Howard A. Stone
Howard A. Stone
Princeton University
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Citado por
Citado por
Engineering flows in small devices: microfluidics toward a lab-on-a-chip
HA Stone, AD Stroock, A Ajdari
Annu. Rev. Fluid Mech. 36, 381-411, 2004
Chaotic mixer for microchannels
AD Stroock, SKW Dertinger, A Ajdari, I Mezić, HA Stone, GM Whitesides
Science 295 (5555), 647-651, 2002
Formation of dispersions using “flow focusing” in microchannels
SL Anna, N Bontoux, HA Stone
Applied physics letters 82 (3), 364-366, 2003
Formation of droplets and bubbles in a microfluidic T-junction—scaling and mechanism of break-up
P Garstecki, MJ Fuerstman, HA Stone, GM Whitesides
Lab on a Chip 6 (3), 437-446, 2006
Monodisperse double emulsions generated from a microcapillary device
AS Utada, EL Lorenceau, DR Link, PD Kaplan, HA Stone, DA Weitz
Science 308 (5721), 537-541, 2005
Microscopic artificial swimmers
R Dreyfus, J Baudry, ML Roper, M Fermigier, HA Stone, J Bibette
Nature 437 (7060), 862-865, 2005
Dynamics of drop deformation and breakup in viscous fluids
HA Stone
Annual Review of Fluid Mechanics 26 (1), 65-102, 1994
Geometrically mediated breakup of drops in microfluidic devices
DR Link, SL Anna, DA Weitz, HA Stone
Physical review letters 92 (5), 054503, 2004
Generation of monodisperse particles by using microfluidics: control over size, shape, and composition
S Xu, Z Nie, M Seo, P Lewis, E Kumacheva, HA Stone, P Garstecki, ...
Angewandte Chemie 117 (5), 734-738, 2005
Effective slip in pressure-driven Stokes flow
E Lauga, HA Stone
Journal of Fluid Mechanics 489, 55-77, 2003
Microfluidics: the no-slip boundary condition
E Lauga, M Brenner, H Stone
Springer handbook of experimental fluid mechanics, 1219-1240, 2007
Dripping to jetting transitions in coflowing liquid streams
AS Utada, A Fernandez-Nieves, HA Stone, DA Weitz
Physical review letters 99 (9), 094502, 2007
Swimming in circles: motion of bacteria near solid boundaries
E Lauga, WR DiLuzio, GM Whitesides, HA Stone
Biophysical journal 90 (2), 400-412, 2006
Formation of monodisperse bubbles in a microfluidic flow-focusing device
P Garstecki, I Gitlin, W DiLuzio, GM Whitesides, E Kumacheva, HA Stone
Applied Physics Letters 85 (13), 2649-2651, 2004
Heat transfer in open-cell metal foams
TJ Lu, HA Stone, MF Ashby
Acta materialia 46 (10), 3619-3635, 1998
Microfluidics: basic issues, applications, and challenges
HA Stone, S Kim
AIChE Journal 47 (6), 1250-1254, 2001
Experimental and theoretical scaling laws for transverse diffusive broadening in two-phase laminar flows in microchannels
RF Ismagilov, AD Stroock, PJA Kenis, G Whitesides, HA Stone
Applied Physics Letters 76 (17), 2376-2378, 2000
Mechanism for flow-rate controlled breakup in confined geometries: A route to monodisperse emulsions
P Garstecki, HA Stone, GM Whitesides
Physical review letters 94 (16), 164501, 2005
Transition from squeezing to dripping in a microfluidic T-shaped junction
M De Menech, P Garstecki, F Jousse, HA Stone
journal of fluid mechanics 595, 141-161, 2008
Coalescence of liquid drops
J Eggers, JR Lister, HA Stone
Journal of Fluid Mechanics 401, 293-310, 1999
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