The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mono-sulfide (SnS) ultra-thin films have been studied. The ultra-thin SnS films were prepared on glass substrates by thermal resistive evaporation technique. All the SnS films contained nanocrystallites and exhibited p-type conductivity with a low Hall-mobility, <50 cm(2)/Vs. All these films are highly tin rich in nature and exhibited orthorhombic crystal structure. As compared to other films, the SnS films annealed at 300 degrees C showed a low electrical resistivity of similar to 36 Omega cm with an optical band gap of similar to 1.98 eV. The observed electrical and optical properties of all the films are discussed based on their composition a...
The effect of substrates on the physical properties of tin mono-sulphide (SnS) films has been studie...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
Tin sulphide (SnS) films have been grown by thermal evaporation onto glass substrates under differen...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
The SnS films were grown on glass substrates using the thermal evaporation technique at different su...
Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) thin film...
Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) thin film...
Thin film of tin monosulfide (SnS) is deposited onto glass substrates using chemical bath deposition...
Thin film of tin monosulfide (SnS) is deposited onto glass substrates using chemical bath deposition...
Thin film of tin monosulfide (SnS) is deposited onto glass substrates using chemical bath deposition...
696-700Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) t...
Tin (II) sulfide (SnS) thin films have been developed on highly conductive indium doped tin oxide (I...
Tin sulphide films were grown at different substrate temperatures by a thermal co-evaporation techni...
Tin (II) sulfide (SnS) thin films have been developed on highly conductive indium doped tin oxide (I...
The effect of substrates on the physical properties of tin mono-sulphide (SnS) films has been studie...
The effect of substrates on the physical properties of tin mono-sulphide (SnS) films has been studie...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
Tin sulphide (SnS) films have been grown by thermal evaporation onto glass substrates under differen...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
The SnS films were grown on glass substrates using the thermal evaporation technique at different su...
Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) thin film...
Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) thin film...
Thin film of tin monosulfide (SnS) is deposited onto glass substrates using chemical bath deposition...
Thin film of tin monosulfide (SnS) is deposited onto glass substrates using chemical bath deposition...
Thin film of tin monosulfide (SnS) is deposited onto glass substrates using chemical bath deposition...
696-700Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) t...
Tin (II) sulfide (SnS) thin films have been developed on highly conductive indium doped tin oxide (I...
Tin sulphide films were grown at different substrate temperatures by a thermal co-evaporation techni...
Tin (II) sulfide (SnS) thin films have been developed on highly conductive indium doped tin oxide (I...
The effect of substrates on the physical properties of tin mono-sulphide (SnS) films has been studie...
The effect of substrates on the physical properties of tin mono-sulphide (SnS) films has been studie...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
Tin sulphide (SnS) films have been grown by thermal evaporation onto glass substrates under differen...