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DEP-on-a-Chip: Dielectrophoresis Applied to Microfluidic Platforms
by
Zhang, Haoqing
, Neuzil, Pavel
, Chang, Honglong
in
Acoustics
/ castellated electrodes
/ Chip formation
/ Chromatography
/ Dielectrophoresis
/ Electric fields
/ Electrodes
/ interdigitated electrode
/ Medical research
/ Microfluidics
/ parallel electrodes
/ Plasma
/ Pore size
/ Review
/ Separation
/ three-dimensional electrodes
/ two-dimensional electrodes
2019
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DEP-on-a-Chip: Dielectrophoresis Applied to Microfluidic Platforms
by
Zhang, Haoqing
, Neuzil, Pavel
, Chang, Honglong
in
Acoustics
/ castellated electrodes
/ Chip formation
/ Chromatography
/ Dielectrophoresis
/ Electric fields
/ Electrodes
/ interdigitated electrode
/ Medical research
/ Microfluidics
/ parallel electrodes
/ Plasma
/ Pore size
/ Review
/ Separation
/ three-dimensional electrodes
/ two-dimensional electrodes
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
DEP-on-a-Chip: Dielectrophoresis Applied to Microfluidic Platforms
by
Zhang, Haoqing
, Neuzil, Pavel
, Chang, Honglong
in
Acoustics
/ castellated electrodes
/ Chip formation
/ Chromatography
/ Dielectrophoresis
/ Electric fields
/ Electrodes
/ interdigitated electrode
/ Medical research
/ Microfluidics
/ parallel electrodes
/ Plasma
/ Pore size
/ Review
/ Separation
/ three-dimensional electrodes
/ two-dimensional electrodes
2019
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DEP-on-a-Chip: Dielectrophoresis Applied to Microfluidic Platforms
Journal Article
DEP-on-a-Chip: Dielectrophoresis Applied to Microfluidic Platforms
2019
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Overview
Dielectric particles in a non-uniform electric field are subject to a force caused by a phenomenon called dielectrophoresis (DEP). DEP is a commonly used technique in microfluidics for particle or cell separation. In comparison with other separation methods, DEP has the unique advantage of being label-free, fast, and accurate. It has been widely applied in microfluidics for bio-molecular diagnostics and medical and polymer research. This review introduces the basic theory of DEP, its advantages compared with other separation methods, and its applications in recent years, in particular, focusing on the different electrode types integrated into microfluidic chips, fabrication techniques, and operation principles.
Publisher
MDPI AG,MDPI
Subject
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