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Ethanol photoreaction to hydrogen over Au/TiO_2 catalysts. Investigating the synergistic effect of nanoparticles

机译:在Au / TiO_2催化剂上乙醇光反应成氢。研究纳米粒子的协同效应

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摘要

Hydrogen production using photocatalytic reactions from biomass is one of the most promising methods for a sustainable energy system. Among the many complex factors affecting the reaction rate is the so-called "synergetic or synergistic effect - the phenomenon in which the combined action of two things is greater than the sum of their effects individually" of the polymorph of the semiconductor. In this work we have investigated Au/TiO_2 photo-catalysts for the production of hydrogen from ethanol. We have synthesised Au particles of similar sizes on TiO_2 nanoparticles also of similar sizes but of different polymorphs. It was found that Au/TiO_2 anatase is about two orders of magnitude more active that Au/TiO_2 rutile. Yet, it was also found that when the anatase and rutile particles are present together the reaction rate is higher than that observed over Au/TiO_2 anatase alone. One possible reason for this enhancement is the increase in the number of excited electrons (rutile phase) together with a decrease in the rate of electron-hole recombination (anatase phase) at the interface.
机译:利用生物质的光催化反应生产氢是可持续能源系统最有希望的方法之一。在影响反应速率的许多复杂因素中,有半导体多晶型物的所谓“协同效应或协同效应-两物的结合作用大于其各自作用之和的现象”。在这项工作中,我们研究了Au / TiO_2光催化剂,用于由乙醇生产氢气。我们已经在TiO_2纳米颗粒上合成了相似大小的Au颗粒,它们也具有相似的大小但具有不同的多晶型物。发现Au / TiO_2锐钛矿的活性比Au / TiO_2金红石高约两个数量级。然而,还发现当锐钛矿和金红石颗粒一起存在时,反应速率比单独使用Au / TiO_2锐钛矿时观察到的反应速率高。这种增强的可能原因之一是界面处激发电子的数量(金红石相)增加,而电子-空穴复合速率(锐钛矿相)降低。

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