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Oxidative double dehalogenation of tetrachlorocatechol by a bio-inspired Cu II complex: formation of chloranilic acid

机译:生物启发的Cu II复合物的氧化双脱卤或四氯邻苯二酚:氯冉酸的形成

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摘要

Copper(II) complexes of the potentially tripodal N,N,O ligand 3,3-bis(1-methylimidazol-2-yl)propionate (L1) and its conjugate acid HL1 have been synthesised and structurally and spectroscopically characterised. The reaction of equimolar amounts of ligand and CuII resulted in the complexes [Cu(L1)]n(X)n (X=OTf-, PF6-; n=1,2), for which a new bridging coordination mode of L1 is inferred. Although these complexes showed moderate catecholase activity in the oxidation of 3,5-di-tert-butylcatechol, surprising reactivity with the pseudo-substrate tetrachlorocatechol was observed. A chloranilato-bridged dinuclear CuII complex was isolated from the reaction of [Cu(L1)]n(PF6)n with tetrachlorocatechol. This stoichiometric oxidative double dehalogenation of tetrachlorocatechol to chloranilic acid by a biomimetic copper(II) complex is unprecedented. The crystal structure of the product, [Cu2(ca)Cl2(HL1)2], shows a bridging bis-bidentate chloranilato (ca) ligand and ligand L1 coordinated as its conjugate acid (HL1) in a tridentate fashion. Magnetic susceptibility studies revealed weak antiferromagnetic coupling (J=-35 cm-1) between the two copper centres in the dinuclear complex. Dissolution of the green complex [Cu2(ca)Cl2(HL1)2] resulted in the formation of new pink-purple mononuclear compound [Cu(ca)(HL1)(H2O)], the crystal structure of which was determined. It showed a terminal bidentate chloranilato ligand and N,N-bidentate coordination of ligand HL1, which illustrates the flexible coordination chemistry of ligand L1.
机译:已合成了潜在的三脚架N,N,O配体3,3-双(1-甲基咪唑-2-基)丙酸酯(L1)及其共轭酸HL1的铜(II)配合物,并在结构和光谱上进行了表征。等摩尔量的配体与CuII的反应生成了络合物[Cu(L1)] n(X)n(X = OTf-,PF6-; n = 1,2),对于该络合物,L1的新桥联配位模式为推断。尽管这些复合物在3,5-二叔丁基邻苯二酚的氧化中显示适度的儿茶酚酶活性,但是观察到与假底物四氯邻苯二酚的令人惊讶的反应性。从[Cu(L1)] n(PF6)n与四氯邻苯二酚的反应中分离出氯苯胺桥连的双核CuII复合物。通过仿生铜(II)络合物将四氯邻苯二酚化学计量氧化双脱卤为氯苯甲酸是前所未有的。产物[Cu2(ca)Cl2(HL1)2]的晶体结构显示了桥接的双齿双氯苯胺基(ca)配体和配体L1,以三齿方式与其共轭酸(HL1)配位。磁化率研究表明,双核复合物中两个铜中心之间的反铁磁耦合较弱(J = -35 cm-1)。绿色配合物[Cu2(ca)Cl2(HL1)2]的溶解导致形成新的粉红紫色单核化合物[Cu(ca)(HL1)(H2O)],并确定了其晶体结构。它显示了一个末端的双齿氯氰配体和配体HL1的N,N双齿配位,这说明了配体L1的柔性配位化学。

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