首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Mononuclear versus dinuclear complex formation in nickel(II) sulfate/phenyl(2-pyridyl)ketone oxime chemistry depending on the ligand to metal reaction ratio: Synthetic, spectral and structural studies
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Mononuclear versus dinuclear complex formation in nickel(II) sulfate/phenyl(2-pyridyl)ketone oxime chemistry depending on the ligand to metal reaction ratio: Synthetic, spectral and structural studies

机译:硫酸镍(II)/苯基(2-吡啶基)酮肟化学中单核与双核配合物的形成取决于配体与金属的反应比:合成,光谱和结构研究

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The reactions of phenyl(2-pyridyl)ketone oxime (py)C(ph)NOH, with nickel(II) sulfate hexahydrate under reflux, in the absence of an external base, have been investigated. The reaction of NiSO4 center dot 6H(2)O with two equivalents of (py)C(ph)NOH in H2O/MeOH leads to the dinuclear complex [Ni-2(SO4)(2){(py)C(ph)NOH}(4)] (1), while an excess of the organic ligand affords the 1:3 cationic complex [Ni{(py)C(ph)NOH}(3)](SO4) (2). Compound 1 is transformed into 2 by a reaction with an excess of ligand in refluxing H2O/MeOH. Reactions of land 2 with a limited amount of LiOH give the known cluster [Ni-6(SO4)(4)(OH){(py)C(ph)NO}(3){(py)C(ph)NOH}(3)(H2O)(3)]. The structures of 1 and 2 have been determined by single-crystal X-ray crystallography. In both complexes the organic ligandchelates through its 2-pyridyl and oxime nitrogen atoms. The metal centers of 1 are bridged by two eta(1):eta(1):mu sulfato ligands; each metal ion has the cis-cis-trans deposition of the coordinated sulfato oxygen, pyridyl nitrogen and oxime nitrogen atoms, respectively. The cation of 2 is the fac isomer considering the positions of the coordinated pyridyl and oxime nitrogen atoms. The crystal structures of both complexes are stabilized by hydrogen bonds. Compounds I and 2 join a small family of structurally characterized metal complexes containing the neutral or anionic forms of phenyl(2-pyridyl)ketone oxime as ligands. The IR spectra of the two complexes are discussed in terms of the nature of bonding and their structures. From the vibrational spectroscopy viewpoint, the SO42- groups in 1 and 2 appear to have lower symmetries compared with those deduced from X-ray crystallography; this is attributed to the participation of sulfates in hydrogen bonding interactions. (C) 2007 Elsevier B.V. All rights reserved.
机译:在没有外部碱的情况下,研究了苯基(2-吡啶基)酮肟(py)C(ph)NOH与六水合硫酸镍(II)在回流下的反应。 NiSO4中心点6H(2)O与H2O / MeOH中两当量的(py)C(ph)NOH的反应生成双核络合物[Ni-2(SO4)(2){(py)C(ph) NOH}(4)](1),而过量的有机配体则提供了1:3阳离子络合物[Ni {(py)C(ph)NOH}(3)](SO4)(2)。通过与过量的配体在回流的H 2 O / MeOH中反应,将化合物1转化为2。区域2与少量LiOH的反应得到已知簇[Ni-6(SO4)(4)(OH){(py)C(ph)NO}(3){(py)C(ph)NOH} (3)(H 2 O)(3)]。 1和2的结构已经通过单晶X射线晶体学确定。在两种配合物中,有机配体都通过其2-吡啶基和肟氮原子螯合。 1的金属中心由两个eta(1):eta(1):mu硫酸根配体桥接;每个金属离子分别具有配位的硫酸根氧原子,吡啶基氮原子和肟氮原子的顺式-顺式沉积。考虑到配位的吡啶基和肟氮原子的位置,2的阳离子为fac异构体。两种配合物的晶体结构均通过氢键稳定。化合物I和2加入一小类结构特征为金属的络合物,其中含有中性或阴离子形式的苯基(2-吡啶基)酮肟作为配体。根据键的性质及其结构讨论了两种络合物的红外光谱。从振动光谱学的观点来看,1和2中的SO42-基团的对称性似乎比X射线晶体学推断的低。这归因于硫酸盐参与氢键相互作用。 (C)2007 Elsevier B.V.保留所有权利。

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