Title :
Fluorescent Gas Sensors Based on Nanoporous Optical Resonators (Microcavities) Infiltrated With Sensory Emissive Polymers
Author :
Ong, Pang-Leen ; Levitsky, Igor A.
Author_Institution :
Emitech, Inc., Fall River, MA, USA
Abstract :
In this contribution, we report fluorescent gas chemosensors for detection of nitroaromatic vapors and other classes of volatile organic compounds based on porous silicon (PSi) microcavity (MC) infiltrated with sensory emissive polymers. Such hybrid functional sensors have several advantages over traditional fluorescent chemosensors, where the sensory polymers are deposited on flat substrate. This includes a high interfacial area of nanoporous Si (high sensitivity), narrow fluorescent band due to photon confinement, dependence of the spectral peak position on nature of analyte (enhanced selectivity), and fast recovery time. We demonstrated that deep and uniform polymer infiltration is critical for effective gas sensing and investigated the experimental conditions required for preparation of high-quality hybrid sensors. In the case of deep infiltration, the broad polymer fluorescence (FWHM ~100 nm) shows a narrowing to the resonance peak (FWHM ~10 nm) with narrow intensity angle diagram. In addition, the potential of the sensor array platform and sensor recovery under ultrasound power is discussed.
Keywords :
elemental semiconductors; fluorescence; gas sensors; microcavities; nanophotonics; nanoporous materials; nanosensors; optical resonators; organic compounds; polymers; porous semiconductors; sensor arrays; silicon; Si; broad polymer fluorescence; deep infiltration; fluorescent gas chemosensor; hybrid functional sensor; nanoporous optical resonator; nanoporous silicon; narrow intensity angle diagram; nitroaromatic vapor detection; photon confinement; polymer infiltration; porous silicon microcavity; sensor array; sensory emissive polymer; spectral peak position; volatile organic compound; Explosives; Fluorescence; Optical sensors; Plastics; Reflectivity; Silicon; Chemical sensors; explosive detectors; gas detectors; nanostructured materials;
Journal_Title :
Sensors Journal, IEEE
Conference_Location :
5/5/2011 12:00:00 AM
DOI :
10.1109/JSEN.2011.2150213