Construction of 3D sheet-packed hierarchical MoS2/BiOBr heterostructures with remarkably enhanced photocatalytic performance for tetracycline and levofloxacin degradation

In this paper, MoS 2 nanosheets were prepared and deposited on BiOBr microflowers through deposition-hydrothermal strategy. MoS 2 exhibited a string of nanosheets with wrinkled layer outlook, and MoS 2 /BiOBr composites displayed a micro-flower morphology with the diameter of 2-3 μm. Visible-light h...

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Veröffentlicht in:Environmental science and pollution research international 2023-05, Vol.30 (21), p.59737-59748
Hauptverfasser: Ma, Zhanying, Li, Xiaobo, Fan, Guang, Deng, Lingjuan, He, Yangqing
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Sprache:eng
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Zusammenfassung:In this paper, MoS 2 nanosheets were prepared and deposited on BiOBr microflowers through deposition-hydrothermal strategy. MoS 2 exhibited a string of nanosheets with wrinkled layer outlook, and MoS 2 /BiOBr composites displayed a micro-flower morphology with the diameter of 2-3 μm. Visible-light harvesting performance was significantly improved in the region of 400-600 nm for MoS 2 /BiOBr. The obtained MoS 2 /BiOBr samples exhibited tremendous enhanced catalytic activity, which could degrade 92.96% of tetracycline and 90.31% of levofloxacin within 70 min. The photo-generated holes and ⋅OH radicals played the dominant roles in the whole photocatalytic decomposition process. Based on the analysis of DRS, BET, PL, and electrochemical results, the remarkably improved photocatalytic performance may be ascribed to the synergistic effect of strong visible-light harvesting ability, enhanced BET surface area, and faster separation or transfer efficiency of photo-generated charges.
ISSN:1614-7499
0944-1344
1614-7499
DOI:10.1007/s11356-023-26740-9