Issue 4, 2015

Dielectrophoretically controlled Fresnel zone plate

Abstract

Switchability is a highly sought after feature for planar optical systems. Suspensions of nanomaterials can be used for generating controllable changes in such systems. We report a planar diffractive microfluidic lens which integrates controlled dielectrophoresis (DEP) for trapping suspended nanomaterials. Silicon and tungsten oxide nanoparticle suspensions are used. These nanomaterials are trapped in such a way as to form alternating opaque and transparent rings using the DEP forces on demand. These rings form a planar diffractive Fresnel zone plate to focus the incident light. The Fresnel zone plate is tuned for the visible light region and the lens can be turned on (DEP applied) or off (DEP removed) in a controlled manner. This proof of concept demonstration can be further expanded for a variety of switchable optical devices and can be integrated with lab-on-a-chip and optofluidic devices.

Graphical abstract: Dielectrophoretically controlled Fresnel zone plate

Supplementary files

Article information

Article type
Paper
Submitted
14 Oct 2014
Accepted
15 Dec 2014
First published
15 Dec 2014

Lab Chip, 2015,15, 1092-1100

Dielectrophoretically controlled Fresnel zone plate

A. F. Chrimes, I. Khodasevych, A. Mitchell, G. Rosengarten and K. Kalantar-zadeh, Lab Chip, 2015, 15, 1092 DOI: 10.1039/C4LC01213E

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