Sb2Se3 is a typical V2VI3 binary chalcogenide compound characterized by a single crystalline phase and a fixed composition. Sb2Se3 displays a narrow energy gap ranging from 1.1 to 1.3 eV, which are quite optimal values for single-junction solar cells. Earth-abundant and non-toxic components make this material a good candidate for low-cost thin-film solar cells. In substrate configuration, a world record efficiency of 9.2% was recently obtained. Sb2Se3 thin films exhibit an accentuated predisposition to form (Sb4Se6)n ribbons along the [001] direction. This anisotropy heavily influences the charge transport of the photogenerated carriers. In this work, structural characterization of the Sb2Se3 films showed that the crystalline quality and pr...
International audienceAn easy method of preparing well-crystallized Sb2Se3 films and nanorods throug...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
In this work we present a method to grow Sb2Se3 thin films with a potential use as absorber layers i...
Sb2Se3, one of the most desirable absorption materials for next-generation thin-film solar cells, ha...
International audienceSb(2)Se(3), one of the most desirable absorption materials for next-generation...
Antimony selenide (Sb2Se3) is a p-type semiconductor, considered as an excellent photovoltaic absorb...
Antimony selenide (Sb2Se3) is today one of the most promising alternative materials for p-type absor...
Solar cells based on inorganic absorbers, such as Si, GaAs, CdTe and Cu(In,Ga)Se2, permit a high dev...
International audienceAntimony selenide (Sb2Se3) is a potential absorber material for environment-fr...
International audienceAntimony sulphide (Sb2S3) as an environment-friendly and cost-efficiently phot...
This work has been published in Solar Energy Materials & Solar Cells 215 (2020) 110603 (DOI: 10.1016...
Sb2Se3 is a quasi-one-dimensional (1D) semiconductor, which has shown great promise in photovoltaics...
Sb2Se3, (ASe) thin-films were deposited as the absorber layers in photovoltaic solar cells using the...
International audienceSputtering followed by post annealing is extensively used for fabrication of c...
International audienceAntimony selenide (Sb(2) Se(3) ) is an ideal photovoltaic candidate profiting ...
International audienceAn easy method of preparing well-crystallized Sb2Se3 films and nanorods throug...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
In this work we present a method to grow Sb2Se3 thin films with a potential use as absorber layers i...
Sb2Se3, one of the most desirable absorption materials for next-generation thin-film solar cells, ha...
International audienceSb(2)Se(3), one of the most desirable absorption materials for next-generation...
Antimony selenide (Sb2Se3) is a p-type semiconductor, considered as an excellent photovoltaic absorb...
Antimony selenide (Sb2Se3) is today one of the most promising alternative materials for p-type absor...
Solar cells based on inorganic absorbers, such as Si, GaAs, CdTe and Cu(In,Ga)Se2, permit a high dev...
International audienceAntimony selenide (Sb2Se3) is a potential absorber material for environment-fr...
International audienceAntimony sulphide (Sb2S3) as an environment-friendly and cost-efficiently phot...
This work has been published in Solar Energy Materials & Solar Cells 215 (2020) 110603 (DOI: 10.1016...
Sb2Se3 is a quasi-one-dimensional (1D) semiconductor, which has shown great promise in photovoltaics...
Sb2Se3, (ASe) thin-films were deposited as the absorber layers in photovoltaic solar cells using the...
International audienceSputtering followed by post annealing is extensively used for fabrication of c...
International audienceAntimony selenide (Sb(2) Se(3) ) is an ideal photovoltaic candidate profiting ...
International audienceAn easy method of preparing well-crystallized Sb2Se3 films and nanorods throug...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
In this work we present a method to grow Sb2Se3 thin films with a potential use as absorber layers i...