The performance of hybrid photovoltaic-thermal systems can be improved using PV cells that are specially designed to generate both electricity and useful heat with maximum efficiency. Present systems, however, use standard PV cells that are only optimized for electrical performance. In this work, we have developed two cell-level components that will improve the thermal efficiency of PV-T collectors, with minimal loss of electrical efficiency. These are a spectrally-selective low-emissivity coating to reduce radiative thermal losses, and a nanotextured rear reflector to improve absorption of the near-infrared part of the solar spectrum for heat generation
AbstractPhotovoltaic (PV) semiconductor degrades in performance due to temperature rise. A super thi...
This paper analyzes the use of hybrid photovoltaic/thermal (PVT) collectors in nearly zero-energy bu...
Photovoltaic (PV) semiconductor degrades in performance due to temperature rise. A super thin-conduc...
The performance of hybrid photovoltaic-thermal systems can be improved using PV cells that are speci...
The performance of hybrid photovoltaic-thermal systems can be improved using PV cells that are speci...
For hybrid photovoltaic-thermal collectors to become competitive with other types of solar energy co...
For hybrid photovoltaic-thermal collectors to become competitive with other types of solar energy co...
For hybrid photovoltaic-thermal collectors to become competitive with other types of solar energy co...
Due to European Directives (2010/31/UE on buildings energy performance, 2009/28/CE on the use of ren...
The sun is the world's most abundant energy source and means of harvesting it include photovolt...
Photovoltaics (PV) cell performance presents a strong dependence on the solar irradiance spectral ...
Solar energy has the potential to fulfil the world’s energy needs if it is exploited efficiently. ...
Maximum efficiency of ideal single-junction photovoltaic (PV) cells is limited to 33% (for 1 sun ill...
International audiencePhotovoltaic-thermal collectors (or PV-T collector) are hybrid collectors wher...
Abstract: PV cells generate electricity, but the electrical output is only one component of the tota...
AbstractPhotovoltaic (PV) semiconductor degrades in performance due to temperature rise. A super thi...
This paper analyzes the use of hybrid photovoltaic/thermal (PVT) collectors in nearly zero-energy bu...
Photovoltaic (PV) semiconductor degrades in performance due to temperature rise. A super thin-conduc...
The performance of hybrid photovoltaic-thermal systems can be improved using PV cells that are speci...
The performance of hybrid photovoltaic-thermal systems can be improved using PV cells that are speci...
For hybrid photovoltaic-thermal collectors to become competitive with other types of solar energy co...
For hybrid photovoltaic-thermal collectors to become competitive with other types of solar energy co...
For hybrid photovoltaic-thermal collectors to become competitive with other types of solar energy co...
Due to European Directives (2010/31/UE on buildings energy performance, 2009/28/CE on the use of ren...
The sun is the world's most abundant energy source and means of harvesting it include photovolt...
Photovoltaics (PV) cell performance presents a strong dependence on the solar irradiance spectral ...
Solar energy has the potential to fulfil the world’s energy needs if it is exploited efficiently. ...
Maximum efficiency of ideal single-junction photovoltaic (PV) cells is limited to 33% (for 1 sun ill...
International audiencePhotovoltaic-thermal collectors (or PV-T collector) are hybrid collectors wher...
Abstract: PV cells generate electricity, but the electrical output is only one component of the tota...
AbstractPhotovoltaic (PV) semiconductor degrades in performance due to temperature rise. A super thi...
This paper analyzes the use of hybrid photovoltaic/thermal (PVT) collectors in nearly zero-energy bu...
Photovoltaic (PV) semiconductor degrades in performance due to temperature rise. A super thin-conduc...