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Carbon-doped SnS2 nanostructure as a high-efficiency solar fuel catalyst under visible light.


ABSTRACT: Photocatalytic formation of hydrocarbons using solar energy via artificial photosynthesis is a highly desirable renewable-energy source for replacing conventional fossil fuels. Using an L-cysteine-based hydrothermal process, here we synthesize a carbon-doped SnS2 (SnS2-C) metal dichalcogenide nanostructure, which exhibits a highly active and selective photocatalytic conversion of CO2 to hydrocarbons under visible-light. The interstitial carbon doping induced microstrain in the SnS2 lattice, resulting in different photophysical properties as compared with undoped SnS2. This SnS2-C photocatalyst significantly enhances the CO2 reduction activity under visible light, attaining a photochemical quantum efficiency of above 0.7%. The SnS2-C photocatalyst represents an important contribution towards high quantum efficiency artificial photosynthesis based on gas phase photocatalytic CO2 reduction under visible light, where the in situ carbon-doped SnS2 nanostructure improves the stability and the light harvesting and charge separation efficiency, and significantly enhances the photocatalytic activity.

SUBMITTER: Shown I 

PROVIDER: S-EPMC5766557 | biostudies-literature | 2018 Jan

REPOSITORIES: biostudies-literature

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Carbon-doped SnS<sub>2</sub> nanostructure as a high-efficiency solar fuel catalyst under visible light.

Shown Indrajit I   Samireddi Satyanarayana S   Chang Yu-Chung YC   Putikam Raghunath R   Chang Po-Han PH   Sabbah Amr A   Fu Fang-Yu FY   Chen Wei-Fu WF   Wu Chih-I CI   Yu Tsyr-Yan TY   Chung Po-Wen PW   Lin M C MC   Chen Li-Chyong LC   Chen Kuei-Hsien KH  

Nature communications 20180112 1


Photocatalytic formation of hydrocarbons using solar energy via artificial photosynthesis is a highly desirable renewable-energy source for replacing conventional fossil fuels. Using an L-cysteine-based hydrothermal process, here we synthesize a carbon-doped SnS<sub>2</sub> (SnS<sub>2</sub>-C) metal dichalcogenide nanostructure, which exhibits a highly active and selective photocatalytic conversion of CO<sub>2</sub> to hydrocarbons under visible-light. The interstitial carbon doping induced micr  ...[more]

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