Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles

The use of electroosmotic is fast becoming a proven technique for manipulating particles in microfluidic systems. Several approaches were experimented to improve the force and thus the moving particles in the fluid. This paper will study the effect of microelectrode on the moving particles in latex...

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Main Authors: Md Yunus, Nurul Amziah, Mohtar, Mohd Nazim, Almadhagi, Khaldon Mohammed, Abdul Halin, Izhal
Format: Article
Language:English
Published: Universiti Putra Malaysia Press 2017
Online Access:http://psasir.upm.edu.my/id/eprint/55840/
http://psasir.upm.edu.my/id/eprint/55840/1/37-JTS%28S%29-0113-2016-4thProof.pdf
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author Md Yunus, Nurul Amziah
Mohtar, Mohd Nazim
Almadhagi, Khaldon Mohammed
Abdul Halin, Izhal
author_facet Md Yunus, Nurul Amziah
Mohtar, Mohd Nazim
Almadhagi, Khaldon Mohammed
Abdul Halin, Izhal
author_sort Md Yunus, Nurul Amziah
building UPM Institutional Repository
collection Online Access
description The use of electroosmotic is fast becoming a proven technique for manipulating particles in microfluidic systems. Several approaches were experimented to improve the force and thus the moving particles in the fluid. This paper will study the effect of microelectrode on the moving particles in latex using a particle image velocimetry and to test the velocity of particles movement at various frequencies from 10 kHz to 500 kHz. The result shows the behaviour of latex particles at different frequencies varying from low frequencies up to high frequencies under AC electrokinetic forces such as dielectrophoresis (DEP) and AC electroosmosis (ACEO).
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institution Universiti Putra Malaysia
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spelling upm-558402017-07-05T04:06:59Z http://psasir.upm.edu.my/id/eprint/55840/ Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles Md Yunus, Nurul Amziah Mohtar, Mohd Nazim Almadhagi, Khaldon Mohammed Abdul Halin, Izhal The use of electroosmotic is fast becoming a proven technique for manipulating particles in microfluidic systems. Several approaches were experimented to improve the force and thus the moving particles in the fluid. This paper will study the effect of microelectrode on the moving particles in latex using a particle image velocimetry and to test the velocity of particles movement at various frequencies from 10 kHz to 500 kHz. The result shows the behaviour of latex particles at different frequencies varying from low frequencies up to high frequencies under AC electrokinetic forces such as dielectrophoresis (DEP) and AC electroosmosis (ACEO). Universiti Putra Malaysia Press 2017 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/55840/1/37-JTS%28S%29-0113-2016-4thProof.pdf Md Yunus, Nurul Amziah and Mohtar, Mohd Nazim and Almadhagi, Khaldon Mohammed and Abdul Halin, Izhal (2017) Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles. Pertanika Journal of Science & Technology, 25 (spec. Jan.). pp. 333-342. ISSN 0128-7680; ESSN: 2231-8526 http://www.pertanika.upm.edu.my/Pertanika%20PAPERS/JST%20Vol.%2025%20(S)%20Jan.%202017/37-JTS(S)-0113-2016-4thProof.pdf
spellingShingle Md Yunus, Nurul Amziah
Mohtar, Mohd Nazim
Almadhagi, Khaldon Mohammed
Abdul Halin, Izhal
Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles
title Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles
title_full Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles
title_fullStr Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles
title_full_unstemmed Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles
title_short Dielectrophoresis and AC electroosmosis force on fluid motion in microfluidic using latex particles
title_sort dielectrophoresis and ac electroosmosis force on fluid motion in microfluidic using latex particles
url http://psasir.upm.edu.my/id/eprint/55840/
http://psasir.upm.edu.my/id/eprint/55840/
http://psasir.upm.edu.my/id/eprint/55840/1/37-JTS%28S%29-0113-2016-4thProof.pdf