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The effective photocatalysis and antibacterial properties of AgBr/AgVO3 composites under visible-light

机译:AgBr / AgVO3复合材料在可见光下的有效光催化和抗菌性能

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With the discharge of large amount of organic pollutants and antibiotics into the water environment, the water cycle has been seriously polluted, and at the same time, various drug-resistant bacteria have emerged in succession, which poses a serious threat to human health. In recent years, photocatalytic nanomaterials have become a research hotspot in the antimicrobial area. In this study, AgBr/AgVO _(3) photocatalysts were prepared by a hydrothermal process and an in situ growth method. The composites were tightly connected by the (501) plane of AgVO _(3) and the (200) lattice plane of AgBr. The photocatalytic activity was tested by degrading Rhodamine B (RhB) solution under visible-light, and the result indicated that the photodegradation rate for RhB solution was 92.3% by the photocatalysis with 0.5AgBr/AgVO _(3) and the photocatalytic performance of 0.5AgBr/AgVO _(3) was improved compared to pure AgVO _(3) and AgBr. In addition, more than 99.997% of E. coli , S. aureus , and P. aeruginosa cells were killed by the photocatalysis with 0.5AgBr/AgVO _(3) within 30 min. These results demonstrated that the 0.5AgBr/AgVO _(3) heterojunction photocatalyst could be widely used in the treatment of environmental pollution and in the antibacterial field.
机译:随着大量有机污染物和抗生素向水环境中的排放,水循环受到严重污染,同时,各种耐药菌相继出现,对人类健康构成了严重威胁。近年来,光催化纳米材料已成为抗菌领域的研究热点。在这项研究中,AgBr / AgVO_(3)光催化剂是通过水热法和原位生长方法制备的。复合材料通过AgVO _(3)的(501)平面和AgBr的(200)晶格平面紧密连接。通过在可见光下降解罗丹明B(RhB)溶液来测试其光催化活性,结果表明,用0.5AgBr / AgVO _(3)进行光催化,RhB溶液的光降解率为92.3%,光催化性能为0.5与纯AgVO_(3)和AgBr相比,AgBr / AgVO_(3)得到了改善。此外,在30分钟内用0.5AgBr / AgVO _(3)进行光催化杀死了超过99.997%的大肠杆菌,金黄色葡萄球菌和铜绿假单胞菌细胞。这些结果表明0.5AgBr / AgVO_(3)异质结光催化剂可广泛用于环境污染的处理和抗菌领域。

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