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首页> 外文期刊>RSC Advances >Direct conversion mechanism from BiOCl nanosheets to BiOF, Bi7F11O5 and BiF3 in the presence of a fluorine resource
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Direct conversion mechanism from BiOCl nanosheets to BiOF, Bi7F11O5 and BiF3 in the presence of a fluorine resource

机译:在氟资源存在下,将BioCl纳米蛋白酶从BioCl纳米片的直接转化机制直接转化机制,BI7F11O5和BIF 3

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In this work, we report the facile conversion from BiOCl nanosheets to BiOF, Bi _(7) F _(11) O _(5) and BiF _(3) by a novel ion exchange approach, in which the effects of fluorine source, F/Bi molar ratio and reaction medium (ethanol/water) on the products are mainly investigated. A plausible conversion mechanism is proposed to illustrate the formation of BiOF, Bi _(7) F _(11) O _(5) and BiF _(3) . Furthermore, the photocatalytic activities of the samples are also investigated. It is amazing that under ultraviolet light irradiation ( λ ≤ 420 nm), the activity of the as-formed Bi _(7) F _(11) O _(5) /BiOCl sample is 3.28 times higher than that of BiOCl for the degradation of methyl orange (MO). It is demonstrated that the improved activity is mainly attributed to the formation of Bi _(7) F _(11) O _(5) /BiOCl heterojunction, which has significantly improved the separation and transfer efficiency of charges. It is important that this study provides an initiative post-synthesis strategy to develop new, efficient photocatalysts.
机译:在这项工作中,通过新的离子交换方法向BioF,Bi _(7)F _(11)和BIF _(3)报告从Biocl Nanosheets到Biof,BioC _(7)和BIF _(3)中的相容转换,其中氟源的影响主要研究了产品上的F / Bi摩尔比和反应介质(乙醇/水)。提出了一种合理的转换机制来说明BioF的形成,Bi _(7)F _(11)O _(5)和BIF _(3)。此外,还研究了样品的光催化活性。令人惊讶的是,在紫外线照射(λ≤420nm)下,AS形成的Bi _(7)F _(11)o _(5)/ bioCl样品的活性比BioCl为3.28倍甲基橙(Mo)的降解。证明改善的活性主要归因于Bi _(7)F _(11)o _(5)/ BioCl异质结的形成,这显着提高了电荷的分离和转移效率。重要的是,本研究提供了一种倡议的合成后策略,以开发新的高效光催化剂。

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