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Visible light-induced water splitting in an aqueous suspension of a plasmonic Au/TiO2 photocatalyst with metal co-catalysts

机译:等离子体光Au / TiO2光催化剂与金属助催化剂在水悬浮液中的可见光诱导水分解

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摘要

We found that plasmonic Au particles on titanium(iv) oxide (TiO2) act as a visible-light-driven photocatalyst for overall water splitting free from any additives. This is the first report showing that surface plasmon resonance (SPR) in a suspension system effectively induces overall water splitting. Modification with various types of metal nanoparticles as co-catalysts enhanced the evolution of H2 and O2. Among these, Ni-modified Au/TiO2 exhibited 5-times higher rates of H2 and O2 evolution than those of Ni-free Au/TiO2. We succeeded in designing a novel solar energy conversion system including three elemental technologies, charge separation with light harvest and an active site for O2 evolution (plasmonic Au particles), charge transfer from Au to the active site for H2 production (TiO2), and an active site for H2 production (Ni cocatalyst), by taking advantage of a technique for fabricating size-controlled Au and Ni nanoparticles. Water splitting occurred in aqueous suspensions of Ni-modified Au/TiO2 even under irradiation of light through an R-62 filter.
机译:我们发现,氧化钛(iv)(TiO2)上的等离激子Au颗粒是可见光驱动的光催化剂,用于在不添加任何添加剂的情况下进行总水分解。这是第一份报告,表明悬浮系统中的表面等离子体共振(SPR)有效地引起了总的水分解。用各种类型的金属纳米粒子作为助催化剂进行改性可增强H2和O2的释放。其中,与无镍的Au / TiO2相比,Ni改性的Au / TiO2的H2和O2析出速率高5倍。我们成功设计了一种新颖的太阳能转换系统,该系统包括三种基本技术,通过光收集进行电荷分离和用于O2释放的活性位点(等离子体金颗粒),从Au到用于H2产生的活性位点(TiO2)的电荷转移以及通过利用制造尺寸可控的Au和Ni纳米粒子的技术,将其作为H2生产的活性中心(Ni助催化剂)。即使在通过R-62滤光片的光照射下,Ni-修饰的Au / TiO2的水悬浮液中也会发生水分解。

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