Antimony selenide (Sb2Se3) material has drawn considerable attention as an Earth-abundant and non-toxic photovoltaic absorber. The power conversion efficiency of Sb2Se3-based solar cells increased from less than 2% to over 10% in a decade. Different deposition methods were implemented to synthesize Sb2Se3 thin films, and various device structures were tested. In search of a more environmentally friendly device composition, the common CdS buffer layer is being replaced with oxides. It was identified that on oxide substrates such as TiO2 using vacuum-based close-space deposition methods, an intermediate deposition step was required to produce high-quality thin films. However, little or no investigation was carried out using another very succe...
Copper-doped antimony selenide (Cu-doped Sb2Se3) thin films were deposited as absorber layers in pho...
Sputtering followed by post annealing is extensively used for fabrication of copper indium gallium s...
Antimony selenide (Sb2Se3) is today one of the most promising alternative materials for p-type absor...
International audienceAntimony selenide (Sb2Se3) is a potential absorber material for environment-fr...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
In the presented work, Antimony selenide (Sb2Se3) thin films with varying thickness (1000, 700 and 5...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
International audienceAntimony selenide (Sb(2) Se(3) ) is an ideal photovoltaic candidate profiting ...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
Sb2Se3 is a promising alternative absorber material for thin-film solar cells. However, by a thermal...
Sb<sub>2</sub>Se<sub>3</sub> thin films are proposed as an alternative light harvester for semicondu...
Earth-abundancy, nontoxic constituent, along with excellent stability and optoelectronic properties ...
We report a high efficiency antimony selenide (Sb2Se3) photovoltaic device structure using a new mul...
Knowledge of close-space sublimation (CSS) Sb 2 Se 3 growth conditions is vital for proper understan...
International audienceThe performance of thermally deposited Sb2Se3 solar cells are severely limited...
Copper-doped antimony selenide (Cu-doped Sb2Se3) thin films were deposited as absorber layers in pho...
Sputtering followed by post annealing is extensively used for fabrication of copper indium gallium s...
Antimony selenide (Sb2Se3) is today one of the most promising alternative materials for p-type absor...
International audienceAntimony selenide (Sb2Se3) is a potential absorber material for environment-fr...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
In the presented work, Antimony selenide (Sb2Se3) thin films with varying thickness (1000, 700 and 5...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
International audienceAntimony selenide (Sb(2) Se(3) ) is an ideal photovoltaic candidate profiting ...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
Sb2Se3 is a promising alternative absorber material for thin-film solar cells. However, by a thermal...
Sb<sub>2</sub>Se<sub>3</sub> thin films are proposed as an alternative light harvester for semicondu...
Earth-abundancy, nontoxic constituent, along with excellent stability and optoelectronic properties ...
We report a high efficiency antimony selenide (Sb2Se3) photovoltaic device structure using a new mul...
Knowledge of close-space sublimation (CSS) Sb 2 Se 3 growth conditions is vital for proper understan...
International audienceThe performance of thermally deposited Sb2Se3 solar cells are severely limited...
Copper-doped antimony selenide (Cu-doped Sb2Se3) thin films were deposited as absorber layers in pho...
Sputtering followed by post annealing is extensively used for fabrication of copper indium gallium s...
Antimony selenide (Sb2Se3) is today one of the most promising alternative materials for p-type absor...