Facile Green Synthesis of BiOBr Nanostructures with Superior Visible-Light-Driven Photocatalytic Activity

被引:41
作者
Garg, Seema [1 ]
Yadav, Mohit [1 ,2 ]
Chandra, Amrish [3 ]
Sapra, Sameer [4 ]
Gahlawat, Soniya [4 ]
Ingole, Pravin P. [4 ]
Todea, Milica [5 ,6 ]
Bardos, Eniko [7 ]
Pap, Zsolt [5 ,8 ]
Hernadi, Klara [7 ]
机构
[1] Amity Univ, Amity Inst Appl Sci, Dept Chem, Sect 125, Noida 201313, Uttar Pradesh, India
[2] Amity Univ, Amity Inst Nanotechnol, Sect 125, Noida 201313, Uttar Pradesh, India
[3] Amity Univ, Amity Inst Pharm, Sect 125, Noida 201313, Uttar Pradesh, India
[4] Indian Inst Chem Technol, Dept Chem, New Delhi 110016, India
[5] Babes Bolyai Univ, Interdisciplinary Res Inst Bionanosci, Nanostruct Mat & Bionanointerfaces Ctr, Cluj Napoca 400271, Romania
[6] Iuliu Hatieganu Univ Med & Pharm, Fac Med, Dept Mol Sci, Cluj Napoca 400012, Romania
[7] Univ Szeged, Dept Appl & Environm Chem, Rerrich Ter 1, H-6720 Szeged, Hungary
[8] Univ Szeged, Inst Environm Sci & Technol, Tisza Lajos Krt 103, H-6720 Szeged, Hungary
关键词
bismuth oxybromide; phenol; methyl orange; photocatalysis; hydrolysis; ZINC-OXIDE NANOPARTICLES; SILVER NANOPARTICLES; AZADIRACHTA-INDICA; LEAF EXTRACT; HYDROTHERMAL SYNTHESIS; MECHANISM INSIGHT; AQUEOUS-SOLUTION; IONIC LIQUID; DEGRADATION; MICROSPHERES;
D O I
10.3390/ma11081273
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
Novel green bismuth oxybromide (BiOBr-G) nanoflowers were successfully synthesized via facile hydrolysis route using an Azadirachta indica (Neem plant) leaf extract and concurrently, without the leaf extract (BiOBr-C). The Azadirachta indica leaf extract was employed as a sensitizer and stabilizer for BiOBr-G, which significantly expanded the optical window and boosted the formation of photogenerated charge carriers and transfer over the BiOBr-G surface. The photocatalytic performance of both samples was investigated for the degradation of methyl orange (MO) and phenol (Ph) under the irradiation of visible light. The leaf extract mediated BiOBr-G photocatalyst displayed significantly higher photocatalytic activity when compared to BiOBr-C for the degradation of both pollutants. The degradation rate of MO and Ph by BiOBr-G was found to be nearly 23% and 16% more when compared to BiOBr-C under visible light irradiation, respectively. The substantial increase in the photocatalytic performance of BiOBr-G was ascribed to the multiple synergistic effects between the efficient solar energy harvesting, narrower band gap, high specific surface area, porosity, and effective charge separation. Furthermore, BiOBr-G displayed high stability for five cycles of photocatalytic activity, which endows its practical application as a green photocatalyst in the long run.
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页数:17
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