The contributions of localized surface plasmon resonance (LSPR) and Drude (free electrons) absorption to the complex dielectric function of ultrathin Au films were investigated with spectroscopic ellipsometry. When the Au film thickness is thinner than ~10 nm, Au nanoparticles (NPs) are formed as a result of the discontinuity in the films, leading to the emergence of LSPR of Au NPs; and the LSPR exhibits a splitting when the films thinner than ~8 nm, which could be attributed to the near-field coupling of the Au NPs and/or the inhomogeneous polarizations of the Au NPs. On the other hand, the delocalization of electrons in Au NPs due to the aggregation of Au NPs in a thicker film leads to an increase in the free-electron absorption and a sup...
The effect of Au nanoparticles (NPs) concentration, size and spatial distribution within a TiO2 di...
In previous reports, Dalfovo et al. showed experimentally that thin films of Au nanoparticles (NP) w...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
The contributions of localized surface plasmon resonance (LSPR) and Drude (free electrons) absorptio...
It is the intent of this work to study the optical properties of Au nanoparticles. The Au nanopartic...
The localized surface plasmon resonance (LSPR) spectrum associated with a gold nanoparticle (NP) cou...
Department of Physics, Banwarilal Bhalotia College, Asansol-713 303, West Bengal, India E-mail: devm...
When illuminated with visible light, nanostructured noble metals exhibit a strongplasmon resonance a...
The optical properties of gold in the visible are dominated by the response of the free conduction e...
The effect of Au nanoparticles’ (NPs) concentration, size, and spatial distribution within a TiO2 di...
Spectroscopic ellipsometry in external reflection (ER) and total internal reflection (TIR) modes is ...
This paper reports on the changes in the structural and morphological features occurring in a partic...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
Au-doped Cu thin films are produced by co-deposition of Au and Cu via radiofrequency magnetron sputt...
Thin films of 5 nm gold colloid nanoparticles were deposited onto solid substrates (silicon, glass, ...
The effect of Au nanoparticles (NPs) concentration, size and spatial distribution within a TiO2 di...
In previous reports, Dalfovo et al. showed experimentally that thin films of Au nanoparticles (NP) w...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...
The contributions of localized surface plasmon resonance (LSPR) and Drude (free electrons) absorptio...
It is the intent of this work to study the optical properties of Au nanoparticles. The Au nanopartic...
The localized surface plasmon resonance (LSPR) spectrum associated with a gold nanoparticle (NP) cou...
Department of Physics, Banwarilal Bhalotia College, Asansol-713 303, West Bengal, India E-mail: devm...
When illuminated with visible light, nanostructured noble metals exhibit a strongplasmon resonance a...
The optical properties of gold in the visible are dominated by the response of the free conduction e...
The effect of Au nanoparticles’ (NPs) concentration, size, and spatial distribution within a TiO2 di...
Spectroscopic ellipsometry in external reflection (ER) and total internal reflection (TIR) modes is ...
This paper reports on the changes in the structural and morphological features occurring in a partic...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
Au-doped Cu thin films are produced by co-deposition of Au and Cu via radiofrequency magnetron sputt...
Thin films of 5 nm gold colloid nanoparticles were deposited onto solid substrates (silicon, glass, ...
The effect of Au nanoparticles (NPs) concentration, size and spatial distribution within a TiO2 di...
In previous reports, Dalfovo et al. showed experimentally that thin films of Au nanoparticles (NP) w...
This project examines how the collective oscillation of electrons in optically excited metal nanopar...