Opto-electrophoretic detection of bio-molecules using conducting chalcogenide glass sensors
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Date
Authors
Yang, Zhiyong
Fah, Megan K.
Reynolds, Kelly A.
Sexton, Jonathan D.
Riley, Mark R.
Anne, Marie-Laure
Bureau, Bruno
Lucas, Pierre
Journal Title
Journal ISSN
Volume Title
Publisher
Optical Society of America
Abstract
Novel telluride glasses with high electrical conductivity, wide
infrared transparency and good resistance to crystallization are used to
design an opto-electrophoretic sensor for detection and identification of
hazardous microorganisms. The sensor is based on an attenuated total
reflectance element made of Ge-As-Te glass that serves as both an optical
sensing zone and an electrode for driving the migration of bio-molecules
within the evanescent wave of the sensor. An electric field is applied
between the optical element and a counter electrode in order to induce the
migration of bio-molecules carrying surface charges. The effect of
concentration and applied voltage is tested and the migration effect is
shown to be reversible upon switching the electric field. The collected
signal is of high quality and can be used to identify different bacterial genus
through statistical spectral analysis. This technique therefore provides the
ability to detect hazardous microorganisms with high specificity and high
sensitivity in aqueous environments. This has great potential for online
monitoring of water quality.
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Source
Optics Express
Type
Book Title
Entity type
Access Statement
Open Access