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Résumé
Surface enhanced infrared absorption (SEIRA) is an experimental method where trace amount of a compound can be detected with high sensibility. This high detection sensibility is the result of the interaction of the molecules with a localized plasmon, usually from a metallic nanoparticle. In this study we numerically investigate by discrete dipole approximation the origin of the Fano-like response of the system, including the induced transparency when the plasmon resonance and the molecular vibrational mode coincide. The detailed analysis of the localization of the absorption shows that the modification of the absorption cross-section when the molecule is present comes from a change of the plasmonic resonance, not from the direct molecular response which is negligible. This sheds a new light on the SEIRA mechanism. In particular, it demonstrates that the sensibility is associated with the influence of the molecule on the plasmon resonance rather than with the local field enhancement itself.
| langue originale | Anglais |
|---|---|
| Numéro d'article | 025003 |
| journal | JPhys Photonics |
| Volume | 6 |
| Numéro de publication | 2 |
| Les DOIs | |
| Etat de la publication | Publié - avr. 2024 |
Financement
All authors declare that they have no conflicts of interest. The calculations were performed on computers of the Consortium des Equipements de Calcul Intensif, including those of the Technological Platform of High-Performance Computing, supported by the FNRS-FRFC (Conventions No. 2.4.61707.F and 2.5020.11) and the University of Namur. The authors acknowledge the funding by the Federation Wallonia-Brussels through the ARC SURFASCOPE (UNamur-UCLouvain, Convention 19/24-102). V Liégeois thanks the F.R.S.-FNRS for his Research Associate position.
| Bailleurs de fonds | Numéro du bailleur de fonds |
|---|---|
| Consortium des Equipements de Calcul Intensif | |
| FNRS‐FRFC | 2.5020.11, 2.4.61707 |
| UCLouvain - UNamur | 19/24-102 |
| Fonds de la Recherche Scientifique F.R.S.-FNRS | |
| Fédération Wallonie-Bruxelles | |
| Universite de Namur |
Empreinte digitale
Examiner les sujets de recherche de « Surface enhanced infrared absorption mechanism and modification of the plasmonic response ». Ensemble, ils forment une empreinte digitale unique.Projets
- 2 Terminé
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Renouvellement d’équipements pour le Consortium des Equipements de Calcul Intensif (CECI)
Bontempi, G. (Responsable du Projet), Champagne, B. (CoPI), Geuzaine , C. (CoPI), RIGNANESE, G. M. (CoPI) & Lazzaroni, R. (CoPI)
1/01/22 → 31/12/23
Projet: Recherche
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SURFASCOPE: Surface Enhanced Spectroscopy by Second-Principles Calculations
Gonze, X. (Responsable du Projet), RIGNANESE, G. M. (Responsable du Projet), Henrard, L. (Responsable du Projet), Liegeois, V. (Responsable du Projet), COLLEU, T. (Chercheur) & Matatu Mbengo, C. (Chercheur)
1/10/19 → 30/09/24
Projet: Recherche
Équipement
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Plateforme Technologique Calcul Intensif
Champagne, B. (!!Manager)
Plateforme technologique Calcul intensifEquipement/installations: Plateforme technolgique
Thèses de l'étudiant
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Surface Enhanced Infrared Absorption Mechanism Explored through Discrete Dipole Approximation Simulations
Colleu-Banse, T. (Auteur), Henrard, L. (Promoteur), RIGNANESE, G. M. (Copromoteur), Cecchet, F. (Président), Liegeois, V. (Jury), Gonze, X. (Jury) & Bernard, H. (Jury), 19 août 2024Student thesis: Doc types › Docteur en Sciences
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