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Photocatalytic oxidation of methane over silver decorated zinc oxide nanocatalysts

机译:银修饰的氧化锌纳米催化剂上甲烷的光催化氧化

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摘要

The search for active catalysts that efficiently oxidize methane under ambient conditions remains a challenging task for both C1 utilization and atmospheric cleansing. Here, we show that when the particle size of zinc oxide is reduced down to the nanoscale, it exhibits high activity for methane oxidation under simulated sunlight illumination, and nano silver decoration further enhances the photo-activity via the surface plasmon resonance. The high quantum yield of 8% at wavelengths <400 nm and over 0.1% at wavelengths ∼470 nm achieved on the silver decorated zinc oxide nanostructures shows great promise for atmospheric methane oxidation. Moreover, the nano-particulate composites can efficiently photo-oxidize other small molecular hydrocarbons such as ethane, propane and ethylene, and in particular, can dehydrogenize methane to generate ethane, ethylene and so on. On the basis of the experimental results, a two-step photocatalytic reaction process is suggested to account for the methane photo-oxidation.
机译:寻找在环境条件下能有效氧化甲烷的活性催化剂对于C1的利用和大气清洁仍然是一项艰巨的任务。在这里,我们表明当氧化锌的粒径减小到纳米级时,它在模拟的阳光照射下表现出对甲烷氧化的高活性,并且纳米银装饰通过表面等离子体激元共振进一步增强了光活性。在用银装饰的氧化锌纳米结构上,在<400 nm的波长处达到8%的高量子产率,而在约470 nm的波长处获得超过0.1%的高量子产率,显示了大气甲烷氧化的巨大希望。此外,纳米颗粒复合材料可以有效地光氧化其他小分子烃,例如乙烷,丙烷和乙烯,并且特别地,可以使甲烷脱氢以产生乙烷,乙烯等。根据实验结果,建议采用两步光催化反应工艺来解决甲烷的光氧化反应。

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