首页> 外文期刊>Journal of Catalysis >Dihydrogen reduction of nitroorganics, alkenes, alkynes, and Schiff bases using polymer-anchored orthometalated Schiff-base complexes of palladium(II) as catalysts
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Dihydrogen reduction of nitroorganics, alkenes, alkynes, and Schiff bases using polymer-anchored orthometalated Schiff-base complexes of palladium(II) as catalysts

机译:使用钯(II)的聚合物锚定的正金属席夫碱配合物,催化氧化二氢还原硝基有机物,烯烃,炔烃和席夫碱

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Complexation of Schiff bases derived from the condensation of aminopolystyrene and carbonyl compounds, PhCOR (R=H, CH3, C6H5) with palladium(II) acetate results in the formation of acetatobridged, dinuclear orthopalladated complexes anchored to macroporous polystyrene beads. Hydrogen activation of the material al 80 degrees C in DMF suspension brings to the reduction of coordinated azomethine group with simultaneous replacement of the bridged acetate by H and DMF, producing the corresponding mononuclear secondary amine complexes. The activated species are highly active towards the dihydrogen reduction of aromatic nitro-and carbonyl compounds, alkenes, alkynes, and Schiff bases under normal pressure at ambient temperature in aprotic solvents like DMF, DMSO, ethyl acetate, and THF. The highest activity was observed with R=H in a DMF medium. Similar polystyrene-based orthometalated secondary amine complexes of palladium(II) prepared by alternative methods exhibit comparable catalytic activities, The same specimen of the catalyst can bs used repeatedly for the reduction of the same or different substrates under comparable reaction conditions and stored indefinitely without any loss of catalytic activity. A tentative reduction mechanism has been suggested on the basis of catalyst transformation, Identification of the intermediates at various stages of reaction, and kinetic studies. (C) 1998 Academic Press. [References: 56]
机译:源自氨基聚苯乙烯和羰基化合物PhCOR(R = H,CH3,C6H5)缩合的席夫碱与乙酸钯(II)的络合导致形成固定在大孔聚苯乙烯珠粒上的乙酰桥双核正钯配合物。在80°C下DMF悬浮液中材料的氢活化会导致配位的甲亚胺基团的还原,同时用H和DMF取代桥接的乙酸盐,从而产生相应的单核仲胺络合物。活化的物质在常温常压下在非质子传递溶剂(如DMF,DMSO,乙酸乙酯和THF)中对芳香族硝基和羰基化合物,烯烃,炔烃和席夫碱的二氢还原具有很高的活性。在DMF培养基中,R = H时观察到最高活性。用替代方法制备的类似的聚苯乙烯基钯(II)的正金属化仲胺络合物显示出可比的催化活性。相同的催化剂样品可以在可​​比的反应条件下重复用于还原相同或不同的底物,并无限期地储存而没有任何反应。失去催化活性。在催化剂转化,反应各个阶段中间体的鉴定以及动力学研究的基础上,提出了一种初步的还原机理。 (C)1998年学术出版社。 [参考:56]

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