论文标题
阳极TIO $ _2 $纳米管膜的双侧腔催化激活,带有溅射涂层的PT,用于光催化h $ _2 $从水 - 乙醇混合物中产生
Double-Side Cocatalytic Activation of Anodic TiO$_2$ Nanotube Membranes with Sputter-Coated Pt for Photocatalytic H$_2$ Generation from Water-Ethanol Mixtures
论文作者
论文摘要
以膜形式的自动建立TIO $ _2 $纳米管层是通过Ti Metal的自组织阳极氧化和潜在的冲击技术来制造的。然后,通过溅射不同的pt量i)仅在顶部,ii)仅在底部或iii)在管层的顶部和底部进行装饰。将PT装饰的膜转移到顶部或在管上的管板中转移到FTO载玻片上,并在结晶后作为H $ _2 $生成的光催化剂在结晶后使用前侧或背面轻辐照进行了研究。与仅装饰有类似总体PT量的一侧的膜相比,管膜的双侧PT污染导致较高的H $ _2 $发电率(独立于管和光照射构型)。结果表明,这种效应不是归因于PT cocatalyst的总数,而是在两个管子的两个末端分布。这导致了优化的光吸收和电子扩散/转移动力学:膜的中心作用着光收集区,其中产生的电子可以扩散到PT/Tio $ _2 $ _2 $活动区(管极端),它们可以与环境反应并产生H $ _2 $ _2 $ _2 $。
Self-standing TiO$_2$ nanotube layers in the form of membranes are fabricated by self-organizing anodization of Ti metal and a potential shock technique. The membranes were then decorated by sputtering different Pt amounts i) only at the top, ii) only at the bottom or iii) at both top and bottom of the tube layers. The Pt-decorated membranes are transferred either in tube top up or in tube top down configuration onto FTO slides and investigated after crystallization as photocatalysts for H$_2$ generation using either front or back-side light irradiation. Double-side Pt-decoration of the tube membranes leads to higher H$_2$ generation rates (independent of tube and light irradiation configuration) compared to membranes decorated at only one side with similar overall Pt amounts. The results suggest that this effect is not ascribed to the overall amount of Pt cocatalyst as such but rather to its distribution at both tube extremities. This leads to optimized light absorption and electron diffusion/transfer dynamics: the central part of the membranes act as light harvesting zone and electrons therein generated can diffuse towards the Pt/TiO$_2$ active zones (tube extremities) where they can react with the environment and generate H$_2$ gas.