The thesis is focused on developing spectral selective coatings (SSC) composed of multilayer cermets and periodic array of resonating omega structures, turning them to behave like metamaterials, while showing high thermal stability up to1000°C. The developed SSC is intended to be used for the concentrated solar power (CSP) applications. With the aim of achieving highest possible absorbance in the visible region of the spectrum and highest reflectance in the infrared region of the spectrum. The thesis highlights the numerical design, the synthesis and optical characterization of the SSC of approximately 500 nm thickness. A bottom-up approach was adopted for the preparation of a stack with alternate layers, consisting of a distributio...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
In this work, a selective solar absorber made of nanostructured titanium gratings deposited on an ul...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The work presented involves the multiphysical modelling, simulation and design optimization of a key...
abstract: The objective of this dissertation is to study the use of metamaterials as narrow-band and...
abstract: The energy crisis in the past decades has greatly boosted the search for alternatives to t...
In this work we developed several strategies to enhance solar cells which lead to stronger sunlight ...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
We propose a novel solar selective absorber design based on transverse localized surface plasmon res...
This thesis consists of two parts, one dominating part concerning spectrally selective solar absorbe...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
This thesis reports on the structural and optical properties of laser surface structured Co nanocyli...
We study wide-angle and broadband perfect absorbers with compact multilayer structures made of a se...
abstract: In this work, a selective solar absorber made of nanostructured titanium gratings deposite...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
In this work, a selective solar absorber made of nanostructured titanium gratings deposited on an ul...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The work presented involves the multiphysical modelling, simulation and design optimization of a key...
abstract: The objective of this dissertation is to study the use of metamaterials as narrow-band and...
abstract: The energy crisis in the past decades has greatly boosted the search for alternatives to t...
In this work we developed several strategies to enhance solar cells which lead to stronger sunlight ...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
Plasmonic metamaterials are artificial materials typically composed of noble metals in which the fea...
We propose a novel solar selective absorber design based on transverse localized surface plasmon res...
This thesis consists of two parts, one dominating part concerning spectrally selective solar absorbe...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
This thesis reports on the structural and optical properties of laser surface structured Co nanocyli...
We study wide-angle and broadband perfect absorbers with compact multilayer structures made of a se...
abstract: In this work, a selective solar absorber made of nanostructured titanium gratings deposite...
Plasmonic is an emerging technology used to increase the performance of thin-film devices via light-...
In this work, a selective solar absorber made of nanostructured titanium gratings deposited on an ul...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...