol.118
, pp. 107-115
-
-
Wu, H.Y.1
Liu, C.H.2
-
71
-
-
68949088282
-
Asymmetric flows over symmetric surfaces: Capacitive coupling in induced-charge electro-osmosis
-
T.S. Mansuripur, A.J. Pascall, and T.M. Squires Asymmetric flows over symmetric surfaces: capacitive coupling in induced-charge electro-osmosis New J. Phys. 11 2009 075030
-
(2009)
New J. Phys.
, vol.11
, pp. 075030
-
-
Mansuripur, T.S.1
Pascall, A.J.2
Squires, T.M.3
-
72
-
-
44649144552
-
Experimental characterization of a metal-oxide-semiconductor field-effect transistor-based Coulter counter
-
M. Sridhar, D. Xu, Y. Kang, A.B. Hmelo, L.C. Feldman, and D. Li Experimental characterization of a metal-oxide-semiconductor field-effect transistor-based Coulter counter J. Appl. Phys. 103 2008 104701 10470110
-
(2008)
J. Appl. Phys.
, vol.103
, pp. 104701-10470110
-
-
Sridhar, M.1
Xu, D.2
Kang, Y.3
Hmelo, A.B.4
Feldman, L.C.5
Li, D.6
-
73
-
-
77957902887
-
Measurement of the volume growth rate of single budding yeast with the MOSFET-based microfluidic Coulter counter
-
J. Sun, C.C. Stowers, E.M. Boczko, and D. Li Measurement of the volume growth rate of single budding yeast with the MOSFET-based microfluidic Coulter counter Lab Chip 10 2010 2986 2993
-
(2010)
Lab Chip
, vol.10
, pp. 2986-2993
-
-
Sun, J.1
Stowers, C.C.2
Boczko, E.M.3
Li, D.4
-
74
-
-
33645513029
-
Field-effect control of protein transport in a nanofluidic transistor circuit
-
R. Karnik, K. Castelino, and A. Majumdar Field-effect control of protein transport in a nanofluidic transistor circuit Appl. Phys. Lett. 88 2006 123114
-
(2006)
Appl. Phys. Lett.
, vol.88
, pp. 123114
-
-
Karnik, R.1
Castelino, K.2
Majumdar, A.3
-
75
-
-
66149171649
-
Effect of wall-molecule interactions on electrokinetic transport of charged molecules in nanofluidic channels during FET flow control
-
Y.J. Oh, A.L. Garcia, D.N. Petsev, G.P. Lopez, S.R.J. Brueck, C.F. Ivory, and S.M. Han Effect of wall-molecule interactions on electrokinetic transport of charged molecules in nanofluidic channels during FET flow control Lab Chip 9 2009 1601 1608
-
(2009)
Lab Chip
, vol.9
, pp. 1601-1608
-
-
Oh, Y.J.1
Garcia, A.L.2
Petsev, D.N.3
Lopez, G.P.4
Brueck, S.R.J.5
Ivory, C.F.6
Han, S.M.7
-
76
-
-
38849093274
-
Monitoring FET flow control and wall adsorption of charged fluorescent dye molecules in nanochannels integrated into a multiple internal reflection infrared waveguide
-
DOI 10.1039/b711682a
-
Y.J. Oh, T.C. Gamble, D. Leonhardt, C.H. Chung, S.R.J. Brueck, C.F. Ivory, G.P. Lopez, D.N. Petsev, and S.M. Han Monitoring FET flow control and wall adsorption of charged fluorescent dye molecules in nanochannels integrated into a multiple internal reflection infrared waveguide Lab Chip 8 2008 251 258 (Pubitemid 351191402)
-
(2008)
Lab on a Chip - Miniaturisation for Chemistry and Biology
, vol.8
, Issue.2
, pp. 251-258
-
-
Oh, Y.-J.1
Gamble, T.C.2
Leonhardt, D.3
Chung, C.-H.4
Brueck, S.R.J.5
Ivory, C.F.6
Lopez, G.P.7
Petsev, D.N.8
Han, S.M.9
-
79
-
-
34547106022
-
Learning nature's way: Biosensing with synthetic nanopores
-
DOI 10.1126/science.1146126
-
C.R. Martin, and Z.S. Siwy Learning nature's way: biosensing with synthetic nanopores Science 317 2007 331 332 (Pubitemid 47106364)
-
(2007)
Science
, vol.317
, Issue.5836
, pp. 331-332
-
-
Martin, C.R.1
Siwy, Z.S.2
-
80
-
-
70349527955
-
Discrimination of single base substitutions in a DNA strand immobilized in a biological nanopore
-
R.F. Purnell, and J.J. Schmidt Discrimination of single base substitutions in a DNA strand immobilized in a biological nanopore ACS Nano 3 2009 2533 2538
-
(2009)
ACS Nano
, vol.3
, pp. 2533-2538
-
-
Purnell, R.F.1
Schmidt, J.J.2
-
81
-
-
77249128977
-
Single molecule sensing by nanopores and nanopore devices
-
L.Q. Gu, and J.W. Shim Single molecule sensing by nanopores and nanopore devices Analyst 135 2010 441 451
-
(2010)
Analyst
, vol.135
, pp. 441-451
-
-
Gu, L.Q.1
Shim, J.W.2
-
82
-
-
33751414735
-
Sequencing single molecules of DNA
-
DOI 10.1016/j.cbpa.2006.10.040, PII S1367593106001815
-
H. Bayley Sequencing single molecules of DNA Curr. Opin. Chem. Biol. 10 2006 628 637 (Pubitemid 44821904)
-
(2006)
Current Opinion in Chemical Biology
, vol.10
, Issue.6
, pp. 628-637
-
-
Bayley, H.1
-
83
-
-
33750978405
-
Nanopore sequencing technology: research trends and applications
-
DOI 10.1016/j.tibtech.2006.10.005, PII S0167779906002630
-
M. Rhee, and M.A. Burns Nanopore sequencing technology: research trends and applications Trends Biotechnol. 24 2006 580 586 (Pubitemid 44751218)
-
(2006)
Trends in Biotechnology
, vol.24
, Issue.12
, pp. 580-586
-
-
Rhee, M.1
Burns, M.A.2
-
84
-
-
64749083632
-
DNA sequencers: The next generation
-
R. Mukhopadhyay DNA sequencers: the next generation Anal. Chem. 81 2009 1736 1740
-
(2009)
Anal. Chem.
, vol.81
, pp. 1736-1740
-
-
Mukhopadhyay, R.1
-
85
-
-
60849133617
-
Controlling the translocation of single-stranded DNA through alpha-hemolysin ion channels using viscosity
-
R. Kawano, A.E.P. Schibel, C. Cauley, and H.S. White Controlling the translocation of single-stranded DNA through alpha-hemolysin ion channels using viscosity Langmuir 25 2009 1233 1237
-
(2009)
Langmuir
, vol.25
, pp. 1233-1237
-
-
Kawano, R.1
Schibel, A.E.P.2
Cauley, C.3
White, H.S.4
-
86
-
-
34548485416
-
DNA conformation and base number simultaneously determined in a nanopore
-
DOI 10.1002/elps.200700047
-
D. Fologea, E. Brandin, J. Uplinger, D. Branton, and J. Li DNA conformation and base number simultaneously determined in a nanopore Electrophoresis 28 2007 3186 3192 (Pubitemid 47506447)
-
(2007)
Electrophoresis
, vol.28
, Issue.18
, pp. 3186-3192
-
-
Fologea, D.1
Brandin, E.2
Uplinger, J.3
Branton, D.4
Li, J.5
-
87
-
-
58549116498
-
Single-molecule DNA detection with an engineered MspA protein nanopore
-
T.Z. Butler, M. Pavlenok, I.M. Derrington, M. Niederweis, and J.H. Gundlach Single-molecule DNA detection with an engineered MspA protein nanopore Proc. Natl. Acad. Sci. U.S.A. 105 2008 20647 20652
-
(2008)
Proc. Natl. Acad. Sci. U.S.A.
, vol.105
, pp. 20647-20652
-
-
Butler, T.Z.1
Pavlenok, M.2
Derrington, I.M.3
Niederweis, M.4
Gundlach, J.H.5
-
88
-
-
79952436020
-
Electrokinetic particle translocation through a nanopore
-
Y. Ai, and S. Qian Electrokinetic particle translocation through a nanopore Phys. Chem. Chem. Phys. 13 2011 4060 4071
-
(2011)
Phys. Chem. Chem. Phys.
, vol.13
, pp. 4060-4071
-
-
Ai, Y.1
Qian, S.2
-
89
-
-
79954486761
-
Direct numerical simulation of electrokinetic translocation of a cylindrical particle through a nanopore using a Poisson-Boltzmann approach
-
Y. Ai, and S. Qian Direct numerical simulation of electrokinetic translocation of a cylindrical particle through a nanopore using a Poisson-Boltzmann approach Electrophoresis 32 2011 996 1005
-
(2011)
Electrophoresis
, vol.32
, pp. 996-1005
-
-
Ai, Y.1
Qian, S.2
-
90
-
-
26944479214
-
Translocation of double-strand DNA through a silicon oxide nanopore
-
A.J. Storm, J.H. Chen, H.W. Zandbergen, and C. Dekker Translocation of double-strand DNA through a silicon oxide nanopore Phys. Rev. E 71 2005 051903
-
(2005)
Phys. Rev. e
, vol.71
, pp. 051903
-
-
Storm, A.J.1
Chen, J.H.2
Zandbergen, H.W.3
Dekker, C.4
-
91
-
-
23144448498
-
Fast DNA translocation through a solid-state nanopore
-
DOI 10.1021/nl048030d
-
A.J. Storm, C. Storm, J.H. Chen, H. Zandbergen, J.F. Joanny, and C. Dekker Fast DNA translocation through a solid-state nanopore Nano Lett. 5 2005 1193 1197 (Pubitemid 41084390)
-
(2005)
Nano Letters
, vol.5
, Issue.7
, pp. 1193-1197
-
-
Storm, A.J.1
Storm, C.2
Chen, J.3
Zandbergen, H.4
Joanny, J.-F.5
Dekker, C.6
-
92
-
-
33846807450
-
The effect of translocating cylindrical particles on the ionic current through a nanopore
-
DOI 10.1529/biophysj.106.089268
-
H. Liu, S. Qian, and H.H. Bau The effect of translocating cylindrical particles on the ionic current through a nanopore Biophys. J. 92 2007 1164 1177 (Pubitemid 46203178)
-
(2007)
Biophysical Journal
, vol.92
, Issue.4
, pp. 1164-1177
-
-
Liu, H.1
Qian, S.2
Bau, H.H.3
-
93
-
-
33749594658
-
Electrophoretic motion of a spherical particle in a converging-diverging nanotube
-
DOI 10.1016/j.jcis.2006.08.003, PII S0021979706007041
-
S. Qian, A. Wang, and J.K. Afonien Electrophoretic motion of a spherical particle in a converging-diverging nanotube J. Colloid Interface Sci. 303 2006 579 592 (Pubitemid 44547957)
-
(2006)
Journal of Colloid and Interface Science
, vol.303
, Issue.2
, pp. 579-592
-
-
Qian, S.1
Wang, A.2
Afonien, J.K.3
-
94
-
-
44249098568
-
Analysis of self-electrophoretic motion of a spherical particle in a nanotube: Effect of nonuniform surface charge density
-
DOI 10.1021/la703924w
-
S. Qian, and S.W. Joo Analysis of self-electrophoretic motion of a spherical particle in a nanotube: effect of nonuniform surface charge density Langmuir 24 2008 4778 4784 (Pubitemid 351725162)
-
(2008)
Langmuir
, vol.24
, Issue.9
, pp. 4778-4784
-
-
Qian, S.1
Joo, S.W.2
-
95
-
-
44649169125
-
Electrophoretic motion of a spherical particle with a symmetric nonuniform surface charge distribution in a nanotube
-
S. Qian, S.W. Joo, W.S. Hou, and X. Zhao Electrophoretic motion of a spherical particle with a symmetric nonuniform surface charge distribution in a nanotube Langmuir 24 2008 5332 5340
-
(2008)
Langmuir
, vol.24
, pp. 5332-5340
-
-
Qian, S.1
Joo, S.W.2
Hou, W.S.3
Zhao, X.4
-
96
-
-
80052090205
-
Electrophoretic motion of a soft spherical particle in a nanopore
-
M. Zhang, Y. Ai, D.S. Kim, J.H. Jeong, S.W. Joo, and S. Qian Electrophoretic motion of a soft spherical particle in a nanopore Colloids Surf. B: Biointerfaces 88 2011 165 174
-
(2011)
Colloids Surf. B: Biointerfaces
, vol.88
, pp. 165-174
-
-
Zhang, M.1
Ai, Y.2
Kim, D.S.3
Jeong, J.H.4
Joo, S.W.5
Qian, S.6
-
97
-
-
77958530187
-
Diffusiophoresis of an elongated cylindrical nanoparticle along the axis of a nanopore
-
S.W. Joo, S.Y. Lee, J. Liu, and S. Qian Diffusiophoresis of an elongated cylindrical nanoparticle along the axis of a nanopore ChemPhysChem 11 2010 3281 3290
-
(2010)
ChemPhysChem
, vol.11
, pp. 3281-3290
-
-
Joo, S.W.1
Lee, S.Y.2
Liu, J.3
Qian, S.4
-
98
-
-
77949849382
-
Electrodiffusiophoretic motion of a charged spherical particle in a nanopore
-
S.E. Yalcin, S.Y. Lee, S.W. Joo, O. Baysal, and S. Qian Electrodiffusiophoretic motion of a charged spherical particle in a nanopore J. Phys. Chem. B 114 2010 4082 4093
-
(2010)
J. Phys. Chem. B
, vol.114
, pp. 4082-4093
-
-
Yalcin, S.E.1
Lee, S.Y.2
Joo, S.W.3
Baysal, O.4
Qian, S.5
-
99
-
-
77952469877
-
Diffusiophoretic motion of a charged spherical particle in a nanopore
-
S.Y. Lee, S.E. Yalcin, S.W. Joo, O. Baysal, and S. Qian Diffusiophoretic motion of a charged spherical particle in a nanopore J. Phys. Chem. B 114 2010 6437 6446
-
(2010)
J. Phys. Chem. B
, vol.114
, pp. 6437-6446
-
-
Lee, S.Y.1
Yalcin, S.E.2
Joo, S.W.3
Baysal, O.4
Qian, S.5
-
100
-
-
79960411400
-
Electrokinetic particle translocation through a nanopore containing a floating electrode
-
M. Zhang, Y. Ai, A. Sharma, S.W. Joo, D. Kim, and S. Qian Electrokinetic particle translocation through a nanopore containing a floating electrode Electrophoresis 32 2011 1864 1874
-
(2011)
Electrophoresis
, vol.32
, pp. 1864-1874
-
-
Zhang, M.1
Ai, Y.2
Sharma, A.3
Joo, S.W.4
Kim, D.5
Qian, S.6
-
101
-
-
79551680720
-
Electrophoretic motion of a nanorod along the axis of a nanopore under a salt gradient
-
S.W. Joo, and S. Qian Electrophoretic motion of a nanorod along the axis of a nanopore under a salt gradient J. Colloid Interface Sci. 356 2011 331 340
-
(2011)
J. Colloid Interface Sci.
, vol.356
, pp. 331-340
-
-
Joo, S.W.1
Qian, S.2
-
102
-
-
79961044530
-
Controlling DNA translocation through gate modulation of nanopore wall surface charges
-
Y. He, M. Tsutsui, C. Fan, M. Taniguchi, and T. Kawai Controlling DNA translocation through gate modulation of nanopore wall surface charges ACS Nano 5 2011 5509 5518
-
(2011)
ACS Nano
, vol.5
, pp. 5509-5518
-
-
He, Y.1
Tsutsui, M.2
Fan, C.3
Taniguchi, M.4
Kawai, T.5
-
103
-
-
80055020968
-
Gate manipulation of DNA capture into nanopore
-
Y. He, M. Tsutsui, C. Fan, M. Taniguchi, and T. Kawai Gate manipulation of DNA capture into nanopore ACS Nano 5 2011 8391 8397
-
(2011)
ACS Nano
, vol.5
, pp. 8391-8397
-
-
He, Y.1
Tsutsui, M.2
Fan, C.3
Taniguchi, M.4
Kawai, T.5
|