| Literature DB >> 26490265 |
Yunfeng Li1, Kai Li2, Yang Yang1, Leijiao Li2, Yan Xing3, Shuyan Song2, Rongchao Jin4, Mei Li5.
Abstract
The photocatalytic activity of graphite-like carbon nitride (g-C3 N4 ) could be enhanced by heterojunction strategies through increasing the charge-separation efficiency. As a surface-based process, the heterogeneous photocatalytic process would become more efficient if a larger contact region existed in the heterojunction interface. In this work, ultrathin g-C3 N4 nanosheets (g-C3 N4 -NS) with much larger specific surface areas are employed instead of bulk g-C3 N4 (g-C3 N4 -B) to prepare AgIO3 /g-C3 N4 -NS nanocomposite photocatalysts. By taking advantage of this feature, the as-prepared composites exhibit remarkable performances for photocatalytic wastewater treatment under visible-light irradiation. Notably, the optimum photocatalytic activity of AgIO3 /g-C3 N4 -NS composites is almost 80.59 and 55.09 times higher than that of pure g-C3 N4 -B towards the degradation of rhodamine B and methyl orange pollutants, respectively. Finally, the stability and possible photocatalytic mechanism of the AgIO3 /g-C3 N4 -NS system are also investigated.Entities:
Keywords: carbon; dyes/pigments; photochemistry; semiconductors; surface chemistry
Year: 2015 PMID: 26490265 DOI: 10.1002/chem.201502945
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236