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Fabrication of SnS nanowalls via pulsed plasma-enhanced chemical vapor deposition using a metal–organic single-source precursor

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Vaporization of the solid bis(diethyldithiocarbamato)tin(ii) into pulsed RF plasma leads to the growth of crystalline, highly conductive SnS nanowalls. Click to show full abstract

Vaporization of the solid bis(diethyldithiocarbamato)tin(ii) into pulsed RF plasma leads to the growth of crystalline, highly conductive SnS nanowalls.

Keywords: nanowalls via; sns nanowalls; pulsed plasma; fabrication sns; via pulsed

Journal Title: Journal of Materials Chemistry C
Year Published: 2019

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