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Influence of the counter anion and solvent in the structure of copper derivatives with the 2,3-bis(2-pyridyl)pyrazine ligand

机译:抗衡阴离子和溶剂对具有2,3-双(2-吡啶基)吡嗪配体的铜衍生物结构的影响

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Several compounds have been isolated from the reaction between different copper bis(acetylacetonato) derivatives and the potentially bridging ligand 2,3-bis(2-pyridyl)pyrazine (bppz). A compound of formula [Cu(tfacac) _2(bppz)] (1) is obtained when the substituted trifluoromethylacetylacetonato is used. The use of different anions and the unsubstituted acetylacetonato give rise to new derivatives of general formula [{Cu(acac))_2(μ-bppz)_2]X_2 (X~-- BF_4~-, 2; PF_6~-, 3; BPh _4~-, 4). In these compounds the bppz ligand is acting as a bridge by chelating one copper atom and bonding monodentate a second copper atom. The presence of anions with different coordination abilities introduces variations in the copper environment and geometry. When the non-coordinating tetraphenylborate is used different compounds depending on the nature of the solvent are obtained. The dimer 4 was isolated from a methanol/chloroform mixture, while in the absence of chloroform the monomeric compound of formula [Cu(acac)(bppz)(ROH)](BPh_4)-ROH (ROH=MeOH, 5) was obtained. When ethanol was used instead of methanol the analogous derivative 6 (R=EtOH) was isolated. Both species show a mononuclear structure with the copper atom five-coordinated by the chelating acac and bppz ligands and one hydroxo group occupying the apical position. A similar environment for the copper appears in [Cu(tfacac)(bppz)(MeOH)](BPh_4), 7, which shows a dimeric structure through hydrogen bonds interactions. The magnetic susceptibility data of the dimeric compounds show very weak antiferromagnetic interactions between the copper atoms, an expected fact since the bridging bppz ligand is not planar but the monodentate pyridine is more or less perpendicular to the other two aromatic rings, precluding the spin exchange via the it ligand electrons.
机译:从不同的双(乙酰​​丙酮铜)铜衍生物与潜在的架桥配体2,3-双(2-吡啶基)吡嗪(bppz)之间的反应中已分离出几种化合物。当使用取代的三氟甲基乙酰基丙酮酸酯时,获得式[Cu(tfacac)_2(bppz)]的化合物(1)。使用不同的阴离子和未取代的乙酰丙酮可产生通式为[{Cu(acac))_ 2(μ-bppz)_2] X_2(X〜-BF_4〜-,2; PF_6〜-,3; BPh _4〜-,4)。在这些化合物中,bppz配体通过螯合一个铜原子并单键结合另一个铜原子而充当桥键。具有不同配位能力的阴离子的存在会引起铜环境和几何形状的变化。当使用非配位的四苯基硼酸酯时,根据溶剂的性质得到不同的化合物。从甲醇/氯仿混合物中分离二聚体4,而在不存在氯仿的情况下,获得式[Cu(acac)(bppz)(ROH)](BPh_4)-ROH(ROH = MeOH,5)的单体化合物。当使用乙醇代替甲醇时,分离了类似的衍生物6(R = EtOH)。两种都显示出单核结构,铜原子被螯合的acac和bppz配体五配位,并且一个羟基占据顶端位置。铜的类似环境出现在[Cu(tfacac)(bppz)(MeOH)](BPh_4),7中,该环境通过氢键相互作用显示出二聚结构。二聚体化合物的磁化率数据显示铜原子之间的反铁磁相互作用非常弱,这是预期的事实,因为桥接的bppz配体不是平面的,但单齿吡啶或多或少地垂直于其他两个芳环,从而排除了通过它是配体电子。

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