Abstract:
As one kind of typical polymer semiconductor, g-C
3N
4 is a promising photocatalyst material with excellent thermal and chemical stability. In this paper, Bi
2S
3/g-C
3N
4 composite catalysts were prepared by hydrothermal method. The composition, morphology, structure and properties of the sample were characterized by XRD, SEM, TEM, UV-Vis and FS, respectively. The catalytic properties of Bi
2S
3/g-C
3N
4 composites were evaluated through degradation of methyl orange(MO) under the condition of simulating solar light. The results showed that the heterojunction structure of the composite catalyst significantly enhanced the photocatalytic performance of g-C
3N
4. The decomposition rate of MO by Bi
2S
3/g-C
3N
4 composite photocatalyst for 3 h was far higher than that of pure Bi
2S
3 and g-C
3N
4, which was 8.9% and 38.6%, respectively, with the highest value of 97.4% when the mass fraction of Bi
2S
3 reached 50%. The mechanism of Bi
2S
3/g-C
3N
4 composites with enhanced photocatalytic activity was studied. The addition of Bi
2S
3 significantly expanded the light absorption range of g-C
3N
4 and the construction of heterojunction with g-C
3N
4, which could promote the effective separation of photogenerated carriers and extend the carrier life, thus improving the photocatalytic performance of Bi
2S
3/g-C
3N
4 composite catalysts.