Lee Jeongmin, Chang Ji Young
Department of Materials Science and Engineering, College of Engineering, Seoul National University Seoul 08826 Korea
RSC Adv. 2018 Jul 16;8(45):25277-25282. doi: 10.1039/c8ra03275k.
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.
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。