Visible-light driven of heterostructured LaFeO3/TiO2 photocatalysts for degradation of antibiotics: Ciprofloxacin as case study

被引:24
|
作者
Tashkandi, Nada Y. [1 ]
Albukhari, Soha M. [1 ]
Ismail, Adel A. [2 ]
机构
[1] King Abdulaziz Univ, Fac Sci, Dept Chem, POB 80203, Jeddah 21589, Saudi Arabia
[2] Kuwait Inst Sci Res KISR, Energy & Bldg Res Ctr, Nanotechnol & Adv Mat Program, POB 24885, Safat 13109, Kuwait
关键词
Porous; LaFeO3/TiO2; Photocatalyst; Decontamination; Ciprofloxacin; Visible illumination; MALACHITE GREEN-DYE; FACILE SYNTHESIS; NANOPARTICLES; HETEROJUNCTION; NANOCOMPOSITES; PHOTODEGRADATION; PHOTOREDUCTION; CONSTRUCTION; PERFORMANCE; CATALYSTS;
D O I
10.1016/j.jphotochem.2022.114078
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this contribution, a favorable strategy to construct highly effective porous LaFeO3/TiO(2 )photocatalysts has been developed to decontaminate Ciprofloxacin (CIP) in water under visible illumination. Pluronic L-64 surfactant was utilized for synthesizing mesoporous TiO(2 )nanocrystalline, and then LaFeO3 at diverse contents has been impregnated on the TiO2 surface. The complete CIP degradation over 3% LaFeO3/TiO2 nanocomposite was determined to be around 100% within 90 min. The photocatalytic efficency of LaFeO3/TiO2 nanocomposite was promoted 20 folds larger than the TiO2 NPs. The rate constant of the 3%LaFeO3/TiO2 nanocomposite (1.58 x 10(-2) min(-1)) was found to be about 31.6 folds higher than TiO2 NPs (0.05 x 10(-2) min(-1)). This was imputed to the superb synergistic effect between LaFeO3 and TiO2 and their magnificent photocatalysis stability. The capability of charge carriers mobility in porous LaFeO3/TiO2 photocatalysts was verified by photoelectrochemical and photoluminescence responses. The improved photocatalytic performance of LaFeO3/TiO2 nanocomposite was significantly interpreted as the formation of 2D mesoporous LaFeO3/TiO2 heterojunction, which boosted the mobility and separation of photoinduced charges. This study provides a practicable avenue to design and construct highly active TiO2-based nanomaterials under visible illumination.
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页数:9
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