A new solar cell structure called a heterojunction barrier solar cell is described. As with previously reported quantum-well and quantum-dot solar cell structures, a layer of narrow band-gap material, such as GaAs or indium-rich InGaP, is inserted into the depletion region of a wide band-gap PN junction. Rather than being thin, however, the layer of narrow band-gap material is about 400-430 nm wide and forms a single, ultrawide well in the depletion region. Thin (e.g., 20-50 nm), wide band-gap InGaP barrier layers in the depletion region reduce the diode dark current. Engineering the electric field and barrier profile of the absorber layer, barrier layer, and p-type layer of the PN junction maximizes photogenerated carrier escape. This new ...
This paper presents the design parameters for a thin film 3J InGaP/GaAs/Ge solar cell with a simulat...
In the last few decades there has been great interest in III-V multijunction solar cells (MJSC) for ...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
A new solar-cell structure utilizes a single, ultra-wide well of either gallium arsenide (GaAs) or i...
A Schottky barrier solar cell was described, which consists of a layer of wide band gap semiconducto...
The present study was undertaken to examine the structure and performance of hetero junctions on the...
Photon absorption, and thus current generation, is hindered in conventional thin-film solar cell des...
A heterojunction or Schottky barrier photovoltaic device is described, comprising a conductive base ...
This project demonstrates a novel nanostructured solar cell architecture capable of achieving high e...
The theory of heterojunction and graded bandgap solar cells was studied to help determine the materi...
Here we propose, for the first time, a solar cell characterized by a semiconductor transistor struct...
The third-generation solar cell technologies are aiming to achieve substantially higher efficiency o...
Silicon heterojunction solar cells consist of thin amorphous silicon layers deposited on crystalline...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
textPhoton management via submicron and subwavelength nanostructures has been extensively studied ov...
This paper presents the design parameters for a thin film 3J InGaP/GaAs/Ge solar cell with a simulat...
In the last few decades there has been great interest in III-V multijunction solar cells (MJSC) for ...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
A new solar-cell structure utilizes a single, ultra-wide well of either gallium arsenide (GaAs) or i...
A Schottky barrier solar cell was described, which consists of a layer of wide band gap semiconducto...
The present study was undertaken to examine the structure and performance of hetero junctions on the...
Photon absorption, and thus current generation, is hindered in conventional thin-film solar cell des...
A heterojunction or Schottky barrier photovoltaic device is described, comprising a conductive base ...
This project demonstrates a novel nanostructured solar cell architecture capable of achieving high e...
The theory of heterojunction and graded bandgap solar cells was studied to help determine the materi...
Here we propose, for the first time, a solar cell characterized by a semiconductor transistor struct...
The third-generation solar cell technologies are aiming to achieve substantially higher efficiency o...
Silicon heterojunction solar cells consist of thin amorphous silicon layers deposited on crystalline...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
textPhoton management via submicron and subwavelength nanostructures has been extensively studied ov...
This paper presents the design parameters for a thin film 3J InGaP/GaAs/Ge solar cell with a simulat...
In the last few decades there has been great interest in III-V multijunction solar cells (MJSC) for ...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...