Semitransparent perovskite solar cells (ST-PSCs) are increasingly important in a range of applications, including top cells in tandem devices and see-through photovoltaics. Transparent conductive oxides (TCOs) are commonly used as transparent electrodes, with sputtering being the preferred deposition method. However, this process can damage exposed layers, affecting the electrical performance of the devices. In this study, an indium tin oxide (ITO) deposition process that effectively suppresses sputtering damage was developed using a transition metal oxides (TMOs)-based buffer layer. An ultrathin (<10 nm) layer of evaporated vanadium oxide or molybdenum oxide was found to be effective in protecting against sputtering damage in ST-PSCs for t...
Corrosive precursors used for the preparation of organic inorganic hybrid perovskite photoactive lay...
The effect of transparent conductive oxide (TCO) on the performance of compact-layer free perovskite...
In this work, a titanium oxide buffer layer was explored as a possible buffer electron transporting ...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
International audiencePerovskite materials are particularly appropriate for single-junction and tand...
Perovskite solar cells (PSCs) with transparent electrodes can be integrated with existing solar pane...
In order to achieve semi-transparency in perovskite solar cells, the electrode materials must be as ...
Perovskite solar cells (PSCs) with transparent electrodes can be integrated with existing solar pane...
Perovskite materials are particularly appropriate for single-junction and tandem solar cells, for wh...
Materials and processing of transparent electrodes (TEs) are key factors to creating high-performanc...
Thin (approximately 10 nm) oxide buffer layers grown over lead-halide perovskite device stacks are c...
Transition metal oxides (TMOs) are commonly used in a wide spectrum of device applications, thanks t...
International audienceThin (approximately 10 nm) oxide buffer layers grown over lead-halide perovski...
Thin (approximately 10 nm) oxide buffer layers grown over lead-halide perovskite device stacks are c...
Corrosive precursors used for the preparation of organic inorganic hybrid perovskite photoactive lay...
The effect of transparent conductive oxide (TCO) on the performance of compact-layer free perovskite...
In this work, a titanium oxide buffer layer was explored as a possible buffer electron transporting ...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
The development of high efficiency semitransparent perovskite solar cells is necessary for applicati...
International audiencePerovskite materials are particularly appropriate for single-junction and tand...
Perovskite solar cells (PSCs) with transparent electrodes can be integrated with existing solar pane...
In order to achieve semi-transparency in perovskite solar cells, the electrode materials must be as ...
Perovskite solar cells (PSCs) with transparent electrodes can be integrated with existing solar pane...
Perovskite materials are particularly appropriate for single-junction and tandem solar cells, for wh...
Materials and processing of transparent electrodes (TEs) are key factors to creating high-performanc...
Thin (approximately 10 nm) oxide buffer layers grown over lead-halide perovskite device stacks are c...
Transition metal oxides (TMOs) are commonly used in a wide spectrum of device applications, thanks t...
International audienceThin (approximately 10 nm) oxide buffer layers grown over lead-halide perovski...
Thin (approximately 10 nm) oxide buffer layers grown over lead-halide perovskite device stacks are c...
Corrosive precursors used for the preparation of organic inorganic hybrid perovskite photoactive lay...
The effect of transparent conductive oxide (TCO) on the performance of compact-layer free perovskite...
In this work, a titanium oxide buffer layer was explored as a possible buffer electron transporting ...