reviewTop 1% cited
Dielectrophoresis in microfluidics technology
Electrophoresis · 2011 · Vol. 32(18) · pp. 2410–2427
Barbaros Çetin✉(Bilkent University)Dongqing Li(University of Waterloo)
Abstract
Dielectrophoresis (DEP) is the movement of a particle in a non-uniform electric field due to the interaction of the particle's dipole and spatial gradient of the electric field. DEP is a subtle solution to manipulate particles and cells at microscale due to its favorable scaling for the reduced size of the system. DEP has been utilized for many applications in microfluidic systems. In this review, a detailed analysis of the modeling of DEP-based manipulation of the particles is provided, and the recent applications regarding the particle manipulation in microfluidic systems (mainly the published works between 2007 and 2010) are presented.
Microfluidic and Bio-sensing TechnologiesMicrofluidic and Capillary Electrophoresis ApplicationsElectrohydrodynamics and Fluid DynamicsDielectrophoresisMicroscale chemistryMicrofluidicsNanotechnologyParticle (ecology)Electric fieldMaterials sciencePhysicsBiology
MeSH terms
ElectrophoresisHumansParticle SizeMicrofluidic Analytical Techniques
Citations
395
FWCI
12.67
field-weighted impact
References
150
Percentile
99%
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Cited by
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References
Particle separation by dielectrophoresis
Electrophoresis · 2002 · 815 citations
Insulator‐based dielectrophoresis for the selective concentration and separation of live bacteria in water
Electrophoresis · 2004 · 346 citations
Electrohydrodynamics and dielectrophoresis in microsystems: scaling laws
Journal of Physics D Applied Physics · 2003 · 696 citations
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