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首页> 外文期刊>Catalysis Letters >Fabrication of La-Doped Bi2O3 Nanoparticles with Oxygen Vacancies for Improving Photocatalytic Activity
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Fabrication of La-Doped Bi2O3 Nanoparticles with Oxygen Vacancies for Improving Photocatalytic Activity

机译:具有用于改善光催化活性的氧缺氧缺氧Bi2O3纳米粒子的制备

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摘要

La-doped Bi2O3 were prepared via a simple sol-gel method following a facile low temperature calcination process, and citric acid as an organic complexing agent. La3+ doping could not only create oxygen vacanices (OVs) on the surface of Bi2O3, but also as the efficient scavenger to capture photogenerated electrons. The novel x% La-Bi2O3 photocatalysts exhibited oxidation capacities for degrading azo dye methyl orange (MO) and colorless pollutant phenol, and 2% La-Bi2O3 sample showed the highest photocatalytic activity. The enhanced photocatalytic activity in MO and phenol photo-degradation were attributed to the strong synergistic effects of La3+-doping and oxygen vacancies (OVs), which La3+ ions capture, transfer, and release the photo-generated electrons for conversion from O-2 to .O2- to prevent the hot e(-) of CB to jump into the level of OVs, thereby increase separation efficiencies of photo-generated electrons and holes. The present study may present a new perspective for the utilization of rare earth ion doping to improve the performance of other photocatalytic materials.
机译:通过在容易低温煅烧过程中通过简单的溶胶 - 凝胶法制备La掺杂的Bi2O3,以及作为有机络合剂的柠檬酸。 La3 +掺杂不仅可以在Bi2O3的表面上产生氧气空间(OV),还可以作为捕获光生电子的有效清除剂。新型X%La-Bi2O3光催化剂表现出用于降解偶氮染料甲基橙(MO)和无色污染物酚的氧化能力,2%La-Bi2O3样品显示出最高的光催化活性。 Mo和酚光降解中增强的光催化活性归因于La3 + - 掺杂和氧空位(OVS)的强协同作用,其中La3 +离子捕获,转移和释放光产生的电子从O-2转换.O2-为了防止Cb的热e( - )跳进OV的水平,从而增加光生电子和孔的分离效率。本研究可以提高利用稀土离子掺杂来提高其他光催化材料的性能的新视角。

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