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表面活性剂包裹的多金属氧酸盐作为固定化超分子催化剂,用于高效和选择性氧化反应。

Surfactant-encapsulated polyoxometalates as immobilized supramolecular catalysts for highly efficient and selective oxidation reactions.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun 130012, PR China.

出版信息

Chemistry. 2010 Jan 18;16(3):1068-78. doi: 10.1002/chem.200902261.

Abstract

A type of interesting immobilized supramolecular catalysts based on surfactant-encapsulated polyoxometalates has been developed for oxidation reactions. Through a sol-gel process with tetraethyl orthosilicate, hydroxyl-terminated surfactant-encapsulated polyoxometalate complexes have been covalently and uniformly bound to a silica matrix with unchanged complex structure. The formed hybrid catalysts possess a defined hydrophobic nano-environment surrounding the inorganic clusters, which is conducive to compatibility between the polyoxometalate catalytic centres and organic substrates. The supramolecular synergy between substrate adsorption, reaction, and product desorption during the oxidation process has been found to have an obvious influence on the reaction kinetics, with the activity of the catalyst being greatly improved. The supramolecular catalysts performed effectively in the selective oxidation of several different kinds of organic compounds, such as alkenes, alcohols, and sulfides, and the main products were the corresponding epoxides, ketones, sulfoxides, and sulfones. More significantly, the catalyst could be easily recovered by simple filtration, and the catalytic activity was well retained for at least five cycles. Finally, the present strategy has proved to be a general route for the fabrication of supramolecular hybrid catalysts containing common polyoxometalates suitable for various purposes.

摘要

已开发出一种基于表面活性剂包裹的多金属氧酸盐的有趣的固定化超分子催化剂,用于氧化反应。通过四乙氧基硅烷的溶胶-凝胶过程,将端羟基的表面活性剂包裹的多金属氧酸盐配合物通过共价键均匀地结合到具有不变的配合物结构的二氧化硅基质上。形成的杂化催化剂具有围绕无机簇的确定的疏水性纳米环境,有利于多金属氧酸盐催化中心与有机底物之间的相容性。在氧化过程中,底物吸附、反应和产物解吸的超分子协同作用对反应动力学有明显的影响,大大提高了催化剂的活性。超分子催化剂在几种不同类型的有机化合物如烯烃、醇和硫化物的选择性氧化中表现出有效,主要产物是相应的环氧化物、酮、亚砜和砜。更重要的是,催化剂可以通过简单的过滤很容易地回收,并且催化活性至少保持五个循环。最后,该策略已被证明是制备适合各种用途的含有常见多金属氧酸盐的超分子杂化催化剂的通用途径。

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