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首页> 外文期刊>Applied Surface Science >On the excitation mechanism of visible responsible Er-TiO_2 system proved by experimental and theoretical investigations for boosting photocatalytic activity
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On the excitation mechanism of visible responsible Er-TiO_2 system proved by experimental and theoretical investigations for boosting photocatalytic activity

机译:关于可见负责任ER-TIO_2系统的激发机制,证明了促进光催化活性的理论研究证明

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摘要

One of the challenges in the field of heterogeneous photocatalysis is the development of new type of photoactive materials activated by low-power and low-cost irradiation sources, and to understand the mechanism of photocatalytic reaction in the presence of those materials. Photocatalysis based on Er-TiO2 has become an attractive process to remove contaminants from aquatic environments. Unfortunately, there is no available literature presenting the systematic experimental and theoretical study of the effects of erbium ions on the photocatalytic activity of TiO2 and visible light excitation mechanism of this system. Accordingly, to obtain solar-responsive photocatalysts, nanostructured Er-TiO2 was prepared via hydrothermal method. The physicochemical characterization of samples indicate that modified photocatalysts contain both doped erbium and the surface adsorbed erbium species (e.g., Er2O3, Er(OH)(x)). Predicted electronic structures of Er-doped TiO2 indicate that the formation of new Er-4f states within the band gap region of TiO2 might be crucial for observed photocatalytic effects towards Vis response. However, the up-conversion process is not responsible for Vis activity and efficient O-2(center dot-) generation. Moreover, Er modification of TiO2 results in an inhibition of the growth of titania crystallites, and thus an increase in the specific surface area, which are also beneficial for an efficient degradation of pollutants.
机译:异质光催化领域的挑战之一是由低功率和低成本辐射源激活的新型光活性材料的发展,并了解在这些材料存在下的光催化反应的机制。基于ER-TiO2的光催化已成为从水生环境中去除污染物的吸引力。不幸的是,没有有可用的文学介绍了铒离子对该系统的TiO2光催化活性的系统实验和理论研究和该系统的可见光激发机制。因此,为了获得太阳能响应光催化剂,通过水热法制备纳米结构ER-TiO 2。样品的物理化学表征表明改性光催化剂含有掺杂铒和表面吸附的铒物质(例如,ER2O3,ER(OH)(X))。预测的ER掺杂TiO2的电子结构表明,在TiO 2的带隙区域内形成新的ER-4F状态可能对观察到对VIS反应的光催化效应至关重要。但是,上转换过程不对VIS活动和高效的O-2(中心点)生成负责。此外,TiO2的ER改性导致抑制二氧化钛微晶的生长,从而增加了比表面积的增加,这也有利于污染物的有效降解。

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  • 来源
    《Applied Surface Science》 |2020年第15期|146815.1-146815.11|共11页
  • 作者单位

    Univ Gdansk Fac Chem Dept Environm Technol Lab Photocatalysis PL-80308 Gdansk Poland|Hokkaido Univ Inst Catalysis Sapporo Hokkaido 0010021 Japan;

    Univ Gdansk Fac Chem Dept Environm Technol Lab Photocatalysis PL-80308 Gdansk Poland|Univ Gdansk Fac Chem Lab Environm Chemometr PL-80308 Gdansk Poland;

    Adam Mickiewicz Univ Dept Rare Earths PL-60780 Poznan Poland;

    Univ Gdansk Fac Chem Dept Environm Technol Lab Photocatalysis PL-80308 Gdansk Poland;

    Hokkaido Univ Inst Catalysis Sapporo Hokkaido 0010021 Japan|Hubei Univ Technol Hubei Prov Key Lab Green Mat Light Ind Wuhan 430068 Peoples R China;

    Hokkaido Univ Inst Catalysis Sapporo Hokkaido 0010021 Japan;

    Yachay Tech Univ Sch Phys Sci & Nanotechnol CompNano Grp Urcuqui 100119 Ecuador;

    Univ Gdansk Fac Chem Dept Environm Technol Lab Photocatalysis PL-80308 Gdansk Poland;

    Univ Gdansk Fac Chem Dept Environm Technol Lab Photocatalysis PL-80308 Gdansk Poland|Hokkaido Univ Inst Catalysis Sapporo Hokkaido 0010021 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Erbium; TiO2; Photocatalysis; Up-conversion process; Visible light photoactivity;

    机译:erbium;tio2;光催化;上转换过程;可见光拍摄;

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