Construction of oxygen vacancy-rich MoO3-x and NiFe-LDH p-n heterojunction for enhanced carrier separation to promote photoelectrochemical oxidation of pollutants and hydrogen precipitation

被引:7
|
作者
Yu, Jiuheng [1 ]
Cong, Sumin [1 ]
Song, Yanhua [1 ]
Teng, Wei [1 ]
机构
[1] Jiangsu Univ Sci & Technol, Dept Environm & Chem Engn, Zhenjiang 212003, Peoples R China
基金
中国国家自然科学基金;
关键词
Photoelectrochemical; P-n heterojunction; Tetracycline degradation; E. coli disinfection; H2; evolution; VISIBLE-LIGHT PHOTOCATALYSIS; REDUCTION; NANOSHEETS; ELECTROCATALYST; PERFORMANCE; SALMONELLA; ARRAYS;
D O I
10.1016/j.apsusc.2023.158852
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 work, a novel portable photoanode consisting of MoO3-x/NiFe@NF with excellent photoelectrochemical (PEC) performance and multifunctional applications was synthesized using a simple hydrothermal and electro-deposition method. In a visible-light-driven PEC system, the photoanode was able to simultaneously promote the degradation of tetracycline and the generation of hydrogen. The degradation efficiency of MoO3-x/NiFe@NF for TC (20 mg/L) was up to 99.9 %. The production of hydrogen (H2) at the cathode could be at most 32.07 mu mol cm-2 within 100 min. In addition, the MoO3-x/NiFe@NF photoanode exhibited a positive bactericidal effect against Gram-negative bacteria (E. coli) which could be completely removed within 20 min under the synergistic effect of visible light and voltage. The improved photoelectrocatalytic efficiency is attributed to the built-in electric field resulting from the formation of a p-n heterojunction between MoO3-x and NiFe-LDH. Under the excitation of visible light, the built-in electric field is able to promote the separation and transmission of the photogenerated carriers. A possible mechanism of MoO3-x/NiFe@NF p-n heterojunction was proposed and dis-cussed based on DRS, Mott-Schottky, UPS characterization and DFT theoretical calculations. Furthermore, the electrode's reusability and stability were evaluated through cycling experiments. This work provides a novel p-n heterojunction synthesis method with significant potential for wastewater treatment and future applications in ship ballast water treatment.
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页数:16
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