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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Gold nanoparticles anchored on mesoporous zirconia thin films for efficient catalytic oxidation of carbon monoxide at low temperatures
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Gold nanoparticles anchored on mesoporous zirconia thin films for efficient catalytic oxidation of carbon monoxide at low temperatures

机译:锚定的金纳米粒子锚定在介孔氧化锆薄膜上,用于在低温下有效催化氧化一氧化碳

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摘要

We developed a composite consisting of mesoporous ZrO2 thin films supporting catalytically active gold nanoparticles (Au NPs) for the oxidative removal of carbon monoxide (CO). At first, highly ordered mesoporous ZrO2 (m-ZrO2) thin films are prepared by sol-gel-based spin-coating process followed by a controlled thermal treatment process in air. Then, Au NPs are successfully dispersed and deposited over the entire framework of mesoporous ZrO2 thin films to form Au/m-ZrO2 films. The specific surface area and crystallinity of the m-ZrO2 thin films as well as the periodicity of the mesoporous framework can be controlled by adjusting the calcination temperature and the synthetic parameters. The catalytic efficiency of the optimized Au/m-ZrO2 composite film toward CO conversion reaches 94% of circuladon time, and is well-retained even after 1 h (similar to 88%).
机译:我们开发了一种由支撑催化活性的金纳米颗粒(Au NP)的中孔ZrO2薄膜组成的复合材料,用于氧化氧化一氧化碳(CO)。 首先,通过基于溶胶 - 凝胶的旋涂过程,然后在空气中进行受控的热处理过程,制备高度有序的介孔ZrO2(M-ZrO2)薄膜。 然后,Au nps成功地分散并沉积在中孔ZrO2薄膜的整个框架上以形成Au / m-ZrO2薄膜。 通过调节煅烧温度和合成参数,可以控制M-ZrO 2薄膜的比表面积和结晶度以及中孔框架的周期性。 优化的Au / M-ZrO2复合膜朝向CO转化的催化效率达到94%的环状时间,即使在1小时后均匀保留(类似于88%)。

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