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TiO_2 nanotree films for the production of green H_2 by solar water splitting: From microstructural and optical characteristics to the photocatalytic properties

机译:用于通过太阳能水分解生产绿色H_2的TiO_2纳米树薄膜:从微观结构和光学特性到光催化性能

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Green H-2 production by solar water splitting relies entirely on the intrinsic properties of the photocatalyst. In this study the impact of these intrinsic properties on the photocatalytic activity of anatase TiO2, the quintessential component of state of the art photocatalytic systems was explored at the nanoscale. The exploration involved a holistic microstructural and optical characterization of fully crystallized anatase thin films synthetized by metalorganic chemical vapor deposition. A combination of electron microscopy, spectroscopic ellipsometry, and infrared spectroscopy revealed that when the deposition temperature increased, the morphology evolved from dense to porous and columnar nanostructures. Interestingly, the columns with a complex, tree-like nanostructure photogenerated 18 times more H-2 than the densest sample. This result shows that the beneficial effect of the morphological nano-complexification and crystallographic diversification of the exchange facets on the photocatalytic performance outweighs the detrimental aspects inherent to this evolution, namely the drop of the charge carrier transport and the increase of residual stress.
机译:通过太阳能水分解生产绿色H-2完全依赖于光催化剂的固有特性。在这项研究中,这些内在特性对锐钛矿型TiO2的光催化活性的影响是一种先进的光催化体系的重要组成部分,在纳米尺度上进行了研究。探索涉及通过金属有机化学气相沉积合成的完全结晶锐钛矿薄膜的整体微观结构和光学特性。电子显微镜,椭圆偏振光谱和红外光谱的结合表明,当沉积温度升高时,其形貌由致密的,多孔的和柱状的纳米结构演变而来。有趣的是,具有复杂树状纳米结构的色谱柱光生H-2的强度是最密集样品的18倍。该结果表明,交换刻面的形态学纳米复合化和晶体学多样化对光催化性能的有利影响超过了这种发展所固有的有害方面,即电荷载流子传输的下降和残余应力的增加。

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