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Effects of copper and vanadium deposition in multi-walled hydrogen trititanate and mixed-phase anatase/trititanate nanotubes

机译:多壁三钛酸氢盐和锐钛矿/三钛酸混合纳米管中铜和钒沉积的影响

摘要

Metal incorporation and doping is one of the routes commonly explored to improve visible light photocatalytic activity of titania and related materials. In this work, we explore the effect of copper and vanadium deposition and incorporation in multi-walled hydrogen trititanate and mixed-phase anatase/trititanate nanotubes. The molecular designed dispersion method is used to introduce the metals in the materials. Electron paramagnetic resonance facilitates a full characterization of the metal sites before and after calcination and allows determining the UV- and visible-light-induced formation of paramagnetic intermediates. Vanadium or copper deposition on the tubes leads to increased formation of F+ centres under visible or UV illumination. The EPR results are linked to the activity towards rhodamine 6G photobleaching of the different materials. © 2013 The Royal Society of Chemistry.
机译:金属的掺入和掺杂是改善二氧化钛及相关材料的可见光光催化活性的常用途径之一。在这项工作中,我们探索了铜和钒沉积以及在多壁三钛酸氢盐和混合相锐钛矿/三钛酸盐纳米管中掺入的影响。分子设计的分散方法用于将金属引入材料中。电子顺磁共振有助于在煅烧之前和之后对金属位点进行全面表征,并可以确定紫外线和可见光诱导的顺磁性中间体的形成。管上的钒或铜沉积会导致可见光或紫外线照射下F +中心的形成增加。 EPR结果与不同材料对若丹明6G光漂白的活性有关。 ©2013皇家化学学会。

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