Models of nanoparticle transport in dielectrophoretic microdevices: prediction, parameter estimation and other applications
This paper describes the applications of Fourier Bessel series models for characterising the transport of nanoparticles driven by dielectrophoretic forces and randomized by Brownian motion. Nanoparticle transport using dielectrophoresis continues to be an active area of research and models are funda...
Main Authors: | , , |
---|---|
Format: | Conference or Workshop Item |
Language: | English |
Published: |
IEEE
2010
|
Online Access: | http://psasir.upm.edu.my/id/eprint/45665/1/Models%20of%20nanoparticle%20transport%20in%20dielectrophoretic%20microdevices%20prediction%2C%20parameter%20estimation%20and%20other%20applications.pdf |
Summary: | This paper describes the applications of Fourier Bessel series models for characterising the transport of nanoparticles driven by dielectrophoretic forces and randomized by Brownian motion. Nanoparticle transport using dielectrophoresis continues to be an active area of research and models are fundamental for characterising the process. The models have very useful capabilities including prediction of nanoparticle transport, estimation of parameter values from experimental data, and data decomposition into space and time components. The models also give a frequency domain representation that will be applicable for time modulated dielectrophoretic nanoparticle transport. |
---|