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Bi2S3/g-C3N4復合異質結的製備及催化性能

Preparation and photocatalytic property of Bi2S3/g-C3N4 heterojunction composite catalyst

  • 摘要: g-C3N4是一種典型的聚合物半導體,具有優異的熱穩定性、化學穩定性,頗具催化應用前景。采用水熱法製備了Bi2S3/g-C3N4異質結復合材料,通過XRD、SEM、TEM、UV-Vis、FS等手段對樣品的組成、形貌、結構和性能進行了表征分析,並模擬了可見光條件下,以甲基橙為降解對象時復合材料的催化性能。結果表明,復合催化劑的異質結結構顯著提高了g-C3N4的光催化性能:光照3 h時,Bi2S3/g-C3N4復合材料(Bi2S3質量分數達到50%)對甲基橙的降解率達到了97.4%,遠超Bi2S3的8.9%與g-C3N4的38.6%。對Bi2S3/g-C3N4催化機理進行了研究:Bi2S3的加入拓寬了g-C3N4的光吸收範圍,與g-C3N4的異質結結構使光生電子-空穴對的分離效率得到了進一步提高,並延長了光生載流子的壽命,進而提高了g-C3N4的光催化性能。

     

    Abstract: As one kind of typical polymer semiconductor, g-C3N4 is a promising photocatalyst material with excellent thermal and chemical stability. In this paper, Bi2S3/g-C3N4 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 Bi2S3/g-C3N4 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-C3N4. The decomposition rate of MO by Bi2S3/g-C3N4 composite photocatalyst for 3 h was far higher than that of pure Bi2S3 and g-C3N4, which was 8.9% and 38.6%, respectively, with the highest value of 97.4% when the mass fraction of Bi2S3 reached 50%. The mechanism of Bi2S3/g-C3N4 composites with enhanced photocatalytic activity was studied. The addition of Bi2S3 significantly expanded the light absorption range of g-C3N4 and the construction of heterojunction with g-C3N4, which could promote the effective separation of photogenerated carriers and extend the carrier life, thus improving the photocatalytic performance of Bi2S3/g-C3N4 composite catalysts.

     

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