International audienceThe optical properties of metallic spherical nanoparticles embedded in host liquid matrix are studied. Extended Maxwell-Garnett-Mie formulation which accounts for size dispersion, the intrinsic confinement, and extrinsic size effect, is proposed for the calculation of the effective dielectric function and absorption coefficient of size dispersion of colloidal solution of Au and Ag nanoparticles in water. We demonstrate that the size distribution induces an inhomogeneous broadening and an increase of the amplitude of the plasmon band. A large redshift of the plasmon band is also observed for silver nanoparticles. Compared to the conventional Maxwell Garnett theory, we demonstrated that this model gives better descriptio...
[[abstract]]In this modified quantum sphere model, the dielectric function for small metallic partic...
This work determines the size dependent metal nanoparticle (NP) dielectric function from a top-down ...
In this paper, we explore the ability of extinction spectroscopy to characterize colloidal suspensio...
International audienceThe optical properties of spherical gold and silver nanoparticles distributed ...
International audienceA modified effective medium theory (MEMT) is introduced to determine morpholog...
In this work it is shown that the size of silver nanoparticles in a colloidal solution can be determ...
In this paper, different confinement potential approaches are considered in the simulation of size e...
Metal nanoparticles (NPs) exhibit unique optical properties (OP) coming from the collective oscillat...
In this paper, two different routes for modeling of the optical properties of nanoparticles embedded...
The photonic band structure of a three-dimensional lattice of metal spheres is calculated using an e...
nanoparticles in aqueous solution. The plasmon bandwidth is found to follow the predicted behavior a...
In this work, a complete fitting procedure of UV-Vis spectra of silver nanoparticles in colloidal so...
Size effect for plasmon resonance in metallic nanoparticles has been studied by finite element metho...
In this work, We study of the optical properties of nanoparticles using Mie theory. This famous theo...
It is the intent of this work to study the optical properties of Au nanoparticles. The Au nanopartic...
[[abstract]]In this modified quantum sphere model, the dielectric function for small metallic partic...
This work determines the size dependent metal nanoparticle (NP) dielectric function from a top-down ...
In this paper, we explore the ability of extinction spectroscopy to characterize colloidal suspensio...
International audienceThe optical properties of spherical gold and silver nanoparticles distributed ...
International audienceA modified effective medium theory (MEMT) is introduced to determine morpholog...
In this work it is shown that the size of silver nanoparticles in a colloidal solution can be determ...
In this paper, different confinement potential approaches are considered in the simulation of size e...
Metal nanoparticles (NPs) exhibit unique optical properties (OP) coming from the collective oscillat...
In this paper, two different routes for modeling of the optical properties of nanoparticles embedded...
The photonic band structure of a three-dimensional lattice of metal spheres is calculated using an e...
nanoparticles in aqueous solution. The plasmon bandwidth is found to follow the predicted behavior a...
In this work, a complete fitting procedure of UV-Vis spectra of silver nanoparticles in colloidal so...
Size effect for plasmon resonance in metallic nanoparticles has been studied by finite element metho...
In this work, We study of the optical properties of nanoparticles using Mie theory. This famous theo...
It is the intent of this work to study the optical properties of Au nanoparticles. The Au nanopartic...
[[abstract]]In this modified quantum sphere model, the dielectric function for small metallic partic...
This work determines the size dependent metal nanoparticle (NP) dielectric function from a top-down ...
In this paper, we explore the ability of extinction spectroscopy to characterize colloidal suspensio...