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FUNCTIONAL METAMATERIALS FOR OPTICAL SENSING OF HYDROGEN

Title
FUNCTIONAL METAMATERIALS FOR OPTICAL SENSING OF HYDROGEN
Type
Article in International Conference Proceedings Book
Year
2019
Authors
Guerreiro, A
(Author)
FCUP
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Apolinário, A.
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FCUP
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Lopes, A
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Hierro Rodriguez, A
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Aguilar, G
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Baptista, JM
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Silva, NA
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Frazao, O
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FCUP
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Quiterio, P
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Jorge, PAS
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FCUP
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Rodrigues, P
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Moraes, SS
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Susana Silva
(Author)
FCUP
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Ferreira, TD
(Author)
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Santos, JL
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FCUP
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araujo, j. p.
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FCUP
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Conference proceedings International
4th International Conference on Applications of Optics and Photonics (AOP)
Univ Lisbon, Lisbon, PORTUGAL, MAY 31-JUN 04, 2019
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Other information
Authenticus ID: P-00R-8ED
Abstract (EN): We present the design, fabrication and optical characterization of functional metamaterials for optical sensing of Hydrogen based on inexpensive self-assembly processes of metallic nanowires integrated in nanoporous alumina templates([37-42]). The optical properties of these materials strongly depend on the environmental concentration or partial pressure of hydrogen and can be used to develop fully optical sensors that reduce the danger of explosion. Optical metamaterials are artificial media, usually combining metallic and dielectric sub-wavelength structures, that exhibit optical properties that cannot be found in naturally occurring materials. Among these, functional metamaterials offer the added possibility of altering or controlling these properties externally after fabrication, in our case by contact with a hydrogen rich atmosphere. This dependency can be used to design([43-45]) and develop optical sensors that respond to this gas or to chemical compounds that contain or release hydrogen. In this paper we present some designs for hydrogen functional metamaterials and discuss the main parameters relevant in the optimization of their response.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 10
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