International audiencePerovskite materials are particularly appropriate for single-junction and tandem solar cells, for which prospects for very high efficiencies >30% are today realized. A suitable integration of an efficient transparent electrode into the front of the perovskite solar subcell is required to do so. Here, the compatibility of two sputtering recipes allowing the integration of a transparent ITO top electrode is evaluated. In the literature, the PIN-type architecture appears to be more promising experimentally for tandem applications. Our study was thus focused on a PIN-type semitransparent device. According to an initial stage of optimization of transporting layers P and N, the following architecture “Glass/ITO/TFB/FAxCs1–xP...
In order to achieve semi-transparency in perovskite solar cells, the electrode materials must be as ...
International audienceTo develop high-performance tandem cells, it therefore seems necessary to opti...
Transparent quasi-interdigitated electrodes (t-QIDEs) were produced by replacing the opaque componen...
International audiencePerovskite materials are particularly appropriate for single-junction and tand...
Perovskite materials are particularly appropriate for single-junction and tandem solar cells, for wh...
A tandem configuration of perovskite and silicon solar cells is a promising way to achieve high-effi...
Four-terminal tandem solar cells employing a perovskite top cell and crystalline silicon (Si) bottom...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
Materials and processing of transparent electrodes (TEs) are key factors to creating high-performanc...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
Semitransparent perovskite solar cells (ST-PSCs) are increasingly important in a range of applicatio...
The replacement of the conventional top metal contact with a semi‐transparent conducting electrode s...
Due to excellent performance and low fabrication costs, perovskite solar cells have become an attrac...
The current photovoltaic market is dominated by silicon-based solar cells, whose laboratory performa...
In order to achieve semi-transparency in perovskite solar cells, the electrode materials must be as ...
International audienceTo develop high-performance tandem cells, it therefore seems necessary to opti...
Transparent quasi-interdigitated electrodes (t-QIDEs) were produced by replacing the opaque componen...
International audiencePerovskite materials are particularly appropriate for single-junction and tand...
Perovskite materials are particularly appropriate for single-junction and tandem solar cells, for wh...
A tandem configuration of perovskite and silicon solar cells is a promising way to achieve high-effi...
Four-terminal tandem solar cells employing a perovskite top cell and crystalline silicon (Si) bottom...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
Materials and processing of transparent electrodes (TEs) are key factors to creating high-performanc...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
Semitransparent perovskite solar cells (ST-PSCs) are increasingly important in a range of applicatio...
The replacement of the conventional top metal contact with a semi‐transparent conducting electrode s...
Due to excellent performance and low fabrication costs, perovskite solar cells have become an attrac...
The current photovoltaic market is dominated by silicon-based solar cells, whose laboratory performa...
In order to achieve semi-transparency in perovskite solar cells, the electrode materials must be as ...
International audienceTo develop high-performance tandem cells, it therefore seems necessary to opti...
Transparent quasi-interdigitated electrodes (t-QIDEs) were produced by replacing the opaque componen...