The BiOCI thin film with flower-like sphere structure was prepared at a low temperature by the alcoholysis-coating method using BiC13 as precursor. The obtained thin film was characterized by X-ray diffraction (XRD)...The BiOCI thin film with flower-like sphere structure was prepared at a low temperature by the alcoholysis-coating method using BiC13 as precursor. The obtained thin film was characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), electronic energy spectrum (EDS) and ultraviolet-visible diffuse reflectance spectroscopy (UV-vis DRS). And the re- suits showed that the obtained BiOC1 film without calcination was composed of flower-like sphere structure with tetragonal phase and had a good absorption for ultraviolet. The photocatalytic activity of BiOC1 thin film was also evaluated by the deg- radation of methyl orange in water under UV light irradiation. The degradation experimental results confirmed that the film prepared at low temperature possessed a high photocatalytic activity and could achieve 97% degradation to 10 mg/L methyl orange solution after 150 min UV light irradiation. The stability of the obtained BLOC1 thin film was also good and its photo- catalytic activity still remained an above 94% removal of methyl orange after being used four times. In addition, a possible formation mechanism of BiOCI thin film was also inferred and the results suggested that the ethylene glycol solvent may con- tribute to the forming flower-like sphere structure.展开更多
基金financially supported by the National Natural Science Foundation of China (20876104, 21176168)by the Science and Technology Foundation of Shanxi Province, China (20090311082)
文摘The BiOCI thin film with flower-like sphere structure was prepared at a low temperature by the alcoholysis-coating method using BiC13 as precursor. The obtained thin film was characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), electronic energy spectrum (EDS) and ultraviolet-visible diffuse reflectance spectroscopy (UV-vis DRS). And the re- suits showed that the obtained BiOC1 film without calcination was composed of flower-like sphere structure with tetragonal phase and had a good absorption for ultraviolet. The photocatalytic activity of BiOC1 thin film was also evaluated by the deg- radation of methyl orange in water under UV light irradiation. The degradation experimental results confirmed that the film prepared at low temperature possessed a high photocatalytic activity and could achieve 97% degradation to 10 mg/L methyl orange solution after 150 min UV light irradiation. The stability of the obtained BLOC1 thin film was also good and its photo- catalytic activity still remained an above 94% removal of methyl orange after being used four times. In addition, a possible formation mechanism of BiOCI thin film was also inferred and the results suggested that the ethylene glycol solvent may con- tribute to the forming flower-like sphere structure.