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首页> 外文期刊>RSC Advances >Nitrogen-doped TiO2 microspheres with hierarchical micro/nanostructures and rich dual-phase junctions for enhanced photocatalytic activity
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Nitrogen-doped TiO2 microspheres with hierarchical micro/nanostructures and rich dual-phase junctions for enhanced photocatalytic activity

机译:具有等级微/纳米结构的氮掺杂TiO2微球和用于增强的光催化活性的富含双相结

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We successfully synthesized microspherical nitrogen-doped TiO _(2) with hierarchical nano/microstructures, rich anatase TiO _(2) –TiO _(2) (B) phase junctions and a reduced band gap by a facile solvothermal process, followed by a urea-based solid-state reaction. Three kinds of nitrogen species in different doping sites, which can improve the photocatalytic activity and reduce the band gap, were found in the hierarchical nitrogen-doped TiO _(2) microspheres. In particular, a suitable amount of nitrogen doping was found to effectively reduce the Ti ~(3+) concentration in TiO _(2) , thus benefiting the photocatalytic reaction by reducing the recombination centers in the photocatalyst. The combination of hierarchical microspherical morphology, the rich phase junctions and narrowed band gap gives nitrogen-doped TiO _(2) microspheres remarkably improved photocatalytic activity, compared with commercial mixed-phase TiO _(2) (P25) and single-phase anatase-type TiO _(2) . Furthermore, nitrogen-doped TiO _(2) microspheres display reliable photocatalytic performance for multiple cycles. The as-prepared nitrogen-doped TiO _(2) microspheres hold promise as efficient photocatalysts for various photocatalytic applications.
机译:我们成功地合成了分层纳米/微结构的微球氮掺杂TiO _(2),富含锐钛矿TiO _(2)-ti_(2)(B)相相结合,并通过容易的溶剂热处理进行了降低的带隙,然后是a尿素基固态反应。在分层氮掺杂TiO_(2)微球中发现了不同掺杂位点中的三种氮物质,可以改善光催化活性并减少带隙。特别地,发现合适量的氮掺杂能力在TiO _(2)中有效地降低Ti〜(3+)浓度,从而使光催化反应在光催化剂中减少重组中心。分层微球体形态,富相结合和窄带隙的组合给予氮气掺杂的TiO _(2)微球显着改善光催化活性,与商业混合相TiO_(2)(P25)和单相锐钛矿 - TIO _(2)。此外,氮掺杂的TiO _(2)微球显示多个循环的可靠光催化性能。制备的氮掺杂TiO _(2)微球作为各种光催化应用的高效光催化剂。

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