In this paper, we investigate tandem amorphous/microcrystalline silicon solar cells with asymmetric intermediate reflectors grown in the n–i–p substrate configuration. We compare different types of substrates with respect to their light-trapping properties as well as their influence on the growth of single-junction microcrystalline cells. Our most promising back reflector combines a textured zinc oxide film grown by low-pressure chemical vapor deposition, a silver film for reflection, and a zinc oxide buffer layer. Grown on this substrate, microcrystalline cells exhibit excellent response in the infrared while keeping high open-circuit voltage and fill factor, leading to efficiencies of up to 10.0%. After optimizing the morphology of the as...
AbstractIn this study recent results of Micromorph thin film silicon tandem cells with n-doped silic...
A 3D photonic intermediate reflector for textured micromorph silicon tandem solar cells has been inv...
Light management using intermediate reflector layers (IRL) and advanced front transparent conductive...
ABSTRACT: We investigate n-i-p/n-i-p micromorph tandem cells deposited at process temperature below ...
High conversion efficiency for (amorphous/microcrystalline) "micromorph" tandem solar cells requires...
We present tandem thin film silicon solar cells in n-i-p configuration with 12% initial efficiency. ...
ABSTRACT: We present tandem thin film silicon solar cells in n-i-p configuration with 12 % initial e...
We report on results of tandem amorphous/microcrystalline (a-Si:H/μc-Si:H) silicon solar cells devel...
We report on the development of fully flexible microcrystalline and micromorph tandem solar cells di...
Amorphous silicon (a-Si:H) / micro-crystalline silicon (μc-Si:H), "micromorph" tandem solar cells ha...
We report on results of tandem amorphous/microcrystalline (a-Si:H/µc-Si:H) silicon solar cells devel...
The increasing demand for photovoltaic devices and the associated crystalline silicon feedstock dema...
The optical performance of tandem a-Si:H/mu c-Si:H (micromorph) thin film solar cell was investigate...
ABSTRACT: LP-CVD ZnO has been developed at IMT as front TCO for amorphous silicon p-i-n single-junct...
We report on the development of fully flexible micromorph tandem solar cells directly on low cost su...
AbstractIn this study recent results of Micromorph thin film silicon tandem cells with n-doped silic...
A 3D photonic intermediate reflector for textured micromorph silicon tandem solar cells has been inv...
Light management using intermediate reflector layers (IRL) and advanced front transparent conductive...
ABSTRACT: We investigate n-i-p/n-i-p micromorph tandem cells deposited at process temperature below ...
High conversion efficiency for (amorphous/microcrystalline) "micromorph" tandem solar cells requires...
We present tandem thin film silicon solar cells in n-i-p configuration with 12% initial efficiency. ...
ABSTRACT: We present tandem thin film silicon solar cells in n-i-p configuration with 12 % initial e...
We report on results of tandem amorphous/microcrystalline (a-Si:H/μc-Si:H) silicon solar cells devel...
We report on the development of fully flexible microcrystalline and micromorph tandem solar cells di...
Amorphous silicon (a-Si:H) / micro-crystalline silicon (μc-Si:H), "micromorph" tandem solar cells ha...
We report on results of tandem amorphous/microcrystalline (a-Si:H/µc-Si:H) silicon solar cells devel...
The increasing demand for photovoltaic devices and the associated crystalline silicon feedstock dema...
The optical performance of tandem a-Si:H/mu c-Si:H (micromorph) thin film solar cell was investigate...
ABSTRACT: LP-CVD ZnO has been developed at IMT as front TCO for amorphous silicon p-i-n single-junct...
We report on the development of fully flexible micromorph tandem solar cells directly on low cost su...
AbstractIn this study recent results of Micromorph thin film silicon tandem cells with n-doped silic...
A 3D photonic intermediate reflector for textured micromorph silicon tandem solar cells has been inv...
Light management using intermediate reflector layers (IRL) and advanced front transparent conductive...