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Electrokinetic Particle Transport in Micro-/Nanofluidics: Direct Numerical Simulation Analysis: Surfactant Science

Autor Shizhi Qian, Ye Ai
en Limba Engleză Hardback – 19 iun 2012
Numerous applications of micro-/nanofluidics are related to particle transport in micro-/nanoscale channels, and electrokinetics has proved to be one of the most promising tools to manipulate particles in micro/nanofluidics. Therefore, a comprehensive understanding of electrokinetic particle transport in micro-/nanoscale channels is crucial to the development of micro-/nanofluidic devices.
Electrokinetic Particle Transport in Micro-/Nanofluidics: Direct Numerical Simulation Analysis provides a fundamental understanding of electrokinetic particle transport in micro-/nanofluidics involving electrophoresis, dielectrophoresis, electroosmosis, and induced-charge electroosmosis. The book emphasizes the direct numerical simulation of electrokinetic particle transport phenomena, plus several supportive experimental studies. Using the commercial finite element package COMSOL Multiphysics®, it guides researchers on how to predict the particle transport subjected to electric fields in micro-/nanoscale channels.
Researchers in the micro-/nanofluidics community, who may have limited experience in writing their own codes for numerical simulations, can extend the numerical models and codes presented in this book to their own research and guide the development of real micro-/nanofluidics devices.
Corresponding COMSOL® script files are provided with the book and can be downloaded from the author’s website.
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Specificații

ISBN-13: 9781439854389
ISBN-10: 1439854386
Pagini: 398
Ilustrații: 197 black & white illustrations, 23 black & white tables
Dimensiuni: 152 x 229 x 23 mm
Greutate: 0.68 kg
Ediția:New.
Editura: CRC Press
Colecția CRC Press
Seria Surfactant Science

Locul publicării:Boca Raton, United States

Cuprins

Basics of Electrokinetics in Micro/Nano-fluidics. Numerical Simulations of Electrical Double Layer and Electroosmotic Flow in a Nanopore. Transient Electrokinetic Motion of a Circular Particle in a Microchannel. Electrokinetic Transport of Cylindrical-Shaped Cells in a Straight Microchannel. Shear- and Electrokinetics-Induced Particle Deformation in a Slit Channel. Pair Interaction between Two Colloidal Particles under DC Electric Field. Electrokinetic Translocation of a Cylindrical Particle through a Nanopore: Poisson–Boltzmann Approach. Electrokinetic Translocation of a Cylindrical Particle through a Nanopore: Poisson–Nernst–Planck Multi-ion Model. Field Effect Control of DNA Translocation through a Nanopore. Electrokinetic Particle Translocation through a Nanopore Containing a Floating Electrode.

Descriere

This book provides a fundamental understanding of the electrokinetic particle transport in micro-/nanofluidics, involving electrophoresis, dielectrophoresis, electroosmosis, and induced-charge electroosmosis. It emphasizes the direct numerical simulation of electrokinetic particle transport phenomena, plus several supportive experimental studies. The authors use COMSOL Multiphysics® to conduct all the numerical simulations presented and include the corresponding script files in the book. The book is suitable as a resource for researchers in micro-/nanofluidics and as a supplementary textbook for courses in electrokinetic transport phenomena in micro-/nanofluidics.