Aromí Guillem, Ribas Joan, Gamez Patrick, Roubeau Olivier, Kooijman Huub, Spek Anthony L, Teat Simon, MacLean Elizabeth, Stoeckli-Evans Helen, Reedijk Jan
Departament de Química Inorgànica, Universitat de Barcelona, Diagonal 647, 08028 Barcelona, Spain.
Chemistry. 2004 Dec 3;10(24):6476-88. doi: 10.1002/chem.200400671.
Coordination complexes of the ligand H3L [1,3-bis(3-oxo-3-phenylpropionyl)-2-hydroxy-5-methylbenzene] with Cu(II) are reported. Clusters showing various nuclearities or modes of supramolecular organization have been prepared by slightly changing the reaction conditions and have been crystallographically characterized. The reaction of H3L with one equivalent of Cu(OAc)2 in DMF yields the dinuclear complex [Cu2(HL)2(dmf)2] (1). Reaction in MeOH of H3L with an increased amount of metal, in the form of Cu(NO3)2, and excess strong base (nBu4NOH) affords the cluster [Cu8(L)2(OMe)8(NO3)2] (2). Complex 2 is a dimer of two linear [Cu4] arrays bridged by methoxide ligands, where the polynucleating ligand is fully deprotonated. The [Cu4]2 clusters are linked to each other by NO3- bridges to form one-dimensional coordination polymers. The link between [Cu8] units and their relative spatial positioning can be modified by changing the anion of the Cu(II) salt, as demonstrated by the synthesis of the cluster polymers [Cu8(L)2(OMe)8Cl2] (3) and [Cu8(L)(OMe)7.86Br2.14] (4), where only NO3- has been replaced by Cl- or Br-, respectively. Similarly, when ClO4- is used, compound [Cu8(L)2(OMe)8(ClO4)2(MeOH)4] (5) can be isolated. It contains independent [Cu8] units. A slight change in the stoichiometry of the reaction leading to 2 affords the related complex catena-[Cu4(L)(OMe)3(NO3)2(H2O)0.36] (6). This polymer contains essentially the same [Cu4] moiety as 2, albeit organized in a completely different arrangement. Each [Cu4] unit in 6 is linked by OMe- ligands to two such equivalent groups to form an infinite chain. Magnetic susceptibility measurements reveal weak antiferromagnetic exchange between Cu(II) centers in 1 (J = -0.73 cm(-1)) and strong antiferromagnetic coupling within [Cu4] chains in 2, 5, and 6 (most negative J values of -113.8 and -177.3 cm(-1) for 2 and 6, respectively).
报道了配体H3L[1,3 - 双(3 - 氧代 - 3 - 苯基丙酰基)-2 - 羟基 - 5 - 甲基苯]与Cu(II)的配位络合物。通过稍微改变反应条件制备了显示出各种核数或超分子组织模式的簇合物,并通过晶体学进行了表征。H3L与一当量的Cu(OAc)2在DMF中反应生成双核络合物Cu2(HL)2(dmf)2。H3L在甲醇中与以Cu(NO3)2形式存在的增加量的金属以及过量的强碱(nBu4NOH)反应得到簇合物Cu8(L)2(OMe)8(NO3)2。络合物2是由甲醇盐配体桥连的两个线性[Cu4]阵列的二聚体,其中多核配体完全去质子化。[Cu4]2簇通过NO3 - 桥相互连接形成一维配位聚合物。如簇合物聚合物Cu8(L)2(OMe)8Cl2和Cu8(L)(OMe)7.86Br2.14的合成所示,通过改变Cu(II)盐的阴离子可以改变[Cu8]单元之间的连接及其相对空间定位,其中NO3 - 分别仅被Cl - 或Br - 取代。类似地,当使用ClO4 - 时,可以分离出化合物Cu8(L)2(OMe)8(ClO4)2(MeOH)4。它包含独立的[Cu8]单元。导致2的反应化学计量的轻微变化得到相关的络合物链状 - Cu4(L)(OMe)3(NO3)2(H2O)0.36。该聚合物基本上包含与2相同的[Cu4]部分,尽管其排列完全不同。6中的每个[Cu4]单元通过OMe - 配体与两个这样的等效基团相连形成无限链。磁化率测量揭示了1中Cu(II)中心之间的弱反铁磁交换(J = -0.73 cm(-1))以及2、5和6中[Cu4]链内的强反铁磁耦合(2和6的最负J值分别为 -113.8和 -177.3 cm(-1))。