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Synthesis of highly dispersed gold nanoparticles on Al2O3, SiO2, and TiO2 for the solvent-free oxidation of benzyl alcohol under low metal loadings

机译:在低金属载荷下,在Al 2 O 3,SiO2和TiO2上合成高度分散的金纳米粒子,用于在低金属载体下无溶剂氧化苄醇

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We reported the organic template-free synthesis of gold (Au) nanoparticles (NPs) supported on TiO2, SiO2, and Al2O3 displaying uniform Au sizes and high dispersions over the supports. The Au-based catalysts were prepared by a deposition-precipitation method using urea as the precipitating agent. In the next step, the solvent-free oxidation of benzyl alcohol was investigated as model reaction using only 0.08-0.05mol% of Au loadings and oxygen (O-2) as the oxidant. Very high catalytic performances (TOF up to 443,624h(-1)) could be achieved. Specifically, we investigated their catalytic activities, selectivity, and stabilities as well as the role of metal-support interactions over the performances. The conversion of the substrate was found to be associated with the nature of the employed support as the Au NPs presented similar sizes in all materials. A sub-stoichiometric amount of base was sufficient for the catalyst activation and the observation of the catalysts profile over the time enable insights on their recyclability performances. We believe this reported method represents a facile approach for the synthesis of uniform Au-supported catalysts displaying high performances.
机译:我们报道了在TiO 2,SiO 2和Al2O3上负载的Gold(Au)纳米颗粒(NPS)的有机模板合成,在支撑件上显示均匀的Au尺寸和高分子。通过使用尿素作为沉淀剂的沉淀沉淀法制备了基于Au的催化剂。在下一步中,使用仅0.08-0.05mol%的Au载荷和氧(O-2)作为氧化剂,研究了苄醇的无溶剂氧化作为模型反应。可以实现非常高的催化性能(最高可达443,624h(-1))。具体地,我们研究了催化活动,选择性和稳定性以及金属支持相互作用对性能的作用。发现基材的转化与所用载体的性质相关,因为Au NP在所有材料中呈现相似的尺寸。亚化学计量的碱基足以使催化剂活化和催化剂曲线观察随着时间的推移能够实现对其可回收性性能的见解。我们认为,该报道的方法代表了一种均匀的Au负载型催化剂的容易方法,其显示高性能。

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