Micro- and Nanoparticles via Capillary Flows
暂无分享,去创建一个
[1] J. M. López-Herrera,et al. Coaxial jets generated from electrified Taylor cones. Scaling laws , 2003 .
[2] Michael P Brenner,et al. Controlling the fiber diameter during electrospinning. , 2003, Physical review letters.
[3] R. Austin,et al. Hydrodynamic Focusing on a Silicon Chip: Mixing Nanoliters in Microseconds , 1998 .
[4] Younan Xia,et al. Direct Fabrication of Composite and Ceramic Hollow Nanofibers by Electrospinning , 2004 .
[5] M. Cloupeau,et al. Electrostatic spraying of liquids in cone-jet mode , 1989 .
[6] G. Rutledge,et al. Production of Submicrometer Diameter Fibers by Two‐Fluid Electrospinning , 2004 .
[7] M. Mann,et al. Electrospray ionization for mass spectrometry of large biomolecules. , 1989, Science.
[8] F. Higuera,et al. Flow rate and electric current emitted by a Taylor cone , 2003, Journal of Fluid Mechanics.
[9] R. Reitz,et al. DROP AND SPRAY FORMATION FROM A LIQUID JET , 1998 .
[10] Howard A. Stone,et al. ENGINEERING FLOWS IN SMALL DEVICES , 2004 .
[11] Alfonso M. Gañán-Calvo,et al. Generation of Steady Liquid Microthreads and Micron-Sized Monodisperse Sprays in Gas Streams , 1998 .
[12] H. Stone,et al. Formation of dispersions using “flow focusing” in microchannels , 2003 .
[13] David A. Weitz,et al. A new device for the generation of microbubbles , 2004 .
[14] A. Gañán-Calvo,et al. Zeroth-order, electrohydrostatic solution for electrospraying in cone-jet mode , 1994 .
[15] I. G. Loscertales,et al. Steady cone-jet electrosprays in liquid insulator baths. , 2004, Journal of colloid and interface science.
[16] M. Márquez,et al. Micro/Nano Encapsulation via Electrified Coaxial Liquid Jets , 2002, Science.
[17] J. Mora,et al. The current emitted by highly conducting Taylor cones , 1994, Journal of Fluid Mechanics.
[18] Alfonso M. Gañán-Calvo,et al. Current and droplet size in the electrospraying of liquids. Scaling laws , 1997 .
[19] W. Siefert. Corona spray pyrolysis: A new coating technique with an extremely enhanced deposition efficiency , 1984 .
[20] Darrell H. Reneker,et al. Bending instability of electrically charged liquid jets of polymer solutions in electrospinning , 2000 .
[21] A. Barrero,et al. A method for making inorganic and hybrid (organic/inorganic) fibers and vesicles with diameters in the submicrometer and micrometer range via sol-gel chemistry and electrically forced liquid jets. , 2003, Journal of the American Chemical Society.
[22] J. F. D. L. Mora. The Fluid Dynamics of Taylor Cones , 2007 .
[23] M. Márquez,et al. Electrically forced coaxial nanojets for one-step hollow nanofiber design. , 2004, Journal of the American Chemical Society.
[24] D. Weitz,et al. Monodisperse Double Emulsions Generated from a Microcapillary Device , 2005, Science.
[25] P. Umbanhowar,et al. Monodisperse Emulsion Generation via Drop Break Off in a Coflowing Stream , 2000 .
[26] A. Craya. RECHERCHES THÉORIQUES SUR L'ÉCOULEMENT DE COUCHES SUPERPOSÉES DE FLUIDES DE DENSITÉS DIFFÉRENTES , 1949 .
[27] D A Weitz,et al. Electro-optics of bipolar nematic liquid crystal droplets. , 2004, Physical review letters.
[28] Andreas Greiner,et al. Compound Core–Shell Polymer Nanofibers by Co‐Electrospinning , 2003 .
[29] Christophe Clanet,et al. Transition from dripping to jetting , 1999, Journal of Fluid Mechanics.
[30] J. R. Melcher,et al. Electrohydrodynamics: A Review of the Role of Interfacial Shear Stresses , 1969 .
[31] R. Flagan,et al. Synthesis of Yttria Powders by Electrospray Pyrolysis , 1994 .
[32] Darrell H. Reneker,et al. Electrospinning process and applications of electrospun fibers , 1995 .
[33] W. Debler. Stratified Flow into a Line Sink , 1959 .
[34] Osman A. Basaran,et al. Small‐scale free surface flows with breakup: Drop formation and emerging applications , 2002 .
[35] Sidney R. Nagel,et al. Using Selective Withdrawal to Coat Microparticles , 2001, Science.
[36] D. Weitz,et al. Geometrically mediated breakup of drops in microfluidic devices. , 2003, Physical review letters.