Solvent influenced synthesis of single-phase SnS 2 nanosheets for solution-processed photodiode fabrication

The effect of variant high boiling point solvent combinations in the synthesis and photo-sensing characteristics of tin disulfide (SnS 2 ) thin nanosheets were investigated. Solvent dependent single-phase formation was observed by powder X-ray diffractometry (XRD), and results were verified with Ram...

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Veröffentlicht in:CrystEngComm 2020-01, Vol.22 (3), p.525-533
Hauptverfasser: Thangaraju, D., Marnadu, R., Santhana, V., Durairajan, A., Kathirvel, P., Chandrasekaran, J., Jayakumar, S., Valente, M. A., Greenidge, Darius C.
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Sprache:eng
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Zusammenfassung:The effect of variant high boiling point solvent combinations in the synthesis and photo-sensing characteristics of tin disulfide (SnS 2 ) thin nanosheets were investigated. Solvent dependent single-phase formation was observed by powder X-ray diffractometry (XRD), and results were verified with Raman spectroscopy measurements. Particles synthesized with only oleylamine show a mixed-phase, and two other solvent combinations such as oleylamine + oleic acid + n -octadecene, and oleylamine + oleic acid, show single-phase 2H–SnS 2 , without phase contamination. Scanning and transmission electron microscopes were used to verify the orbicular and hexagonal shape of synthesized SnS 2 nanosheets. Well-characterized samples were employed to fabricate heterojunction photosensitive diodes using a p-type silicon substrate. Light-responsive measurement results of fabricated diodes indicate that the oleylamine + oleic acid synthesized sample show very high light-sensitivity, and the fill factor value of a fabricated diode is closer to the ideal diode.
ISSN:1466-8033
1466-8033
DOI:10.1039/C9CE01417A