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Increased Affinity of Small Gold Particles for Glycerol Oxidation over Au/TiO2 Probed by NMR Relaxation Methods

机译:通过NMR弛豫方法探测Au / TiO2对甘油氧化对甘油氧化的含量增加

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摘要

The aerobic oxidation of glycerol in aqueous solution over Au/TiO2 catalysts has been studied, and the effect of Au loading by wet impregnation, in the range 0.5–5% Au, has been assessed. Low metal loading favors the deposition of smaller particles, whereas higher loadings lead to the formation of much larger gold particles, as revealed by scanning transmission electron microscopy (STEM) analysis. Reaction studies show that a higher metal loading has a detrimental effect on the catalyst activity, which decreases significantly as the Au load increases. In addition to reaction studies, 1H NMR T1/T2 relaxation time measurements have been used to assess the effect of metal loading and particle size on the adsorption properties of glycerol (reactant) and water (solvent) within the catalyst. The NMR results show that the adsorption properties of glycerol relative to water as a function of the Au loading have a similar trend to that observed for the reactivity, with glycerol exhibiting a higher surface affinity relative to water for the catalyst with low Au loading. The overall results indicate that metal loading significantly affects the typical Au particle size, which, in turn, affects both the reaction and adsorption properties of glycerol over the catalyst surface. In particular, the trend in T1/T2 ratio clearly indicates that glycerol has a much stronger affinity with smaller gold particles, which is an important factor in promoting glycerol oxidation. This result is of great significance in understanding the reactivity of polyols over supported gold catalysts and gives the first experimental evidence that smaller gold particles tend to be stronger adsorption sites for glycerol, in agreement with computational and theoretical studies.
机译:研究了在Au / TiO2催化剂水溶液中甘油在水溶液中进行的好氧氧化,并评估了通过湿浸渍的Au负荷的影响,在0.5-5%Au的范围内。低金属加载有利于较小颗粒的沉积,而更高的载荷导致形成大多数较大的金颗粒,如通过扫描透射电子显微镜(Stem)分析的透露。反应研究表明,随着AU负荷的增加,更高的金属负载对催化剂活性有不利影响,这减少了显着的影响。除了反应研究之外,1H NMR T1 / T2弛豫时间测量用于评估金属负载和粒度对催化剂内甘油(反应物)和水(溶剂)的吸附性能的影响。 NMR结果表明,甘油相对于水的函数作为Au负荷的函数的吸附性质具有与反应性观察到的相似趋势,甘油表现出相对于具有低Au载荷的催化剂的水的表面亲和力。总体结果表明,金属负载显着影响典型的Au粒度,其又影响甘油在催化剂表面上的反应和吸附性能。特别地,T1 / T2比率的趋势清楚地表明甘油与较小的金颗粒具有更强的亲和力,这是促进甘油氧化的重要因素。该结果在理解支持的金催化剂上的多元醇的反应性方面具有重要意义,并给出了较小的金颗粒往往是甘油的较强的甘油的吸附位点,与计算和理论研究相一致。

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