首页> 外文期刊>International Journal of Photoenergy >Synergy of the Combination of Titanate Nanotubes with Titania Nanoparticles for the Photocatalytic Hydrogen Generation from Water-Methanol Mixture Using Simulated Sunlight
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Synergy of the Combination of Titanate Nanotubes with Titania Nanoparticles for the Photocatalytic Hydrogen Generation from Water-Methanol Mixture Using Simulated Sunlight

机译:钛酸盐纳米管与二氧化钛纳米粒子组合的协同作用,利用模拟阳光从水-甲醇混合物中产生光催化氢

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摘要

Alkali digestion of titanium nanoparticles leads, after neutralization, to the formation of titanate nanotubes with long aspect ratio. One salient change in the formation of titanate nanotubes is the observation of an extended visible absorption band up to 550 nm, responsible for their brown colour. Combination of titanate nanotubes with commercial titanium dioxide nanoparticles, either Evonik P25 or Millennium PC500, results in an enhanced photocatalytic activity for hydrogen generation from water-methanol mixtures. This synergy between the two titanium semiconductors has an optimum for a certain proportion of the two components and is observed in both the absence and the presence of platinum or gold nanoparticles. The best efficiency under simulated sunlight irradiation was for a combination of 12 wt.% titanate nanotubes containing 0.32 wt.% platinum in 88 wt.% Millennium PC500, where a two-time increase in the hydrogen generation is observed versus the activity of Millennium PC500 containing platinum. This synergy is proposed to derive from the interfacial electron transfer from titanate nanotubes undergoing photoexcitation at wavelengths in which Millennium PC500 does not absorb this form of titania nanoparticles. Our results illustrate how the combination of several titanium semiconductors can result in an enhancement efficiency with respect to their individual components.
机译:中和后,钛纳米颗粒的碱消化导致形成长径比大的钛酸酯纳米管。钛酸酯纳米管形成过程中的一个显着变化是观察到可见的吸收带扩展到550 nm,这是其棕色的原因。钛酸酯纳米管与Evonik P25或Millennium PC500的商用二氧化钛纳米颗粒的结合,增强了从水-甲醇混合物产生氢的光催化活性。两种钛半导体之间的这种协同作用对于两种组分的一定比例而言是最佳的,并且在不存在和存在铂或金纳米颗粒的情况下都可以观察到。在模拟阳光照射下的最佳效率是将88%(重量)的Millennium PC500中包含0.32%(重量)的铂的12%(重量)的钛酸酯纳米管组合使用,相对于Millennium PC500的活性,观察到氢气的生成量增加了两倍。含铂。提出这种协同作用源自于在Millennium PC500不吸收这种形式的二氧化钛纳米颗粒的波长下进行光激发的钛酸酯纳米管的界面电子转移。我们的结果说明了几种钛半导体的组合如何可以提高其单个组件的效率。

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