Page 71 - IJB-5-1
P. 71
Gao D, et al.
25. Jayasinghe S N, Edirisinghe M J, Wang D Z, 2004, Controlled 41. Smith D P H, 1986, The electrohydrodynamic atomization
deposition of nanoparticle clusters by electrohydrodynamic of liquids. IEEE Trans Ind Appl, IA-22: 527–535. https://doi.
atomization. Nanotechnology, 15(11): 1519–1523. https:// org/10.1109/TIA.1986.4504754.
doi.org/10.1088/0957-4484/15/11/025. 42. Kebarle P, Verkerk U H, 2009, Electrospray: From ions in
26. Ganan-Calvo A M, 2004, On the general scaling theory for solution to ions in the gas phase, what we know now. Mass
electrospraying. J Fluid Mech, 507: 203–212. https://doi. Spectrom Rev, 28(6): 898–917. https://doi.org/10.1002/
org/10.1017/S0022112004008870. mas.20247.
27. Chen C H, Saville D A, Aksay I A, 2006, Electrohydrodynamic 43. De La Mora J F, 1992, The effect of charge emission from
drop-and-place particle deployment. Appl Phys Lett, electrified liquid cones. J Fluid Mech, 243: 561–574. https://
88: 1541041–1541043. https://doi.org/10.1063/1.2191733. doi.org/10.1017/S0022112092002829.
28. Chen C H, Saville D A, Aksay I A, 2006, Scaling laws for pulsed 44. Hayati I, Bailey A I, Tadros T F, 1986, Investigations into
electrohydrodynamic drop formation. Appl Phys Lett, 89(12): the mechanisms of electrohydrodynamic spraying of liquids
1241031–1241033. https://doi.org/10.1063/1.2356891. I. J Colloid Interface Sci, 117(1): 205–220. https://doi.
29. Park J U, Lee J H, Paik U, et al., 2008, Nanoscale patterns of org/10.1016/0021-9797(87)90185-8.
oligonucleotides formed by electrohydrodynamic jet printing 45. de la Mora J F, 2007, The fluid dynamics of Taylor cones. Ann
with application in biosensing and nanomaterials assembly. Am Rev Fluid Mech, 39(1): 217–243. https://doi.org/10.1146/
Chem Soc, 8: 4210–4216. https://doi.org/10.1021/nl801832v. annurev.fluid.39.050905.110159.
30. Marginean I, Nemes P, Parvin L, et al., 2006, How much 46. Collins R T, Harris M T, Basaran O A, 2007, Breakup of
charge is there on a pulsating Taylor cone? Appl Phys Lett, electrified jets. J Fluid Mech, 588: 75–129. https://doi.
89(6): 64104. https://doi.org/10.1063/1.2266889. org/10.1017/S0022112007007409.
31. De La Mora J F, Loscertales I G, 1994, The current emitted 47. Eggers J, Villermaux E, 2008, Physics of liquid jets.
by highly conducting Taylor cones. J Fluid Mech, 260: 155– Rep Prog Phys, 71(3): 3660101–36601079. https://doi.
184. https://doi.org/10.1017/S0022112094003472. org/10.1088/0034-4885/71/3/036601.
32. Carretero-Benignos J A, Martinez-Sanchez M, 2005, 48. Wei J, Shui W, Zhou F, et al., 2002, Naturally and externally
Numerical Simulation of a Single Emitter Colloid Thruster in pulsed electrospray. Mass Spectrom Rev, 21(3): 148–162.
Pure Droplet Cone-Jet Mode PhD Report. https://doi.org/10.1002/mas.10026.
33. Lee A, Jin H, Dang H W, et al., 2013, Optimization of 49. Han Y, Dong J, 2017, Design, Modeling and testing of integrated
experimental parameters to determine the jetting regimes in ring extractor for high resolution electrohydrodynamic (EHD)
electrohydrodynamic printing. Langmuir, 29(44): 13630– 3D printing. J Micromech Microeng, 27(3): 035005-035013.
13639. https://doi.org/10.1021/la403111m. https://doi. org/10.1088/1361-6439/aa5966.
34. Lozano P, Martinez-Sanchez M, Lopez-Urdiales J M, 50. Han Y, Wei C, Dong J, 2015, Droplet formation and settlement
2004, Electrospray emission from nonwetting flat dielectric of phase–change ink in high resolution electrohydrodynamic
surfaces. J Colloid Interface Sci, 276(2): 392–399. https:// (EHD) 3D printing. J Manuf Process, 20: 485–491. https://
doi.org/10.1016/j.jcis.2004.04.017. doi.org/10.1016/j.jmapro.2015.06.019.
35. Taylor G, 1964, Disintegration of water drop in an electric 51. Zeleny J, 1914, The electrical discharge from liquid points,
field. Proc R Soc London, 280: 383–397. and a hydrostatic method of measuring the electric intensity at
36. Taylor G, 1966, Studies in electrohydrodynamics.I.the their surfaces. Phys Rev, 3(2): 69–91. https://doi.org/10.1103/
circulation produced in a drop by electrical field. Proc R Soc PhysRev.3.69.
London, 291: 159–166. 52. Doyle A, Moffett D R, Vonnegut B, 1964, Behavior of
37. Landau L D, Lifshitz E M, 1960, Electrodynamics of evaporating electrically charged droplets. J Colloid Sci,
Continuous Media. Oxford: Pergamon Press. 19: 136–143. https://doi.org/10.1016/0095-8522(64)90024-8.
38. Poon H F, 2002, Electrohydrodynamic Printing. PhD Thesis. 53. Melcher J R, Taylor G I, 1969, Electrohydrodynamics a
39. Atkins P, Paula J D, 2006, Physical Chemistry. 8 ed. review of the role of interfacial shear stresses. Ann Rev
th
New York: Atkins, W. H. Freeman and Company. Fluid Mech, 1: 111–146. https://doi.org/10.1146/annurev.
40. Cloupeau M, Prunet-Foch B, 1990, Electrostatic spraying of fl.01.010169.000551.
liquids main functioning modes. J Electrostat, 25: 165–184. 54. Hayati I, Bailey A I, Tadros T F, 1986, Mechanism of stable
https://doi.org/10.1016/0304-3886(90)90025-Q. jet formation in electrohydrodynamic atomization. Nature,
International Journal of Bioprinting (2019)–Volume 5, Issue 1 17

