AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainable technologies for electricity production in the future, and as efficiency of solar thermal systems rapidly increases with increasing working temperature, the big challenge for future is to develop novel solutions for solar receivers. In this framework, Ultra-High Temperature Ceramics (UHTCs) are mainly studied as thermal protection materials for aerospace and military applications, but their peculiar properties (very high melting points and good thermo-mechanical properties at high temperatures) can be advantageously exploited to increase the operating temperature of thermodynamic solar plants in concentrating solar power systems. This work ...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
The availability of spectrally-selective, thermally stable and more efficient sunlight absorbers rep...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
Ultra-high temperature ceramic matrix composites, UHTCMCs, are a new class of composites which combi...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
It is well known that the efficiency of thermodynamic solar plants increases with working temperatur...
In this work, for the first time, we studied the temperature-dependent spectral emittance of highly ...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
The availability of spectrally-selective, thermally stable and more efficient sunlight absorbers rep...
AbstractConcentrating Solar Power (CSP) is considered to be one of the most promising and sustainabl...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
We report on the preparation, room temperature spectral reflectance and high-temperature thermal emi...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
An efficiency improvement of concentrating solar power systems relies on a significant increase of t...
Ultra-high temperature ceramic matrix composites, UHTCMCs, are a new class of composites which combi...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
So far, the studies regarding the innovative High-Entropy Borides (HEBs), which belong to the more g...
It is well known that the efficiency of thermodynamic solar plants increases with working temperatur...
In this work, for the first time, we studied the temperature-dependent spectral emittance of highly ...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
Ultra-high temperature ceramics (UHTCs) are interesting materials for a large variety of application...
The availability of spectrally-selective, thermally stable and more efficient sunlight absorbers rep...