Accelerated Photocatalytic Degradation Of Tetracycline Hydrochloride Over Cual2o4/G-C3n4 P-N Heterojunctions Under Visible Light Irradiation

Wei Chen,Jian Huang,Zhi-Cai He, Xiong Ji,Yun-Fei Zhang, Hua-Li Sun,Kai Wang, Zheng-Wei Su

SEPARATION AND PURIFICATION TECHNOLOGY(2021)

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摘要
In current study, the CuAl2O4/g-C3N4 p-n heterojunctions were synthesized by a self-assembly route in isopropanol, in which a tight loading structure achieved by immobilizing the p-type CuAl2O4 nanoplates on the n-type g-C3N4 nanosheets was established and verified by morphological and microstructural observations. The catalytic activity of the resultant p-n heterojunctions was examined for the photodegradation of tetracycline hydrochloride (TCH) under illumination of visible light. The results indicate that the p-n heterojunctions containing 10 wt% CuAl2O4 (10 wt% CuAl2O4/g-C3N4) showed the maximum activity and high structural stability although after multiple cycles. Photocatalytic experiments with the addition of trapping agents and spin-trapping electron paramagnetic resonance (EPR) analysis clearly revealed that the photocatalytic TCH degradation in these p-n heterojunctions mainly proceeds via superoxide radicals (radical dotO(2)(-)) and photogenerated holes (h(+)). The significant enhancement of photocatalytic activity is attributed to the construction of abundant p-n heterojunctions, which effectively accelerate the separation of charge pairs, and thereby improve the catalytic activity towards TCH photodegradation.
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关键词
CuAl2O4, g-C3N4, p-n heterojunctions, Photodegradation
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