4.6 Article

Chalcogenide Glass Optical Waveguides for Infrared Biosensing

期刊

SENSORS
卷 9, 期 9, 页码 7398-7411

出版社

MDPI
DOI: 10.3390/s90907398

关键词

chalcogenide; optical sensor; fibre; planar waveguide

资金

  1. Programme d'actions integrees franco-japonais (Sakura): echanges Rennes (EVC)/Tsukuba (AIST)
  2. Egide JH/RE [82/222248]
  3. CNRS/AIST

向作者/读者索取更多资源

Due to the remarkable properties of chalcogenide (Chg) glasses, Chg optical waveguides should play a significant role in the development of optical biosensors. This paper describes the fabrication and properties of chalcogenide fibres and planar waveguides. Using optical fibre transparent in the mid-infrared spectral range we have developed a biosensor that can collect information on whole metabolism alterations, rapidly and in situ. Thanks to this sensor it is possible to collect infrared spectra by remote spectroscopy, by simple contact with the sample. In this way, we tried to determine spectral modifications due, on the one hand, to cerebral metabolism alterations caused by a transient focal ischemia in the rat brain and, in the other hand, starvation in the mouse liver. We also applied a microdialysis method, a well known technique for in vivo brain metabolism studies, as reference. In the field of integrated microsensors, reactive ion etching was used to pattern rib waveguides between 2 and 300 mu m wide. This technique was used to fabricate Y optical junctions for optical interconnections on chalcogenide amorphous films, which can potentially increase the sensitivity and stability of an optical micro-sensor. The first tests were also carried out to functionalise the Chg planar waveguides with the aim of using them as (bio) sensors.

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