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Dye-Based Photonic Sensing Systems

Authors :
Universidad de Sevilla. Departamento de Física Aplicada I
Universidad de Sevilla. FQM196: Nanotecnología en Superficies y Plasma
EU -Phodye Strep Project 033793
EU - ERC Starting Grant M&M’s 277879
Spanish Ministry of Economy and Competitiveness MAT-2010-21228
Junta de Andalucía - P09-TEP-5283
Aparicio Rebollo, Francisco Javier
Alcaire Martín, María
González-Elipe, Agustín R.
Barranco Quero, Ángel
Holgado, Miguel
Casquel, Rafael
Sanza, Francisco J.
Griol, Amadeu
Bernier, Damien
Dortu, Fabian
Cáceres, Santiago
Antelius, Mikael
Lapisa, Martin
Sohlström, Hans
Niklaus, Frank
Universidad de Sevilla. Departamento de Física Aplicada I
Universidad de Sevilla. FQM196: Nanotecnología en Superficies y Plasma
EU -Phodye Strep Project 033793
EU - ERC Starting Grant M&M’s 277879
Spanish Ministry of Economy and Competitiveness MAT-2010-21228
Junta de Andalucía - P09-TEP-5283
Aparicio Rebollo, Francisco Javier
Alcaire Martín, María
González-Elipe, Agustín R.
Barranco Quero, Ángel
Holgado, Miguel
Casquel, Rafael
Sanza, Francisco J.
Griol, Amadeu
Bernier, Damien
Dortu, Fabian
Cáceres, Santiago
Antelius, Mikael
Lapisa, Martin
Sohlström, Hans
Niklaus, Frank
Publication Year :
2016

Abstract

We report on dye-based photonic sensing systems which are fabricated and packaged at wafer scale. For the first time luminescent organic nanocomposite thin-films deposited by plasma technology are integrated in photonic sensing systems as active sensing elements. The realized dye-based photonic sensors include an environmental NO₂ sensor and a sunlight ultraviolet light (UV) A + B sensor. The luminescent signal from the nanocomposite thin-films responds to changes in the environment and is selectively filtered by a photonic structure consisting of a Fabry–Perot cavity. The sensors are fabricated and packaged at wafer-scale, which makes the technology viable for volume manufacturing. Prototype photonic sensor systems have been tested in real-world scenarios.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1428430554
Document Type :
Electronic Resource