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Adsorption-assisted photocatalytic activity of nitrogen and sulfur codoped TiO2 under visible light irradiation

机译:可见光下氮硫共掺杂二氧化钛的吸附辅助光催化活性

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Applying post thermal treatment on the doped TiO2 at high temperature is mostly regarded as an indispensable process, although it has negative effects on the photocatalytic activity of doped TiO2. Herein, we synthesized the N- and S-codoped TiO2 (NSTs) with an anatase phase using a simple solvothermal treatment and investigated their visible light photocatalytic activity associated with the thermal behavior of dopants in NSTs. We found that the as-synthesized NST (NST-As) has better visible light photocatalytic activity and adsorptivity than the commercially available P25 and the thermally treated NSTs. The S dopants effectively assist the surface reaction by adsorbing cations of organic dyes on the NST-As surface. The N dopants increase the absorbance at visible light region of NST-As by forming a delocalized state at the band gap of NST-As. However, the photocatalytic activity of NSTs gradually weakens with the post thermal treatment, because S dopants on the NST-As surface are transformed from sulfide to sulfate during the thermal treatment and N dopants move out during the crystallization of TiO2. The adsorption-assisted photocatalytic activity of NST-As under visible light irradiation is an attractive feature for environmental and photonic technologies.
机译:尽管对掺杂的TiO2的光催化活性有负面影响,但在高温下对掺杂的TiO2进行后热处理通常被认为是必不可少的过程。在这里,我们使用简单的溶剂热处理法合成了具有锐钛矿相的N和S掺杂的TiO2(NST),并研究了它们与NST中掺杂物的热行为相关的可见光光催化活性。我们发现,合成的NST(NST-As)比市售的P25和热处理的NST具有更好的可见光光催化活性和吸附性。 S掺杂剂通过在NST​​-As表面上吸附有机染料的阳离子来有效地辅助表面反应。 N掺杂剂通过在NST​​-As的带隙处形成离域态来增加在NST-As的可见光区域的吸光度。然而,NST的光催化活性随后热处理而逐渐减弱,因为NST-As表面上的S掺杂物在热处理过程中从硫化物转变为硫酸盐,而N掺杂物在TiO2结晶过程中移出。 NST-As在可见光照射下的吸附辅助光催化活性是环境和光子技术的一个吸引人的特征。

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