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Multicatalytic colloids with highly scalable, adjustable, and stable functionalities in organic and aqueous media

机译:Multicatalytic胶体高度可伸缩的,可调,在有机和稳定的功能和水媒体

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摘要

Despite a large number of developments of noble metal (or metal oxide) NP-based catalysts, it has been a great challenge to prepare high-performance recyclable catalysts with integrated functionalities that can be used in various solvent media. Here, we report on layer-by-layer (LbL) assembled multicatalysts with high catalytic performance, showing high dispersion and recycling stability in organic and aqueous media. The remarkable advantages of our approach are as follows. (i) Various metal or metal oxide NPs with desired catalytic performance can be easily incorporated into multilayered shells, forming densely packed arrays that allow one colloid to be used as a multicatalyst with highly integrated and controllable catalytic properties. (ii) Additionally, the dispersion stability of catalytic colloids in a desired solvent can be determined by the type of ultrathin outermost layer coating each colloid. (iii) Lastly, the covalent bonding between inorganic NPs and dendrimers within multilayer shells enhances the recycling stability of multicatalytic colloids. The resulting core-shell colloids including OA-Fe3O4 NPs, TOABr-Pd NPs, and OA-TiO2 NPs exhibited excellent performance in the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB) and photocatalysis in aqueous media and in the Sonogashira coupling reaction (99% yield) in organic media. Given that the catalytic properties of recyclable colloids reported to date have entirely depended on the functionality of a single catalytic NP layer deposited onto colloids in selective solvent media, our approach provides a basis for the design and exploitation of high-performance recyclable colloids with integrated multicatalytic properties and high dispersion stability in a variety of solvents.
机译:尽管大量的高尚的发展的金属(或金属氧化物)NP-based催化剂,是一个巨大的挑战做好准备高性能的可回收的催化剂与集成的功能,可用于各种溶剂的媒体。逐层组装multicatalysts (LbL)高催化性能,显示高色散和回收有机和稳定水媒体。方法如下。金属氧化物NPs与理想的催化性能可以很容易地纳入多层壳,形成密集的数组,允许一个被用作胶体multicatalyst和高度集成可控催化性质。此外,的分散稳定性催化作用所需的溶剂由超薄外层的类型每个胶体层涂料。无机NPs和之间的共价键在多层壳增强了树枝状分子回收multicatalytic胶体的稳定性。由此产生的核壳胶体包括OA-Fe3O4 NPs, TOABr-Pd NPs, and OA-TiO2 NPs表现出性能优良的氧化3, 3, 5, 5 ' -tetramethylbenzidine(三甲)和光催化在水介质和Sonogashira耦合反应(99%的收益率)有机媒体。据报道,可回收利用胶体的性质日期已经完全依赖于功能一个催化NP层沉积到胶体在选择性溶剂中媒体,我们的方法设计和开发提供了依据高性能可回收的胶体和高集成multicatalytic属性各种溶剂的分散稳定性。

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