异质结
光催化
材料科学
化学工程
降级(电信)
热液循环
制作
反应速率常数
可见光谱
四环素
载流子
复合数
降水
光电子学
吸收(声学)
相(物质)
比表面积
电子转移
纳米技术
光化学
四环素类抗生素
水热合成
碱度
纳米颗粒
航程(航空)
催化作用
有效核电荷
表面电荷
作者
Ren Yan,Jing Zhang,Heping Yang,Tingting Pan,Jianmin Luo,Xiao Lin,Yanyan Zhao
摘要
ABSTRACT Antibiotic residues in aquatic systems have become a severe environmental issue. Herein, a novel visible‑light‑driven Bi 2 MoO 6 /BiOBr (BMO/BOB) S‑scheme heterojunction was successfully synthesized by hydrothermal in situ precipitation methods. The phase structure, morphology, surface chemistry, optical, and photoelectrochemical properties were systematically characterized. The optimized 7‑BMO/BOB composite exhibits excellent photocatalytic activity toward tetracycline (TC) degradation, with a removal efficiency of 92.8% within 50 min, which is much higher than those of pure Bi 2 MoO 6 (74.0%) and BiOBr (87.9%). The kinetic rate constant reaches 0.048 min − 1 , approximately 2.18 and 1.17 times that of Bi 2 MoO 6 and BiOBr, respectively. The improved photocatalytic activity of BMO/BOB S‑scheme heterojunction originates from the synergistic function of broadened visible light absorption range and accelerated charge separation efficiency. The S‐scheme charge transfer mechanism maintains the powerful reducing capacity of photogenerated electrons from BiOBr, as well as the strong oxidation property of holes derived from Bi 2 MoO 6 , thus generating abundant ·O 2 − , h + , e − and ·OH active species for TC degradation. This study provides a feasible strategy for designing efficient bismuth‑based S‑scheme photocatalysts for antibiotic wastewater treatment.
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