We introduce the concept of smoothening intermediate reflecting layers (IRLs) in Micromorph thin-film silicon tandem solar cells in the superstrate configuration. The aim of such structures is not only to provide a selective reflection of light for optimal light management in both sub-cells but also to tune the morphology of the surface on which the microcrystalline silicon bottom cell is grown. This novel type of IRL is shown to enable the use of rough front electrodes with excellent light scattering properties in Micromorph devices without impacting the electrical property of the microcrystalline material. A low-index (1.5), highly transparent and insulating UV-curable lacquer is used as IRL The electrical contact between both sub-cells i...
Thin-film silicon solar cells made of amorphous and microcrystalline silicon in tandem cell configur...
AbstractIn this study recent results of Micromorph thin film silicon tandem cells with n-doped silic...
Light management using intermediate reflector layers (IRL) and advanced front transparent conductive...
High conversion efficiency for (amorphous/microcrystalline) "micromorph" tandem solar cells requires...
Tandem solar cells based on thin film silicon benefit from an intermediate reflector layer between t...
The optical performance of tandem a-Si:H/mu c-Si:H (micromorph) thin film solar cell was investigate...
We report the recent advances and key requirements for high-efficiency "micromorph" tandem thin-film...
A 3D photonic intermediate reflector for textured micromorph silicon tandem solar cells has been inv...
ABSTRACT: We investigate n-i-p/n-i-p micromorph tandem cells deposited at process temperature below ...
We present tandem thin film silicon solar cells in n-i-p configuration with 12% initial efficiency. ...
In this paper, we investigate tandem amorphous/microcrystalline silicon solar cells with asymmetric ...
Abstract The concept of 3D photonic intermediate reflectors for micromorph silicon tandem solar cell...
ABSTRACT: We present tandem thin film silicon solar cells in n-i-p configuration with 12 % initial e...
Amorphous silicon (a-Si:H) / micro-crystalline silicon (μc-Si:H), "micromorph" tandem solar cells ha...
Thin-film silicon tandem solar cells are composed of an amorphous silicon top cell and a microcrysta...
Thin-film silicon solar cells made of amorphous and microcrystalline silicon in tandem cell configur...
AbstractIn this study recent results of Micromorph thin film silicon tandem cells with n-doped silic...
Light management using intermediate reflector layers (IRL) and advanced front transparent conductive...
High conversion efficiency for (amorphous/microcrystalline) "micromorph" tandem solar cells requires...
Tandem solar cells based on thin film silicon benefit from an intermediate reflector layer between t...
The optical performance of tandem a-Si:H/mu c-Si:H (micromorph) thin film solar cell was investigate...
We report the recent advances and key requirements for high-efficiency "micromorph" tandem thin-film...
A 3D photonic intermediate reflector for textured micromorph silicon tandem solar cells has been inv...
ABSTRACT: We investigate n-i-p/n-i-p micromorph tandem cells deposited at process temperature below ...
We present tandem thin film silicon solar cells in n-i-p configuration with 12% initial efficiency. ...
In this paper, we investigate tandem amorphous/microcrystalline silicon solar cells with asymmetric ...
Abstract The concept of 3D photonic intermediate reflectors for micromorph silicon tandem solar cell...
ABSTRACT: We present tandem thin film silicon solar cells in n-i-p configuration with 12 % initial e...
Amorphous silicon (a-Si:H) / micro-crystalline silicon (μc-Si:H), "micromorph" tandem solar cells ha...
Thin-film silicon tandem solar cells are composed of an amorphous silicon top cell and a microcrysta...
Thin-film silicon solar cells made of amorphous and microcrystalline silicon in tandem cell configur...
AbstractIn this study recent results of Micromorph thin film silicon tandem cells with n-doped silic...
Light management using intermediate reflector layers (IRL) and advanced front transparent conductive...