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首页> 外文期刊>Catalysis science & technology >Ultra-small subnano TiOx clusters as excellent cocatalysts for the photocatalytic degradation of tetracycline on plasmonic Ag/AgCl
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Ultra-small subnano TiOx clusters as excellent cocatalysts for the photocatalytic degradation of tetracycline on plasmonic Ag/AgCl

机译:超薄subnano TiOx集群为好:光催化降解的在电浆Ag / AgCl四环素

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摘要

The separation efficiency and recombination rate of photogenerated electron-hole pairs play a vital role in photocatalytic activity. We report the incorporation of ultra-small subnano TiOx clusters as outstanding cocatalysts on the surface of plasmonic Ag/AgCl to boost the simulated sunlight photoreactivity. The formed structure is in favour of an efficient photoinduced electron-hole transfer process and suppressing the recombination rate, yielding an enhanced photocatalytic activity. The experimental results show that TiOx@Ag/AgCl exhibits an extraordinarily high activity in the photodegradation of tetracycline (TC) under simulated sunlight irradiation, which is about 21.7 times higher than that of bare Ag/AgCl. Their corresponding apparent quantum efficiency (AQE) is up to 0.917% at 435 nm and 17.459% at 350 nm during the photodegradation of TC, respectively. Moreover, TiOx@Ag/AgCl shows an outstanding long-term stability without obvious performance loss even after ten cycles of photodegradation. The possible enhancement mechanism of the reaction rate is proposed based on the compositional, structural, and optical property analysis. We found that h(+) was the major reactive species in the photodegradation process of TC. Our findings on ultra-small TiOx cocatalysts would shed light on the design and development of highly efficient oxide cluster cocatalysts.
机译:分离效率和重组率的photogenerated电子空穴对发挥光催化活动的至关重要的作用。的超薄subnano TiOx集群:优秀的表面电浆Ag / AgCl提振模拟太阳光photoreactivity。结构的一个有效光诱导的电子空穴传输过程和抑制复合率,产生一个提高光催化活性。实验结果表明,TiOx@Ag / AgCl展示一个相当高的活动四环素(TC)的光降解模拟阳光照射,这是什么21.7倍的裸Ag / AgCl。相应的表观量子效率(AQE)是在435 nm和17.459%到0.917%在光降解的TC 350海里,分别。出色的长期稳定性没有明显性能损失即使十个周期光降解。基于机制提出了反应速率的成分、结构和光学属性分析。主要在光降解活性物种TC的过程。:阐明设计和集群发展的高效氧化cocatalysts。

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