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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Alcohol Oxidation at Platinum-Gas and Platinum-Liquid Interfaces: The Effect of Platinum Nanoparticle Size, Water Coadsorption, and Alcohol Concentration
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Alcohol Oxidation at Platinum-Gas and Platinum-Liquid Interfaces: The Effect of Platinum Nanoparticle Size, Water Coadsorption, and Alcohol Concentration

机译:铂 - 气和铂 - 液体界面的醇氧化:铂纳米颗粒尺寸,水吸附剂和醇浓度的影响

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摘要

Alcohol oxidation reaction over platinum nanoparticles with size ranging from 2 to 8 nm deposited on mesoporous silica MCF-17 was studied in the gas and liquid phases. Among methanol, ethanol, 2-propanol, and 2-butanol oxidations, the turnover frequency increased as the nanoparticle size became large in both reaction phases. The activation energy in the gas phase was higher than that in the liquid phase. Water coadsorption decreased the turnover rate of all the gas and liquid phase oxidations except for the gas-phase 2-butanol case, while a certain amount of water promoted 2-propanol oxidation in the liquid phase. Sum frequency generation vibrational spectroscopy study and DFT calculation revealed that the alcohol molecules pack horizontally on the metal surface in low concentration and stand up in high concentration, which affects the dissociation of beta-hydrogen of the alcohol as the critical step in alcohol oxidation.
机译:在气体和液相中研究了沉积在中孔二氧化硅MCF-17上的2至8nm的铂纳米粒子上的醇氧化反应。 在甲醇,乙醇,2-丙醇和2-丁醇氧化中,随着纳米颗粒尺寸在两个反应相中变大而增加的周转频率增加。 气相中的活化能量高于液相中的活化能。 除了气相2-丁醇壳之外,水共吸收降低了所有气相和液相氧化的周转率,而一定量的水促进了液相中的2-丙醇氧化。 和频率产生振动光谱研究和DFT计算显示,醇分子在低浓度下水平地包装在金属表面上,并高浓度突出,这会影响醇的β-氢的解离作为醇氧化的临界步骤。

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