Abstract Antimony selenide (Sb2Se3) is a promising absorber material for thin-film photovoltaics. However, certain areas of fundamental understanding of this material remain incomplete and this presents a barrier to further efficiency gains. In particular, recent studies have highlighted the role of majority carrier type and extrinsic doping in drastically changing the performance of high efficiency devices (Hobson et al 2020 Chem. Mater. 32 2621–30). Herein, Sn-doped Sb2Se3 bulk crystals are shown to exhibit p-type conductivity using Hall effect and hot-probe measurements. The measured conductivities are higher than those achieved through native defects alone, but with a carrier density (up to 7.4 × 1014 c...
As an absorber in photovoltaic devices, Sb2Se3 has rapidly achieved impressive power conversion effi...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
Antimony selenide (Sb2Se3) is a promising absorber material for thin-film photovoltaics. However, c...
In a context of global ecological concerns, renewable solar energies are an attractive and promising...
Antimony selenide (Sb2Se3) has drawn tremendous research attentions in recent years as an environmen...
International audienceHerein we report a thorough investigation on Sb 2 Se 3, a promising absorber m...
Antimony selenide (Sb2Se3) has gained promising attention as an inorganic absorber in thin-film phot...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
A study on the electronic conduction mechanisms and electrically active defects in polycrystalline S...
Tin selenide (SnSe) is considered a robust candidate for thermoelectric applications due to its very...
The carrier-type of the emerging photovoltaic Sb2Se3 was evaluated for both thin films and bulk crys...
The candidate photovoltaic absorber antimony selenide Sb2Se3 has been prepared by the commercially a...
Antimony sulphide (Sb$_2$S$_3$) is an Earth-abundant and non-toxic material that is under investigat...
As an absorber in photovoltaic devices, Sb2Se3 has rapidly achieved impressive power conversion effi...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...
Antimony selenide (Sb2Se3) is a promising absorber material for thin-film photovoltaics. However, c...
In a context of global ecological concerns, renewable solar energies are an attractive and promising...
Antimony selenide (Sb2Se3) has drawn tremendous research attentions in recent years as an environmen...
International audienceHerein we report a thorough investigation on Sb 2 Se 3, a promising absorber m...
Antimony selenide (Sb2Se3) has gained promising attention as an inorganic absorber in thin-film phot...
CCBY Antimony selenide (Sb$_2$Se$_3$) is an emerging chalcogenide photovoltaic absorber material tha...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
A study on the electronic conduction mechanisms and electrically active defects in polycrystalline S...
Tin selenide (SnSe) is considered a robust candidate for thermoelectric applications due to its very...
The carrier-type of the emerging photovoltaic Sb2Se3 was evaluated for both thin films and bulk crys...
The candidate photovoltaic absorber antimony selenide Sb2Se3 has been prepared by the commercially a...
Antimony sulphide (Sb$_2$S$_3$) is an Earth-abundant and non-toxic material that is under investigat...
As an absorber in photovoltaic devices, Sb2Se3 has rapidly achieved impressive power conversion effi...
Antimony selenide (Sb 2 Se 3 ) is an emerging chalcogenide photovoltaic absorber material that has b...
The recent surge of interest in tin selenide (SnSe) is due to the reported record-high thermoelectri...