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portada Micromachines for Dielectrophoresis
Type
Physical Book
Publisher
Language
Inglés
Pages
186
Format
Hardcover
Dimensions
24.4 x 17.0 x 1.6 cm
Weight
0.60 kg.
ISBN13
9783036543383

Micromachines for Dielectrophoresis

Martinez-Duarte, Rodrigo (Author) · Mdpi AG · Hardcover

Micromachines for Dielectrophoresis - Martinez-Duarte, Rodrigo

New Book

£ 51.38

  • Condition: New
Origin: U.S.A. (Import costs included in the price)
It will be shipped from our warehouse between Friday, July 12 and Friday, July 19.
You will receive it anywhere in United Kingdom between 1 and 3 business days after shipment.

Synopsis "Micromachines for Dielectrophoresis"

An outstanding compilation that reflects the state-of-the art on Dielectrophoresis (DEP) in 2020. Contributions include: - A novel mathematical framework to analyze particle dynamics inside a circular arc microchannel using computational modeling. - A fundamental study of the passive focusing of particles in ratchet microchannels using direct-current DEP. - A novel molecular version of the Clausius-Mossotti factor that bridges the gap between theory and experiments in DEP of proteins. - The use of titanium electrodes to rapidly enrich T. brucei parasites towards a diagnostic assay. - Leveraging induced-charge electrophoresis (ICEP) to control the direction and speed of Janus particles. - An integrated device for the isolation, retrieval, and off-chip recovery of single cells. - Feasibility of using well-established CMOS processes to fabricate DEP devices. - The use of an exponential function to drive electrowetting displays to reduce flicker and improve the static display performance. - A novel waveform to drive electrophoretic displays with improved display quality and reduced flicker intensity. - Review of how combining electrode structures, single or multiple field magnitudes and/or frequencies, as well as variations in the media suspending the particles can improve the sensitivity of DEP-based particle separations. - Improvement of dielectrophoretic particle chromatography (DPC) of latex particles by exploiting differences in both their DEP mobility and their crossover frequencies.

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