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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Highly active and stable CdS-TiO2 visible photocatalyst prepared by in situ sulfurization under supercritical conditions
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Highly active and stable CdS-TiO2 visible photocatalyst prepared by in situ sulfurization under supercritical conditions

机译:超临界条件下原位硫化制得的高活性,稳定的CdS-TiO2可见光催化剂

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摘要

A novel porous CdS-TiO2 photocatalyst with large surface area and high crystallization degree was synthesized by in situ sulfurization of doped TiO2 under supercritical conditions. The CdS acted as a photosensitizing agent to activate TiO2 in visible light area, while the TiO2 acted as an electron acceptor to separate the photo-induced electrons from holes in the CdS. Under visible light irradiation, the as-prepared CdS-TiO2 exhibited high activity in photocatalytic degradation of 4-chlorophenol (4-CP) owing to the high surface area, the well dispersed CdS nanocrystals, and especially the strong interaction between CdS and TiO2 which greatly enhanced the photosensitizing effect of CdS and also effectively inhibited the recombination between photo-induced electrons and holes. Meanwhile, the CdS-TiO2 also displayed strong durability since the strong interaction between CdS and TiO2 could efficiently protect the CdS from photo-corrosion and leaching off.
机译:通过在超临界条件下原位硫化掺杂二氧化钛,合成了一种新型的表面积大,结晶度高的新型多孔CdS-TiO2光催化剂。 CdS充当光敏剂,以激活可见光区域中的TiO2,而TiO2充当电子受体,将光诱导的电子与CdS中的空穴分开。在可见光照射下,由于高表面积,良好分散的CdS纳米晶体,特别是CdS与TiO2之间的强相互作用,制得的CdS-TiO2对4-氯酚(4-CP)的光催化降解表现出高活性。大大增强了CdS的光敏作用,并有效抑制了光诱导电子和空穴之间的复合。同时,CdS-TiO2也表现出很强的耐久性,因为CdS和TiO2之间的强相互作用可以有效地保护CdS免受光腐蚀和浸出。

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