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  4. Combustion synthesis of cadmium sulphide nanomaterials for efficient visible light driven hydrogen production from water
 
research article

Combustion synthesis of cadmium sulphide nanomaterials for efficient visible light driven hydrogen production from water

Mani, A. Daya
•
Xanthopoulos, N.
•
Laub, Daniele  
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2014
Journal Of Chemical Sciences

Anion-doped cadmium sulphide nanomaterials have been synthesized by using combustion method at normal atmospheric conditions. Oxidant/fuel ratios have been optimized in order to obtain CdS with best characteristics. Formation of CdS and size of crystallite were identified by X-ray diffraction and confirmed by transmission electron microscopy. X-ray photoelectron spectroscopy confirmed the presence of C and N in the CdS matrix. The observed enhanced photocatalytic activity of the CdS nanomaterials for the hydrogen production from water (2120 mu mol/h) can be attributed to high crystallinity, low band gap and less exciton recombination due to the C and N doping.

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