Numerical and semi-analytical models are presented for photon-enhanced-thermionic-emission (PETE) devices. The models take diffusion of electrons, inhomogeneous photogeneration, and bulk and surface recombination into account. The efficiencies of PETE devices with silicon cathodes are calculated. Our model predicts significantly different electron affinity and temperature dependence for the device than the earlier model based on a rate-equation description of the cathode. We show that surface recombination can reduce the efficiency below 10% at the cathode temperature of 800?K and the concentration of 1000 suns, but operating the device at high injection levels can increase the efficiency to 15%
A novel design concept of the solar hybrid system consisting of a solar concentrator, a photon enhan...
A general model is presented for electron emission yield from planar photocathodes that accounts for...
A semiconductor thermionic device, which utilises thermally excited electrons, is considered as an a...
Numerical and semi-analytical models are presented for photon-enhanced-thermionic-emission (PETE) de...
Solid-state photon-enhanced thermionic emission (PETE) solar energy converters are new devices that ...
Photon-enhanced thermionic emission (PETE) converts sunlight to electricity with the combined photon...
Photon Enhanced Thermionic Emission (PETE) is a newly proposed form of solar energy harvesting which...
Photovoltaic energy conversion at high temperatures can be realized with photon-enhanced-thermionic-...
Photon Enhanced Thermionic Emission (PETE) is a novel concept in solar energy<br /> conversion, whic...
AbstractConversion of sunlight by photon-enhanced thermionic emission (PETE) combines a photonic pro...
Photon Enhanced Thermionic Emission (PETE) is a new concept in solar energy conversion, combining th...
Photon-enhanced thermionic emission (PETE) solar cells are photovoltaic devices designed for high te...
Silicon has been widely used in semiconductor industry for decades. This gives rise to the availabil...
Conversion of solar radiation to electricity with photon-enhanced thermionic emission (PETE) holds t...
A novel concept for solar electricity generation named photon-enhanced thermionic emission (PETE) wa...
A novel design concept of the solar hybrid system consisting of a solar concentrator, a photon enhan...
A general model is presented for electron emission yield from planar photocathodes that accounts for...
A semiconductor thermionic device, which utilises thermally excited electrons, is considered as an a...
Numerical and semi-analytical models are presented for photon-enhanced-thermionic-emission (PETE) de...
Solid-state photon-enhanced thermionic emission (PETE) solar energy converters are new devices that ...
Photon-enhanced thermionic emission (PETE) converts sunlight to electricity with the combined photon...
Photon Enhanced Thermionic Emission (PETE) is a newly proposed form of solar energy harvesting which...
Photovoltaic energy conversion at high temperatures can be realized with photon-enhanced-thermionic-...
Photon Enhanced Thermionic Emission (PETE) is a novel concept in solar energy<br /> conversion, whic...
AbstractConversion of sunlight by photon-enhanced thermionic emission (PETE) combines a photonic pro...
Photon Enhanced Thermionic Emission (PETE) is a new concept in solar energy conversion, combining th...
Photon-enhanced thermionic emission (PETE) solar cells are photovoltaic devices designed for high te...
Silicon has been widely used in semiconductor industry for decades. This gives rise to the availabil...
Conversion of solar radiation to electricity with photon-enhanced thermionic emission (PETE) holds t...
A novel concept for solar electricity generation named photon-enhanced thermionic emission (PETE) wa...
A novel design concept of the solar hybrid system consisting of a solar concentrator, a photon enhan...
A general model is presented for electron emission yield from planar photocathodes that accounts for...
A semiconductor thermionic device, which utilises thermally excited electrons, is considered as an a...