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基于席夫碱杯吡咯的双核大环裂缝的设计与合成

Design and synthesis of binucleating macrocyclic clefts derived from Schiff-base calixpyrroles.

作者信息

Givaja Gonzalo, Volpe Manuel, Leeland James W, Edwards Michael A, Young Thomas K, Darby S Barnie, Reid Stuart D, Blake Alexander J, Wilson Claire, Wolowska Joanna, McInnes Eric J L, Schröder Martin, Love Jason B

机构信息

School of Chemistry, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

出版信息

Chemistry. 2007;13(13):3707-23. doi: 10.1002/chem.200600989.

Abstract

The syntheses, characterisation and complexation reactions of a series of binucleating Schiff-base calixpyrrole macrocycles are described. The acid-templated [2+2] condensations between meso-disubstituted diformyldipyrromethanes and o-phenylenediamines generate the Schiff-base pyrrolic macrocycles H(4)L(1) to H(4)L(6) upon basic workup. The single-crystal X-ray structures of both H(4)L(3).2 EtOH and H(4)L(6).H2O confirm that [2+2] cyclisation has occurred, with either EtOH or H2O hydrogen-bonded within the macrocyclic cleft. A series of complexation reactions generate the dipalladium [Pd2(L)] (L=L(1) to L(5)), dinickel [Ni2(L(1))] and dicopper [Cu2(L)] (L=L(1) to L(3)) complexes. All of these complexes have been structurally characterised in the solid state and are found to adopt wedged structures that are enforced by the rigidity of the aryl backbone to give a cleft reminiscent of the structures of Pacman porphyrins. The binuclear nickel complexes [Ni2(mu-OMe)2Cl2(HOMe)2(H(4)L(1))] and [Ni2(mu-OH)2Cl2(HOMe)(H(4)L(5))] have also been prepared, although in these cases the solid-state structures show that the macrocyclic ligand remains protonated at the pyrrolic nitrogen atoms, and the Ni(II) cations are therefore co-ordinated by the imine nitrogen atoms only to give an open conformation for the complex. The dicopper complex [Cu2(L(3))] was crystallised in the presence of pyridine to form the adduct [Cu2(py)(L(3))], in which, in the solid state, the pyridine ligand is bound within the binuclear molecular cleft. Reaction between H(4)L(1) and [Mn(thf){N(SiMe(3))2}2] results in clean formation of the dimanganese complex [Mn2(L(1))], which, upon crystallisation, formed the mixed-valent complex [Mn2(mu-OH)(L(1))] in which the hydroxo ligand bridges the metal centres within the molecular cleft.

摘要

描述了一系列双核席夫碱杯吡咯大环化合物的合成、表征及络合反应。在碱性后处理过程中,内消旋二取代二甲酰二吡咯甲烷与邻苯二胺之间的酸模板[2 + 2]缩合反应生成席夫碱吡咯大环化合物H(4)L(1)至H(4)L(6)。H(4)L(3)·2EtOH和H(4)L(6)·H₂O的单晶X射线结构证实发生了[2 + 2]环化反应,EtOH或H₂O在大环腔内形成氢键。一系列络合反应生成了双钯[Pd₂(L)](L = L(1)至L(5))、双镍[Ni₂(L(1))]和双铜[Cu₂(L)](L = L(1)至L(3))配合物。所有这些配合物均已通过固态结构表征,发现它们采用楔形结构,这种结构由芳基主链的刚性所决定,形成一个让人联想到吃豆人卟啉结构的裂缝。还制备了双核镍配合物[Ni₂(μ - OMe)₂Cl₂(HOMe)₂(H(4)L(1))]和[Ni₂(μ - OH)₂Cl₂(HOMe)(H(4)L(5))],不过在这些情况下,固态结构表明大环配体在吡咯氮原子处仍保持质子化,因此Ni(II)阳离子仅与亚胺氮原子配位,使配合物呈现开放构象。双铜配合物[Cu₂(L(3))]在吡啶存在下结晶形成加合物[Cu₂(py)(L(3))],在固态中,吡啶配体结合在双核分子裂缝内。H(4)L(1)与[Mn(thf){N(SiMe(3))₂}₂]之间的反应顺利生成二锰配合物[Mn₂(L(1))],结晶时形成混合价态配合物[Mn₂(μ - OH)(L(1))],其中羟基配体在分子裂缝内桥连金属中心。

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