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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Visible Light-Induced Degradation of Phenol over Iodine-Doped Titanium Dioxide Modified with Platinum: Role of Platinum and the Reaction Mechanism
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Visible Light-Induced Degradation of Phenol over Iodine-Doped Titanium Dioxide Modified with Platinum: Role of Platinum and the Reaction Mechanism

机译:铂修饰的碘掺杂二氧化钛上可见光诱导的苯酚降解:铂的作用及其反应机理

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The role of platinum deposited on iodine-doped titanium dioxide (Pt/I-TiO2) catalyst during photodegradation of phenol under irradiation with visible light was investigated. The results of this study demonstrate that the Pt/I-TiO2 photocatalyst enhanced the phototransformation of phenol, with a negligible increase upon photomineralization. The results of the phototransformation of para substiuted phenols (p-methylphenol, phenol, p-chlorophenol, and p-nitrophenol) show that the phenol-TiO2 interaction, influenced by the Hammett constants, has the principal role in photodegradation. Furthermore, the action of scavengers (iodide ion, tert-butyl alcohol, fluoride ion, and persulfate ion), as well as N2 purge on the photodegradation of phenol prove that the phototransformation of phenol occurs on the surface of the photocatalyst and is initiated mostly by a valence band hole (h_(vb)~+), and the degradation process is limited by the keto-enol tautomeric equilibrium between hydf oquinone and quinone. On the basis of these experimental results, we conclude that the role of platinum on the I-TiO2 surface is to inhibit the recombination of electron-hole pairs and promote a more efficient diffusion of the h_(vb)~+, which was propitious to the phototransformation of phenol. Nonetheless, the tautomeric equilibrium restrains the degree of mineralization. Additionally, identification of the main products showed that more quinone, formic acid, and oxalic acid were found in solution after reaction for 4 h using the Pt/I-TiO2 photocatalyst in comparison to the I-TiO2 photocatalyst, which could further explain the insignificant action of platinum for the photomineralization of phenol.
机译:研究了可见光照射下,碘掺杂的二氧化钛(Pt / I-TiO2)催化剂上沉积的铂在苯酚光降解过程中的作用。这项研究的结果表明,Pt / I-TiO2光催化剂增强了苯酚的光转化,而在光矿化作用下的增加可忽略不计。对位取代的苯酚(对甲基苯酚,苯酚,对氯苯酚和对硝基苯酚)的光转化结果表明,受Hammett常数影响,苯酚与TiO2的相互作用在光降解中起主要作用。此外,清除剂(碘离子,叔丁醇,氟离子和过硫酸根离子)的作用,以及N2吹扫对苯酚的光降解作用证明,苯酚的光转化发生在光催化剂的表面上,并且大部分是引发的通过价带孔(h_(vb)〜+),降解过程受到hydf对苯二酚和醌之间的酮-烯醇互变异构平衡的限制。根据这些实验结果,我们得出结论,铂在I-TiO2表面上的作用是抑制电子-空穴对的重组并促进h_(vb)〜+的更有效扩散,这有利于苯酚的光转化。尽管如此,互变异构平衡限制了矿化程度。另外,对主要产物的鉴定表明,与I-TiO2光催化剂相比,使用Pt / I-TiO2光催化剂反应4小时后,在溶液中发现更多的醌,甲酸和草酸,这可以进一步解释其重要性。铂对苯酚光矿化的作用。

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