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Synergy of metal and nonmetal dopants for visible-light photocatalysis: a case-study of Sn and N co-doped TiO2

机译:金属和非金属掺杂剂对可见光光催化的协同作用:Sn和N共掺杂TiO2的案例研究

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This paper mainly focuses on the synergistic effect of Sn and N dopants to enhance the photocatalytic performance of anatase TiO2 under visible light or simulated solar light irradiation. The Sn and N co-doped TiO2 (SNT-x) photocatalysts were successfully prepared by the facile sol-gel method and the post-nitridation route in the temperature range of 400-550 degrees C. All the as-prepared samples were characterized in detail by X-ray diffraction, UV-vis diffuse reflectance spectroscopy, transmission electron microscopy, X-ray photoelectron and electron spin resonance spectroscopy and photoelectrochemical measurements. The characterization results reveal that the co-incorporation of Sn and N atoms remarkably modifies the electronic structure of TiO2, which gives rise to a prominent separation of photogenerated charge carriers and more efficient interfacial charge-transfer reactions in a photocatalytic process. The enhanced photocatalytic activity is attributed to the intensified active oxygen species including hydroxyl radicals ((OH)-O-center dot) and superoxide anion radicals (O-2(center dot-)) for degradation of organic pollutants. And the result of photocatalytic hydrogen production further confirms the existence of the synergistic effect in the SNT-x samples, because they exhibit higher photocatalytic activity than the sum of N/TiO2 and Sn/TiO2. This work provides a paradigm to consolidate the understanding of the synergistic effect of metal and non-metal co-doped TiO2 in domains of photocatalysis and photoelectrochemistry.
机译:本文主要研究Sn和N掺杂剂的协同作用,以增强锐钛矿型TiO2在可见光或模拟太阳光照射下的光催化性能。通过简便的溶胶-凝胶法和氮化后的路线,在400-550℃的温度范围内成功制备了Sn和N共掺杂的TiO2(SNT-x)光催化剂。对所有制备的样品进行了表征通过X射线衍射,UV-vis漫反射光谱,透射电子显微镜,X射线光电子和电子自旋共振光谱以及光电化学测量获得详细信息。表征结果表明,Sn和N原子的共掺入显着改变了TiO2的电子结构,从而在光催化过程中引起了光生载流子的显着分离和更有效的界面电荷转移反应。增强的光催化活性归因于增强的活性氧,包括可降解有机污染物的羟基自由基((OH)-O-中心点)和超氧阴离子自由基(O-2(中心点-))。而且,光催化产氢的结果进一步证实了SNT-x样品中存在协同效应,因为它们比N / TiO2和Sn / TiO2的总和具有更高的光催化活性。这项工作为巩固对金属和非金属共掺杂TiO2在光催化和光电化学领域的协同效应的理解提供了范例。

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