SnS thin films were grown on glass substrates by a simple route named successive ion layer adsorption and reaction (SILAR) method. The films were prepared using tin chloride as tin (Sn) source and ammonium sulfide as sulphur (S) source. The structural, optical and morphological study was done using XRD, FESEM, FT-IR and UV-Vis spectrophotometer. XRD measurement confirmed the presence of orthorhombic phase. Particle size estimated from XRD was about 45 nm which fitted well with the FESEM measurement. The value of band gap was about 1.63 eV indicating that SnS can be used as an important material for thin film solar cells. The surface morphology showed a smooth, homogenous film over the substrate. Characteristic stretching vibration mode of S...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...
[EN] The preparation and analysis of morphological, structural, optical, vibrational and composition...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
Thin films of tin sulphide (SnS) have been grown by sulphurization of sputtered tin precursor layers...
Thin films of tin sulphide $(Sn_xS_y)$ have been deposited on antimony-doped tin oxide-coated glass ...
Thin films of tin disulfide (SnS2) have been deposited by using low cost successive ionic layer adso...
SnS is of interest for use as an absorber layer and the wider energy bandgap phases e.g. SnS2, Sn2S3...
SnS (tin sulphide) is of interest for use as an absorber layer and the wider energy bandgap phases e...
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...
696-700Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) t...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...
[EN] The preparation and analysis of morphological, structural, optical, vibrational and composition...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
Thin films of tin sulphide (SnS) have been grown by sulphurization of sputtered tin precursor layers...
Thin films of tin sulphide $(Sn_xS_y)$ have been deposited on antimony-doped tin oxide-coated glass ...
Thin films of tin disulfide (SnS2) have been deposited by using low cost successive ionic layer adso...
SnS is of interest for use as an absorber layer and the wider energy bandgap phases e.g. SnS2, Sn2S3...
SnS (tin sulphide) is of interest for use as an absorber layer and the wider energy bandgap phases e...
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...
696-700Thermal evaporation technique was used to fabricate the nanocrystalline tin sulphide (SbS) t...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
The composition, structural, electrical, and optical properties of as-grown and heat treated tin-mon...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...