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Fabrication of BiOBrxI1−x photocatalysts with tunable visible light catalytic activity by modulating band structures

机译:通过调节能带结构制备具有可调可见光催化活性的BiOBrxI1-x光催化剂

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摘要

A series of BiOBrxI1−x solid solutions were explored as novel visible light-sensitive photocatalysts. These BiOBrxI1−x solid-solution photocatalysts grew into two-dimensional nanoplates with exposed (001) facets and possessed continuously modulated band gaps from 2.87 to 1.89 eV by decreasing the Br/I ratio. The photocatalytic activities of these samples were measured, and the samples exhibited visible light-driven activities for the degradation of Rhodamine B (RhB). In particular, BiOBr0.8I0.2 exhibited the highest activity for the degradation of RhB. This result could be attributed to the balance between the effective light absorption and adequate redox potential. Additionally, investigations into the photocatalytic mechanism showed that the photodegradation of RhB over BiOBr0.8I0.2 solid-solution photocatalysts involved direct holes oxidation, in which the reaction that dominated during photocatalysis was determined by the potential of the valence band. Furthermore, a high stability in the photocatalytic activity of BiOBr0.8I0.2 was demonstrated by the cycling photocatalytic experiment and long-term irradiation, which might offer opportunities for its practical application as a catalyst.
机译:探索了一系列BiOBrxI1-x固溶体作为新型可见光敏感型光催化剂。这些BiOBrxI1-x固溶光催化剂长成具有暴露(001)面的二维纳米板,并通过降低Br / I比而具有从2.87到1.89 eV的连续调制带隙。测量了这些样品的光催化活性,并且这些样品表现出可见光驱动的活性以降解罗丹明B(RhB)。尤其是,BiOBr0.8I0.2表现出最高的RhB降解活性。该结果可以归因于有效光吸收和足够的氧化还原电势之间的平衡。此外,对光催化机理的研究表明,BiOBr0.8I0.2固溶光催化剂对RhB的光降解涉及直接空穴氧化,其中光催化过程中占主导地位的反应由价带电势决定。此外,通过循环光催化实验和长期照射证明了BiOBr0.8I0.2的光催化活性的高稳定性,这可能为其在催化剂中的实际应用提供机会。

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