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基于乙炔钯的管状微孔聚合物整体材料的合成:一种自模板法——用于多相催化的负载型钯纳米粒子的潜在前驱体

Synthesis of a palladium acetylide-based tubular microporous polymer monolith a self-template approach: a potential precursor of supported palladium nanoparticles for heterogeneous catalysis.

作者信息

Lee Jeongmin, Chang Ji Young

机构信息

Department of Materials Science and Engineering, College of Engineering, Seoul National University Seoul 08826 Korea

出版信息

RSC Adv. 2018 Jul 16;8(45):25277-25282. doi: 10.1039/c8ra03275k.

Abstract

A monolithic, palladium acetylide-based conjugated microporous polymer, Pd-CMP, was synthesized from a palladium dichloride and a trialkyne. The polymerization proceeded in two different ways, the dehydrohalogenation reaction between the alkyne and the palladium halide and the homocoupling reaction of the alkyne. Pd-CMP had a rigid hollow tubular structure. The formed crystalline triethylammonium chloride (TEACl) rod played a critical role in the formation of the tubular morphology as a template. Through the attachment of the polymer particles to the surface of the rod and their reactions with soluble alkynes, a core-shell structure with a TEACl core and a polymer shell formed. The TEACl core was removed by washing with methanol to yield a hollow polymer tube. Pd-CMP showed a hierarchical pore structure and reversible compressibility. Supported Pd nanoparticles were prepared by one-step thermolysis of Pd-CMP as a heterogeneous catalyst. The average diameters of NPs in the products thermolyzed at 300 (Pd-CMP) and 500 °C (Pd-CMP) were 2.6 and 4.1 nm, respectively. Pd-CMP was used in the heterogeneous catalysis of the 4-nitrophenol reduction reaction and Suzuki-Miyaura coupling between iodobenzene and phenylboronic acid. The reaction yields were higher than 95%. The catalyst could be used for a flow reaction and easily recycled without significant activity loss.

摘要

一种基于乙炔钯的整体共轭微孔聚合物Pd-CMP,由二氯化钯和三炔合成。聚合反应以两种不同方式进行,即炔烃与卤化钯之间的脱卤化氢反应以及炔烃的均偶联反应。Pd-CMP具有刚性中空管状结构。所形成的结晶三乙氯化铵(TEACl)棒作为模板在管状形态的形成中起关键作用。通过聚合物颗粒附着在棒的表面并与可溶性炔烃反应,形成了具有TEACl核和聚合物壳的核壳结构。通过用甲醇洗涤除去TEACl核,得到中空聚合物管。Pd-CMP显示出分级孔结构和可逆压缩性。通过对Pd-CMP进行一步热解制备负载型钯纳米颗粒作为多相催化剂。在300℃(Pd-CMP)和500℃(Pd-CMP)热解产物中纳米颗粒的平均直径分别为2.6和4.1nm。Pd-CMP用于4-硝基苯酚还原反应以及碘苯与苯硼酸之间的铃木-宫浦偶联的多相催化。反应产率高于95%。该催化剂可用于流动反应,并且易于回收,活性无明显损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f25/9082618/b382755372d9/c8ra03275k-f1.jpg

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