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Stop band shift based chemical sensing with three-dimensional opal and inverse opal structures
Journal article   Peer reviewed

Stop band shift based chemical sensing with three-dimensional opal and inverse opal structures

Cheng-Yu Kuo, Shih-Yuan Lu, Shengfu Chen, Matt Bernards and Shaoyi Jiang
Sensors and Actuators, B: Chemical, Vol.124(2), pp.452-458
26/06/2007

Abstract

Chemical sensor Electrodeposition Inverse opal Opal Photonic crystal Self-assembly
Chemical sensing ability of polystyrene opal and gold and titania inverse opal structures was demonstrated with sensitive response of stop band position with respect to refractive index variations of flowing media or bound analytes. Ethanol solutions of 80, 40, and 20% (v/v) were demonstrated to be consistently differentiated with a 1.5-2 nm shift in stop band position with the polystyrene opal structure. The sensitivity was enhanced, by using gold and titania inverse opal structures as the sensing host, to 4.5-6 nm in shifts of the stop band position. Detection of the presence of analytes was also demonstrated by shifts of 3.5 and 4.5 nm in stop band position effected by binding of C 8 H 18 S and C 18 H 38 S, respectively, onto the surface of the gold inverse opal. © 2007 Elsevier B.V. All rights reserved.

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