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二氧化钛负载金光催化剂中的异质结协同效应:对太阳能制氢的启示

Heterojunction synergies in titania-supported gold photocatalysts: implications for solar hydrogen production.

作者信息

Jovic Vedran, Smith Kevin E, Idriss Hicham, Waterhouse Geoffrey I N

机构信息

School of Chemical Sciences, Science Centre, Building 301, 23 Symonds Street, Auckland 92019 (New Zealand).

The MacDiarmid Institute for Advanced Materials and Nanotechnology (New Zealand).

出版信息

ChemSusChem. 2015 Aug 10;8(15):2551-9. doi: 10.1002/cssc.201500126. Epub 2015 Jun 24.

Abstract

The mixed-phase nature of P25 TiO2 (85 % anatase/15 % rutile) plays a key role in the high H2 production rates shown by Au/P25 TiO2 photocatalysts in alcohol/water systems. However, a full understanding of the synergistic charge transfer mechanisms between the TiO2 polymorphs that drive the high rates is yet to be realised. Here, we deconstruct P25 TiO2 into its component phases, functionalise the phases with Au nanoparticles and explore charge transfer in Au/TiO2 systems using EPR spectroscopy. EPR spectroscopy and photocatalytic data provide direct evidence that electrons excited across the rutile band gap move to anatase lattice traps through interfacial surface sites, which decreases electron-hole pair recombination and increases charge carrier availability for photoreactions. In particular, three-phase interfacial sites between Au, anatase and rutile appear to be H2 evolution "hot spots". The results isolate the origin of high photocatalytic H2 production rates seen in Au/P25 TiO2 systems.

摘要

P25 TiO₂(85%锐钛矿型/15%金红石型)的混合相性质在醇/水体系中Au/P25 TiO₂光催化剂所表现出的高氢气产生速率中起着关键作用。然而,对于驱动高反应速率的TiO₂多晶型之间协同电荷转移机制的全面理解尚未实现。在此,我们将P25 TiO₂解构为其组成相,用金纳米颗粒对这些相进行功能化,并使用电子顺磁共振光谱法探索Au/TiO₂体系中的电荷转移。电子顺磁共振光谱法和光催化数据提供了直接证据,即跨越金红石带隙激发的电子通过界面表面位点移动到锐钛矿晶格陷阱中,这减少了电子 - 空穴对的复合,并增加了光反应中电荷载流子的可用性。特别是,Au、锐钛矿和金红石之间的三相界面位点似乎是氢气析出的“热点”。这些结果揭示了在Au/P25 TiO₂体系中观察到的高光催化氢气产生速率的来源。

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