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首页> 外文期刊>Chemical engineering journal >Boosting Pt/TiO2 hydrogen photoproduction through Zr doping of the anatase structure: A spectroscopic and mechanistic study
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Boosting Pt/TiO2 hydrogen photoproduction through Zr doping of the anatase structure: A spectroscopic and mechanistic study

机译:通过Zr掺杂锐钛矿结构促进Pt / TiO2氢气切换:光谱和机械研究

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摘要

The production of hydrogen from the photoreforming of methanol was essayed using an anatase-based system, having Pt nanoparticles and a Zr-doped anatase high surface area support. The production of hydrogen was quantitatively analyzed using the quantum efficiency parameter under UV and visible illumination conditions. The study showed that a 2.5 mol. % of Zr renders an outstanding material (4.6% quantum efficiency) for the fruitful use of sunlight as a green source of energy of the process. The outstanding promotion of activity orginated by Zr doping of the anatase structure was studied using in-situ infrared, photoluminescence and electron paramagnetic resonance spectroscopies. The multitechnique spectroscopic investigation of the reaction mechanism demonstrates that this occurs through a complex reforming plus water gas shift path. The study also unveils that optoelectronic properties of the solids derived from Zr incorporation drive activity of the system by controlling light absorption and, mainly, charge carrier recombination and interaction with the reactant molecules.
机译:使用基于锐钛矿的系统,具有Pt纳米粒子和Zr掺杂的锐钛矿高表面积载体,从甲醇的光致甲醇的光学产生氢气。使用UV下的量子效率参数和可见照明条件下的量子效率参数定量分析氢的生产。该研究表明,2.5摩尔。 ZR的百分比呈现出优异的材料(4.6%的量子效率),用于富有成效地使用阳光作为该过程的绿色能源来源。使用原位红外线,光致发光和电子顺磁共振谱研究,研究了通过Zr掺杂的Zr掺杂活性的优异促进。反应机制的多书光谱研究表明,这通过复合重整加水煤气换流路径发生。该研究还推出了通过控制光吸收和主要电荷载体重组和与反应物分子的相互作用来渗透来自Zr掺入的固体的光电性能。

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