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Environmentally benign aqueous oxidative catalysis using AuPd/TiO2 colloidal nanoparticle system stabilized in absence of organic ligands

机译:使用AuPd / TiO2胶体纳米粒子系统对环境无害的水性氧化催化,在没有有机配体的情况下稳定

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摘要

The use of nanoparticles (NPs) for efficient, environmentally benign catalysis is receiving increasing attention, with gold and palladium NPs being an important area of research. Herein we present a simple, reliable and cost-effective preparation of a catalytically active gold-palladium NP system that is stabilized by an aqueous titania dispersion (AuPd/TiO2) in the absence of organic ligands. The major advantages of this system are that it is catalytically active in the as-prepared colloidal state, eliminating the need for drying and sintering before use and is colloidally stable in oxidative conditions. The AuPd/TiO2 system exhibits efficient oxidative catalysis in both the presence of hydrogen peroxide and atmospheric oxygen, even at ambient temperatures for our model aqueous phase reaction of 1-phenylethanol oxidation. The preparation and characterization of the AuPd/TiO2 system is described with respect to the effects of colloidal stability, particle size and morphology on aqueous oxidative catalysis. The major finding is that NPs with a gold core and thin palladium shell (70 mol% gold, 30 mol% palladium, Au_(70)Pd_(30)/TiO2) provides the most catalytically active system. The ability of the catalyst to use atmospheric oxygen at ambient temperatures in aqueous media highlights the strong potential of the developed catalytic system for green oxidative processes. The presented approach provides a new platform of all-inorganic colloidal nanoparticle systems for future development of industrially viable, environmentally friendly catalysts.
机译:纳米颗粒(NPs)用于高效,对环境有益的催化作用越来越受到关注,其中金和钯NPs是重要的研究领域。本文中,我们介绍了一种简单,可靠且经济高效的催化活性金-钯NP体系的制备方法,该体系可通过二氧化钛分散液(AuPd / TiO2)在不存在有机配体的情况下稳定下来。该系统的主要优点是它在制备的胶体状态下具有催化活性,无需使用前进行干燥和烧结,并且在氧化条件下胶体稳定。 AuPd / TiO2系统在过氧化氢和大气氧的存在下均表现出有效的氧化催化作用,即使在环境温度下,我们的1-苯基乙醇氧化模型水相反应也是如此。关于胶体稳定性,粒径和形态对水性氧化催化的影响,描述了AuPd / TiO2系统的制备和表征。主要发现是具有金核和薄钯壳(70摩尔%金,30摩尔%钯,Au_(70)Pd_(30)/ TiO2)的NP提供了最具催化活性的体系。催化剂在环境温度下在水性介质中使用大气氧气的能力凸显了开发的催化体系在绿色氧化过程中的强大潜力。提出的方法为工业可行的,环保的催化剂的未来发展提供了全无机胶体纳米颗粒系统的新平台。

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