A palladium (Pd)-based optical metamaterial has been designed, fabricated and characterized for its application in hydrogen sensing. The metamaterial can replace Pd thin films in optical transmission schemes for sensing with performances far superior to those of conventional sensors. This artificial material consists of a palladium-alumina metamaterial fabricated using inexpensive and industrial-friendly bottom-up techniques. During the exposure to hydrogen, the system exhibits anomalous optical absorption when compared to the well-known response of Pd thin films, this phenomenon being the key factor for the sensor sensitivity. The exposure to hydrogen produces a large variation in the light transmission through the metamembrane (more than ...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
In this work we investigate nanocomposite carbonaceous–palladium (C–Pd) films prepared by physical v...
A palladium (Pd)-based optical metamaterial has been designed, fabricated and characterized for its ...
A palladium (Pd)-based optical metamaterial has been designed, fabricated and characterized for its ...
Presented in this thesis are experimental and theoretical results for a new type of fiber optic hydr...
Gold-core/palladium-shell metamaterials for hydrogen detection are presented. The more than 30% chan...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
Hydrogen detection is essential for its implementation as an energy vector. So far, palladium is con...
International audienceAlong with the development of hydrogen as a sustainable energy carrier, it is ...
International audienceAlong with the development of hydrogen as a sustainable energy carrier, it is ...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
In this work we investigate nanocomposite carbonaceous–palladium (C–Pd) films prepared by physical v...
A palladium (Pd)-based optical metamaterial has been designed, fabricated and characterized for its ...
A palladium (Pd)-based optical metamaterial has been designed, fabricated and characterized for its ...
Presented in this thesis are experimental and theoretical results for a new type of fiber optic hydr...
Gold-core/palladium-shell metamaterials for hydrogen detection are presented. The more than 30% chan...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
We report the development and testing of a novel hydrogen sensor that shows a very peculiar response...
Nanostructured metal hydrides are able to efficiently detect hydrogen in optical sensors. In the lit...
Hydrogen detection is essential for its implementation as an energy vector. So far, palladium is con...
International audienceAlong with the development of hydrogen as a sustainable energy carrier, it is ...
International audienceAlong with the development of hydrogen as a sustainable energy carrier, it is ...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
Hydrogen gas is rapidly approaching a global breakthrough as a carbon-free energy vector. In such a ...
In this work we investigate nanocomposite carbonaceous–palladium (C–Pd) films prepared by physical v...