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A mechanistic study of photo-oxidation of phenol and AB92 by AgBr/TiO2

机译:Agbr / TiO2的苯酚和AB92光氧化的机械研究

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The energy levels of semiconductors can be modified so that they selectively interact with any desirable chemicals. In this study, AgBr/TiO2 is used for selective oxidation of two well-known organic pollutants, phenol and acid blue 92, in the visible and ultraviolet regions. The results show that phenol is only degraded in the ultraviolet, but acid blue 92 can be degraded in both ultraviolet and visible regions. In the ultraviolet region, phenol is degraded by OH radicals, produced by the hole in the valence band of TiO2. In the visible region, the holes generated by the valence band (VB) of AgBr play the main role in acid blue 92 degradation. However, they are not strong enough to oxidize phenol. Also, periodic DFT calculations are performed to study electronic structures of AgBr and TiO2 and elucidate their different photo-oxidation mechanisms. Theoretical data indicates that the reduction potential of a hole in the valence band of AgBr could not generate OH radicals, and thus is unable to oxidize phenol in the visible region. On the other hand, the reduction potential of a valence band hole in TiO2 is more positive and could readily generate OH radicals to degrade phenol in the ultraviolet region. This study implies that AgBr/TiO2 can selectivity oxidize compounds with lower oxidizability, when exposed to the visible region, and higher oxidizability, when the ultraviolet region is applied.
机译:可以修改半导体的能量水平,使得它们选择性地与任何理想的化学物质相互作用。在该研究中,Agbr / TiO2用于可见和紫外区域中的两个众所周知的有机污染物,苯酚和酸蓝92的选择性氧化。结果表明,苯酚仅在紫外线中降解,但酸蓝92可以在紫外和可见区域中降解。在紫外线区域中,苯酚由OH基团降解,由TiO 2的价带中的孔产生。在可见区域中,AGBR的价带(VB)产生的孔在酸蓝92降解中发挥主要作用。然而,它们不足以氧化苯酚。此外,进行周期性DFT计算以研究AGBR和TiO2的电子结构,并阐明它们不同的光氧化机制。理论数据表明,AGBR的价带中的孔的降低电位不能产生OH基团,因此不能氧化可见区域中的苯酚。另一方面,TiO 2中价带孔的降低电位更积极,并且可以容易地产生OH基团以降解紫外区域中的苯酚。该研究意味着当施加紫外线区域时,AgBr / TiO2可以选择具有较低氧化性的氧化化合物,以及在紫外线区域时暴露于可见区域。

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