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The Ternary Heterostructures of BiOBr/Ultrathin g-C₃N₄/Black Phosphorous Quantum Dot Composites for Photodegradation of Tetracycline.

Tianhao JiangChaoqun ShangQingguo MengMingliang JinHua LiaoMing LiZhihong ChenMingzhe YuanXin WangGuofu Zhou
Published in: Polymers (2018)
Herein, we synthesized BiOBr/ultrathin g-C₃N₄/ternary heterostructures modified with black phosphorous quantum dots using a simple water bath heating and sonication method. The ternary heterostructure was then used for the photocatalytic degradation of tetracycline in visible light, with an efficiency as high as 92% after 3 h of irradiation. Thus, the photodegradation efficiency is greatly improved compared to that of ultrathin g-C₃N₄, BiOBr, and black phosphorous quantum dots alone. The synthesized ternary heterostructure improves the charge separation efficiency, thus increasing the photodegradation efficiency. This work provides a new and efficient method for the degradation of antibiotics in the environment.
Keyphrases
  • visible light
  • quantum dots
  • high efficiency
  • sensitive detection
  • room temperature
  • liquid chromatography
  • ionic liquid