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In Situ Measurement of Local Hydrogen Production Rate by Bubble-Evolved Recording

机译:气泡演化记录法原位测量局部产氢量

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Hydrogen visibly bubbles during photocatalytic water splitting under illumination with above-bandgap radiation, which provides a direct measurement of local gas-evolving reaction rate. In this paper, optical microscopy of superfield depth was used for recording the hydrogen bubble growth on Cd_(0.5)Zn_(0.5)S photocatalyst in reaction liquid and illuminated with purple light. By analyzing change of hydrogen bubble size as a function of time, we understood that hydrogen bubble growth experienced two periods, which were inertia effect dominated period and diffusion effect dominated period, respectively. The tendency of hydrogen bubble growth was similar to that of the gas bubble in boiling, while the difference in bubble diameter and growth time magnitude was great. Meanwhile, we obtained the local hydrogen production rate on photocatalyst active site by measuring hydrogen bubble growth variation characteristics. This method makes it possible to confirm local actual hydrogen evolution rate quantitatively during photocatalytic water splitting.
机译:在带隙以上的辐射照明下,光催化水分解过程中氢明显冒泡,这可直接测量局部气体逸出反应速率。本文利用超场深度光学显微镜记录了反应液中Cd_(0.5)Zn_(0.5)S光催化剂上氢气泡的生长情况,并用紫光照射。通过分析氢气泡大小随时间的变化,我们了解到氢气泡的生长经历了两个时期,分别是惯性效应为主的时期和扩散效应为主的时期。氢气泡的生长趋势与沸腾时的气泡相似,但气泡直径和生长时间量的差异较大。同时,通过测量氢气泡的生长变化特征,获得了光催化剂活性部位的局部产氢率。这种方法可以在光催化水分解过程中定量确定局部实际氢的释放速率。

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