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Facile synthesis of a ZnO–BiOI p–n nano-heterojunction with excellent visible-light photocatalytic activity

机译:ZnO-BiOI p-n纳米异质结的便捷合成具有优异的可见光光催化活性

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摘要

In this paper, an efficient method to produce a ZnO/BiOI nano-heterojunction is developed by a facile solution method followed by calcination. By tuning the ratio of Zn/Bi, the morphology varies from nanoplates, flowers to nanoparticles. The heterojunction formed between ZnO and BiOI decreases the recombination rate of photogenerated carriers and enhances the photocatalytic activity of ZnO/BiOI composites. The obtained ZnO/BiOI heterostructured nanocomposites exhibit a significant improvement in the photodegradation of rhodamine B under visible light (λ ≥ 420 nm) irradiation as compared to single-phase ZnO and BiOI. A sample with a Zn/Bi ratio of 3:1 showed the highest photocatalytic activity (≈99.3% after 100 min irradiation). The photodegradation tests indicated that the ZnO/BiOI heterostructured nanocomposites not only exhibit remarkably enhanced and sustainable photocatalytic activity, but also show good recyclability. The excellent photocatalytic activity could be attributed to the high separation efficiency of the photoinduced electron–hole pairs as well as the high specific area.
机译:本文通过一种简便的溶液法接着煅烧的方法,开发了一种生产ZnO / BiOI纳米异质结的有效方法。通过调节Zn / Bi的比例,形态从纳米板,花朵到纳米颗粒都不同。 ZnO和BiOI之间形成的异质结降低了光生载流子的复合率,增强了ZnO / BiOI复合材料的光催化活性。与单相ZnO和BiOI相比,在可见光(λ≥420 nm)照射下,所获得的ZnO / BiOI异质结构纳米复合材料在若丹明B的光降解方面具有显着改善。 Zn / Bi比为3:1的样品显示出最高的光催化活性(照射100分钟后≈99.3%)。光降解测试表明,ZnO / BiOI异质结构纳米复合材料不仅表现出显着增强和可持续的光催化活性,而且还具有良好的可回收性。优异的光催化活性可以归因于光致电子-空穴对的高分离效率以及高比表面积。

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