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Leaf-inspired structural design of artificial leaf BiVO4/InVO4 heterojunction with enhanced photocatalytic activity for pollutant degradation

机译:人工叶片BIVO4 / INVO4异质结具有增强的光催化活性的叶子启发结构设计,用于污染物降解

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摘要

Inspired by the structure of natural leaves in the process of photosynthesis, in this work, artificial leaf BiVO4/InVO4 heterojunction was synthesized by one-step dipping-calcination method, using Chongyang wood seedling as template, and the molar ratio of BiVO4 to InVO4 was optimized. The unique leaf-liked structure of artificial leaf BiVO4/InVO4 was observed by FESEM observations. The photocatalytic activities of artificial leaf BiVO4/InVO4 were evaluated by the degradation of RhB. The results showed that the as-fabricated artificial leaf BiVO4/InVO4 heterojunction with appropriate In, Bi ratio has higher photocatalytic activity than artificial leaf BiVO4 and artificial leaf InVO4. Furthermore, the possible photocatalytic mechanism of artificial leaf BiVO4/InVO4 heterojunction was proposed. This strategy realizes the combination of bionic structure design and heterojunction construction, which enlightens people for the design of highly efficient photocatalytic materials.
机译:受光合作用过程中天然叶结构的启发,在这项工作中,通过一步浸渍煅烧方法合成了人造叶Bivo4 / Invo4异质结,其使用崇阳木幼苗作为模板,并且Bivo4至Invo4的摩尔比是 优化。 通过FESEM观察观察人工叶BIVO4 / INCO4的独特叶状物结构。 通过RHB的降解评估人造叶BIVO4 / IMO4的光催化活性。 结果表明,用含有适当的人工叶BIVO4 / INCO4异质结,BI比具有比人造叶BIVO4和人工叶INVO4更高的光催化活性。 此外,提出了人造叶BIVO4 / IMO4异质结的可能光催化机制。 该策略实现了仿生结构设计和异质结建筑的结合,其为人们设计了高效的光催化材料的设计。

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