SnS thin films were deposited on glasses through metal organic chemical vapor deposition (MOCVD) method at relatively mild conditions, using bis(3-mercapto-1-propanethiolato) tin(II) precursor without toxic H2S gas. The MOCVD process was carried out in the temperature range of 300-400 °C and the average grain size in fabricated SnS films was about 500 nm. The optical band gap of the SnS film was about 1.3 eV which is in optimal range for harvesting solar radiation energy. The precursor and SnS films were characterized through infrared spectroscopy, nuclear magnetic resonance spectroscopy, DIP-EI mass spectroscopy, elemental analyses, thermal analysis, X-ray diffraction, and field emission scanning electron microscopic analyses. Key Words: S...
Thin films of tin sulphide (SnS) have been grown by sulphurization of sputtered tin precursor layers...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
SnS thin films were deposited by an inline metal organic chemical vapour deposition process using te...
An inline metal organic chemical vapor deposition system was used to deposit tin sulfide at temperat...
Thin film tin sulphide (SnS) films were produced with grain sizes greater than 1 μm using a one-step...
Thin films of SnS have been produced by a novel two-stage process. This involved the deposition of t...
[EN] The preparation and analysis of morphological, structural, optical, vibrational and composition...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...
SnS thin films were grown on glass substrates by a simple route named successive ion layer adsorptio...
Currently, a wide range of semiconductors are explored for their potential use as absorbers in photo...
SnS (tin sulphide) is of interest for use as an absorber layer and the wider energy bandgap phases e...
Single-phase SnS thin films have been grown on soda-lime glass substrates based on the sulphurizatio...
A research on the deposition and Characterization of SnS Thin Films by Chemical Bath Deposition Tech...
Thin films of tin sulphide $(Sn_xS_y)$ have been deposited on antimony-doped tin oxide-coated glass ...
Thin films of tin sulphide (SnS) have been grown by sulphurization of sputtered tin precursor layers...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...
SnS thin films were deposited by an inline metal organic chemical vapour deposition process using te...
An inline metal organic chemical vapor deposition system was used to deposit tin sulfide at temperat...
Thin film tin sulphide (SnS) films were produced with grain sizes greater than 1 μm using a one-step...
Thin films of SnS have been produced by a novel two-stage process. This involved the deposition of t...
[EN] The preparation and analysis of morphological, structural, optical, vibrational and composition...
Tin(II) sulfide (SnS) is an earth-abundant, inexpensive, and non-toxic absorber material for thin fi...
SnS thin films were grown on glass substrates by a simple route named successive ion layer adsorptio...
Currently, a wide range of semiconductors are explored for their potential use as absorbers in photo...
SnS (tin sulphide) is of interest for use as an absorber layer and the wider energy bandgap phases e...
Single-phase SnS thin films have been grown on soda-lime glass substrates based on the sulphurizatio...
A research on the deposition and Characterization of SnS Thin Films by Chemical Bath Deposition Tech...
Thin films of tin sulphide $(Sn_xS_y)$ have been deposited on antimony-doped tin oxide-coated glass ...
Thin films of tin sulphide (SnS) have been grown by sulphurization of sputtered tin precursor layers...
Tin sulphide films have been grown by spray pyrolysis technique at different precursor concentration...
Polycrystalline SnS thin films were grown on glass substrates using a novel procedure involving a ch...