The tin sulfides SnS, Sn2S3, and SnS2 are investigated for a wide variety of applications such as photovoltaics, thermoelectrics, two-dimensional electronic devices, Li ion battery electrodes, and photocatalysts. For these applications, native point defects play important roles, but only those of SnS have been investigated theoretically in the literature. In this study, we consider the band structures, band-edge positions, and thermodynamical stability of the tin sulfides using a density functional that accounts for van der Waals corrections and the GW0 approximation. We revisit the point-defect properties, namely, electronic and atomic structures and energetics of defects, in SnS and newly examine those in SnS2 and Sn2S3 with a comparison ...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Theoretical investigations were made into the band gap, band structure and optical properties of tin...
Tin sulfide is being widely investigated as an earth-abundant light harvesting material, but recorde...
peer reviewedTin sulfide is being widely investigated as an earth-abundant light harvesting material...
Tin sulfide is being widely investigated as an earth-abundant light harvesting material, but recorde...
Tin sulfide solar cells show relatively poor efficiencies despite attractive photovoltaic properties...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
The various phases of tin sulfide have been studied as semiconductors since the 1960s and are now be...
The tin sulfides represent a materials platform for earth-abundant semiconductor technologies. We pr...
Binary tin sulfides, such as SnS and SnS2, are appealing because of their simple stoichiometry and s...
Layered tin sulfide semiconductors are both of fundamental interest and attractive for energy conver...
Layered tin sulfide semiconductors are both of fundamental interest and attractive for energy conver...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Theoretical investigations were made into the band gap, band structure and optical properties of tin...
Tin sulfide is being widely investigated as an earth-abundant light harvesting material, but recorde...
peer reviewedTin sulfide is being widely investigated as an earth-abundant light harvesting material...
Tin sulfide is being widely investigated as an earth-abundant light harvesting material, but recorde...
Tin sulfide solar cells show relatively poor efficiencies despite attractive photovoltaic properties...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
The various phases of tin sulfide have been studied as semiconductors since the 1960s and are now be...
The tin sulfides represent a materials platform for earth-abundant semiconductor technologies. We pr...
Binary tin sulfides, such as SnS and SnS2, are appealing because of their simple stoichiometry and s...
Layered tin sulfide semiconductors are both of fundamental interest and attractive for energy conver...
Layered tin sulfide semiconductors are both of fundamental interest and attractive for energy conver...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Tin disulfide is attractive as a potential visible-light photocatalyst because its elemental compone...
Theoretical investigations were made into the band gap, band structure and optical properties of tin...