首页> 外文期刊>Frontiers in Chemistry >Ag3VO4 Nanoparticles Decorated Bi2O2CO3 Micro-Flowers: An Efficient Visible-Light-Driven Photocatalyst for the Removal of Toxic Contaminants
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Ag3VO4 Nanoparticles Decorated Bi2O2CO3 Micro-Flowers: An Efficient Visible-Light-Driven Photocatalyst for the Removal of Toxic Contaminants

机译:Ag3VO4纳米颗粒装饰Bi2O2CO3微花:去除有毒污染物的高效可见光驱动光催化剂。

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Semiconductor-based photocatalysis is of great potential for tackling the environmental pollution. Herein, a novel hierarchical heterostructure of Bi2O2CO3 micro-flowers in-situ decorated with Ag3VO4 nanoparticles was developed by a facile method. Various characterization techniques have been employed to study the physical and chemical property of the novel catalyst. The novel catalyst was utilized for the photocatalytic removal of industrial dyes (rhodamine B, methyl orange) and tetracycline antibiotic under visible-light irradiation. The results indicated that Ag3VO4/Bi2O2CO3 heterojunctions showed a remarkably enhanced activity, significantly higher than those of bare Ag3VO4, Bi2O2CO3, and the physical mixture of Ag3VO4 and Bi2O2CO3 samples. This could be ascribed to an enhanced visible-light harvesting capacity and effective separation of charge carriers by virtue of the construction of hierarchical Ag3VO4/Bi2O2CO3 heterojunction. Moreover, Ag3VO4/Bi2O2CO3 also possesses an excellent cycling stability. The outstanding performance of Ag3VO4/Bi2O2CO3 in removal of toxic pollutants indicates the potential of Ag3VO4/Bi2O2CO3 in real environmental remediation.
机译:基于半导体的光催化在解决环境污染方面具有巨大潜力。在此,通过一种简便的方法,开发了一种新型的用Ag3VO4纳米粒子修饰的Bi2O2CO3微花原位装饰的分层异质结构。已经采用了各种表征技术来研究新型催化剂的物理和化学性质。该新型催化剂用于在可见光照射下光催化去除工业染料(若丹明B,甲基橙)和四环素抗生素。结果表明,Ag3VO4 / Bi2O2CO3异质结的活性显着增强,明显高于裸露的Ag3VO4,Bi2O2CO3以及Ag3VO4和Bi2O2CO3样品的物理混合物。这可以归因于借助于分级的Ag 3 VO 4 / Bi 2 O 2 CO 3异质结的构造,提高了可见光收集能力并有效地分离了载流子。此外,Ag3VO4 / Bi2O2CO3还具有出色的循环稳定性。 Ag3VO4 / Bi2O2CO3在去除有毒污染物方面的出色表现表明了Ag3VO4 / Bi2O2CO3在实际环境修复中的潜力。

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