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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >TiO2 Nanobelts Decorated with In2S3 Nanoparticles as Photocatalysts with Enhanced Full-Solar-Spectrum (UV-vis-NIR) Photocatalytic Activity toward the Degradation of Tetracycline
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TiO2 Nanobelts Decorated with In2S3 Nanoparticles as Photocatalysts with Enhanced Full-Solar-Spectrum (UV-vis-NIR) Photocatalytic Activity toward the Degradation of Tetracycline

机译:TiO2纳米座,用In2S3纳米颗粒装饰为光催化剂,具有增强的全太阳光谱(UV-Vis-NIR)光催化活性,朝向四环素的降解

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摘要

Herein, ultradispersed In2S3 nanoparticle (NP)/TiO2 nanobelt (NB) hetero-structures with an intimate interfacial coupling effect are synthesized from the consideration of combining the visible/near-infrared photoabsorption property of In2S3 with the excellent UV photocatalytic property of TiO2. In this process, the 1D TiO2 NBs not only perform as the support to form the hetero-structure, but are also employed as a dispersant to confine the aggregation of In2S3 NPs. As expected, the obtained In2S3 NP/TiO2 NB hetero-structure gives rise to a prominently strong optical absorption in the full solar region of 300-1800 nm, and thus displays a desired photocatalytic degradation of tetracycline in full utilization of all solar energy, compared with that of pristine In2S3 and TiO2. Besides, the In2S3 NP/TiO2 NB heterostructure photocatalysts have no selectivity and can effectively degrade other different kinds of organic pollutants, including cationic dyes (methyl blue and rhodamine B) and colorless chemical pollutants (phenol and salicylic acid). The exceptional photocatalytic enhancement is due to the synergistic interactions of hetero-junction with the strong interfacial coupling effect, the In2S3 extended light absorption, efficient photogenerated e(-)/h(+) pair separation, and fully exposed reactive sites induced by uniform packing of the ultrasmall In2S3.
机译:这里,通过考虑将In2S3的可见/近红外光催化性与TiO 2的优异紫外光催化性能组合来合成具有紧密界面耦合效果的超超频互相耦合效应的互联网型/ TiO2纳米嵌段(Nb)杂结构。在该过程中,1D TiO2 NB不仅表现为形成异质结构的载体,而且还用于限制IN2S3 NP的聚集的分散剂。如所预期的,所得In2S3 NP / TiO2 Nb异质结构在300-1800nm的完全太阳能区域中产生突出的强光学吸收,因此在充分利用所有太阳能的情况下,表现出四环素的所需光催化降解具有原始In2S3和TiO2。此外,IN2S3 NP / TiO2 NB异质结构光催化剂没有选择性,可以有效地降解其他不同种类的有机污染物,包括阳离子染料(甲基蓝和罗丹明B)和无色化学污染物(酚和水杨酸)。卓越的光催化增强是由于杂连接与强界面耦合效果的协同相互作用,IN2S3延伸光吸收,有效的光发生的E( - )/ H(+)对分离,并通过均匀填料诱导的完全暴露的反应性位点超大In2S3。

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