论文标题

溅射Ti-AU合金中的组成梯度:阳极Tio $ _2 $纳米管的现场选择性Au deporation tio $ _2 $纳米管,以增强光催化h $ _2 $ Evolution

Compositional gradients in sputtered Ti-Au alloys: Site-selective Au-decoration of anodic TiO$_2$ nanotubes towards enhanced photocatalytic H$_2$ evolution

论文作者

Hejazi, Seyedsina, Altomare, Marco, Mohajernia, Shiva, Schmuki, Patrik

论文摘要

Tio $ _2 $表面的Au纳米颗粒可以增强光催化H $ _2 $生成性能,因为它们的电子传输共催化能力。最大化共催化效应的关键是对光催化剂的AU纳米颗粒大小和放置的良好控制,与参数有关,例如Tio $ _2 $形态,照明波长和途径,以及光催化剂中的光渗透距离。在这里,我们提出了一种用Au纳米颗粒的阳极TIO $ _2 $纳米管(TNS)的现场选择性固有化的方法:我们由Ti和Au共同输入的Ti-AU合金层生产,这些合金层具有构成梯度的构成梯度;这些层在自我排序的电化学条件下阳极氧化时会形成Au饰的TNS,其中Au纳米颗粒密度和放置根据金属合金底物中的AU浓度曲线而变化。我们的结果表明,AU共催化剂放置对TNS层的光催化H $ _2 $进化性能强烈影响。我们证明,在种植AU装饰的TNS时,与具有同质的共催化剂装饰的TNS相比,使用合适的AU组成梯度的TI-AU底物可以导致更高的H $ _2 $演化速率。作为副作用,共催化剂纳米颗粒的适当放置可以减少贵金属的量,而无需倾倒H $ _2 $演变活动。

Au nanoparticles at the TiO$_2$ surface can enhance the photocatalytic H$_2$ generation performances owing to their electron transfer co-catalytic ability. Key to maximize the co-catalytic effect is a fine control over Au nanoparticle size and placement on the photocatalyst, in relation to parameters such as the TiO$_2$ morphology, illumination wavelength and pathway, and light penetration depth in the photocatalyst. Here we present an approach for site-selective intrinsic-decoration of anodic TiO$_2$ nanotubes (TNs) with Au nanoparticles: we produce, by Ti and Au co-sputtering, Ti-Au alloy layers that feature compositional gradients across their thickness; these layers, when anodized under self-ordering electrochemical conditions, can form Au-decorated TNs where the Au nanoparticle density and placement vary according to the Au concentration profile in the metal alloy substrates. Our results suggest that, the Au co-catalyst placement strongly affects the photocatalytic H$_2$ evolution performance of the TNs layers. We demonstrate that, when growing Au-decorated TNs, the use of Ti-Au substrates with a suitable Au compositional gradient can lead to higher H$_2$ evolution rates compared to TNs classically grown with a homogenous co-catalyst decoration. As a side effect, a proper placement of the co-catalyst nanoparticles allows for reducing the amount of noble metal without dumping the H$_2$ evolution activity.

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