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Surface acoustic wave enhanced water splitting reaction with methanol as a sacrificial material

机译:光解水制氢研究声表面波增强用甲醇作为牺牲材料的反应

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摘要

TiO2 is the most widely used photocatalyst for the water splitting reaction to generate the clean fuel hydrogen, but its energy conversion efficiency is still low, mainly due to the easy recombination of photo-generated electron-hole pairs. In order to promote the efficiency of the catalyst, a surface acoustic wave assisted catalyst is presented in this study. On 128 degrees rotated y-cut LiNbO3, Rayleigh waves with a frequency of 150 MHz are generated and act on Pt modified TiO2 catalyst nanoparticles. We here quantify the effect of the application of surface acoustic waves to a Pt/TiO2 catalyst for hydrogen production by photo-splitting of a methanol/water vapor mixture. The results convincingly show that the photocatalytic activity of Pt/TiO2 is clearly enhanced by the SAW propagation underneath the catalyst layer. The effect increases nonlinearly with the applied power level of the acoustic waves. As the main mechanism, we identify the electric field produced by the displacement of LiNbO3, which hinders the recombination of photo-generated electron-hole pairs.
机译:二氧化钛是使用最广泛的光催化剂水分解反应生成干净氢燃料,但其能量转换效率仍然较低,主要是由于容易复合的photo-generated间对。声表面波辅助催化剂本研究提出了催化剂。度旋转y切割酸锂,瑞利波生成一个150 MHz的频率和行动Pt纳米粒子改性二氧化钛催化剂。量化的影响表面的应用声波Pt /二氧化钛催化剂氢生产甲醇/水的光解蒸汽混合物。Pt /二氧化钛的光催化活性看到下面传播增强催化剂层。与应用的声功率级波。电场产生的位移酸锂,这阻碍了重组photo-generated电子空穴对。

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