Abstract Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing techniques to generate functional layers for various optoelectronic devices. Since these deposition methods do not create fully consolidated films, the optical properties of such layers are expected to be notably different from those of the bulk material and should be characterized on their own. In this work we present a way to measure the effective refractive index of a particulate ITO layer by refraction of light. The obtained data points are used to identify an accurate layer model for spectroscopic ellipsometry. In this way the complex refractive index of the particle layer is determined in a wide spectral range from ultr...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
As the library of potential materials with plasmonic behavior in the infrared (IR) grows, we must ca...
Abstract Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in ...
Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing te...
Abstract Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in ...
Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing te...
Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing te...
Creating optical quality thin films with a high refractive index is increasingly important for waveg...
Creating optical quality thin films with a high refractive index is increasingly important for waveg...
Refractive index of ITO (Indium Tin Oxidide) provided by Optics Balzers. Dataset contains the raw sp...
The effective medium approximation is used to determine the optical constants of novel silver (Ag)/i...
Refractive index of ITO (Indium Tin Oxidide) provided by Optics Balzers. Dataset contains the raw sp...
Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as scre...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
As the library of potential materials with plasmonic behavior in the infrared (IR) grows, we must ca...
Abstract Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in ...
Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing te...
Abstract Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in ...
Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing te...
Nanoparticles of transparent conducting oxides, such as indium tin oxide, can be used in printing te...
Creating optical quality thin films with a high refractive index is increasingly important for waveg...
Creating optical quality thin films with a high refractive index is increasingly important for waveg...
Refractive index of ITO (Indium Tin Oxidide) provided by Optics Balzers. Dataset contains the raw sp...
The effective medium approximation is used to determine the optical constants of novel silver (Ag)/i...
Refractive index of ITO (Indium Tin Oxidide) provided by Optics Balzers. Dataset contains the raw sp...
Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as scre...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
: Doped semiconductor nanocrystal-based thin films are widely used for many applications, such as sc...
As the library of potential materials with plasmonic behavior in the infrared (IR) grows, we must ca...