Environmental Engineering Reference
In-Depth Information
28. Zhang L, Zhu Y (2010) Dielectrophoresis of Janus particles under high frequency ac-electric
fields. App Phys Lett 96:141902
29. Perro A, Reculusa S, Ravaine S, Bourgeat-Lamic E, Duguet E (2005) Design and synthesis of
Janus micro- and nanoparticles. J Mater Chem 15:3745-3760
30. Honegger T, Sarla S, Lecarme O, Berton K, Nicolas A, Peyrade D (2011) Selective grafting of
proteins on Janus particles: adsorption and covalent coupling strategies. Microelect Eng
88:1852-1855
31. Gangwal S, Cayre OJ, Velev OD (2008) Dielectrophoretic assembly of metallodielectric janus
particles in AC electric fields. Langmuir 24:13312-13320
32. Dimaki M, Bøggild P (2004) DEP of carbon nanotubes using microelectrodes: a numerical
study. Nanotechnology 15:1095
33. Dimaki M, Bøggild P (2005) Frequency dependence of the structure and electrical behaviour
of carbon nanotube networks assembled by dielectrophoresis. Nanotechnology 16:759
34. Wissner-Gross AD (2007) Dielectrophoretic reconfiguration of nanowire interconnects. Nano-
technology 17. http://alexwg.org/Nanotechnology2006.pdf
35. Lungu M, Neculae A, Bunoiu M (2010) Some considerations on the dielectrophoretic manip-
ulation of nanoparticles in fluid media. J Optoelect Adv Mater 12:2423-2426
36. Morgan H, Green NG (2003) AC electrokinetics: colloids and nanoparticles, vol 50-62.
Research Studies ltd, Baldock, Hertfordshire, pp 200-210
37. Lei U, Pei-Hou S, Pethig R (2011) Refinement of the theory for extracting cell dielectric
properties from dielectrophoresis and electrorotation experiments. Biomicrofluidics 5:044109
38. Jones TB (2003) Basic theory of dielectrophoresis and electrorotation. IEEE Eng Med Biol
Mag 22:33-42
39. Green NG, Ramos A, Morgan H (2002) Numerical solution of the dielectrophoretic and
travelling wave forces for interdigitated electrode arrays using the finite element method.
J Elstat 56:235-254
40. Falokun CD, Marks GH (2007) Electrorotation of beads of immobilized cells. J Elstat
65:475-482
41. Castellanos A, Ramos A, Gonzales N, Green N, Morgan H (2003) Electrohydrodynamics and
dielectrophoresis in microsystems: scaling laws. J Phys D Appl Phys 36:2584
42. Dai H (2001) Nanotube growth and characterization. In: Avouris P, Dresselhaus MS,
Dresselhaus G (eds) Carbon nanotubes synthesis, structures, properties, and applications, vol
80, Topics in applied physics. Springer Science & Business Media, Berlin
43. Green NG, Ramos A, Gonz´lez A, Morgan H, Castellanos A (2000) Fluid flow induced by
nonuniform ac electric fields in electrolytes on Experimental measurements microelectrodes.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics E61:4011
44. Green NG, Ramos A, Gonzalez A, Castellanos A, Morgan H (2001) Electrothermally induced
fluid flow on microelectrodes. J Electrostat 53(2):71-87
45. Einstein A (1905) The theory of the Brownian movement. Ann Phys 17:549
46. Huang Y, Wang XB, Becker FF, Gascoyne PRC (1997) Introducing dielectrophoresis as a new
force field for field-flow fractionation. Biophys J 73:1118
47. Malaescu I, Giugiulan R, Lungu M and Strambeanu N, The Clausius-Mossotti factor in low
frequency field of the powders resulted from waste combustion. The 13th International Balkan
Workshop on Applied Physics, Constanta, July 4-6, 2013.
48. Holmes D, Green NG, Morgan H (2003) Microdevices for dielectrophoretic flow-through cell
separation. IEEE Eng Med Biol Mag 22:85-90
49. Lungu M (2009) Separation of small nonferrous particles using a two successive steps eddy-
current separator with permanent magnets. Int J Min Proc 93:172-178
50. Neculae A, Bunoiu M, Lungu A and Lungu M (2014) Flue gas filtration prediction in
microfluidic devices using dielectrophoresis. The 14th International Balkan Workshop on
Applied Physics IBWAP 2014, Constanta, July 2-4, 2014
Search WWH ::




Custom Search