Department of Chemistry, Jadavpur University, Raja S. C. Mullick Road, Kolkata 700032, West Bengal, India.
Inorg Chem. 2011 Sep 5;50(17):8326-39. doi: 10.1021/ic200846j. Epub 2011 Jul 28.
Three different ONO donor acetyl hydrazone Schiff bases have been synthesized from the condensation of acetic hydrazide with three different carbonyl compounds: salicylaldehyde (HL(1)), 2-hydroxyacetophenone (HL(2)), and 2, 3-dihydroxybenzaldehyde (HL(3)). These tridentate ligands are reacted with Ni(OOCCF(3))(2)·xH(2)O to yield three new Ni(II) complexes having distorted octahedral geometry at each Ni center: Ni(L(1))(OOCCF(3))(CH(3)OH) (1), Ni(L(2))(OOCCF(3))(H(2)O) (2), and Ni(L(3))(L(3)H)(H(2)O)(1.65)(CH(3)OH)(0.35) (3). The ligands and the complexes have been characterized by elemental analysis and IR and UV-vis spectroscopy, and the structures of the complexes have been established by single crystal X-ray diffraction (XRD) study. 1 and 2 are centrosymmetric dinuclear complexes and are structural isomers whereas 3 is a bis chelated cationic monomer coordinated by one neutral and one monoanionic ligand. O-H···O hydrogen bonds in 3 lead to the formation of a dimer. Slight steric and electronic modifications in the ligand backbone provoke differences in the supramolecular architectures of the complexes, leading to a variety of one, two, and three-dimensional hydrogen bonded networks in complexes 1-3 respectively. Variable temperature magnetic susceptibility measurements reveal that moderate antiferromagnetic interactions operate between phenoxo bridged Ni(II) dimers in 1 and 2 whereas very weak antiferromagnetic exchange occurs through hydrogen bonding and π-π stacking interactions in 3. All complexes are proved to be efficient catalysts for the epoxidation of alkenes by NaOCl under phase transfer condition. The efficiency of alkene epoxidation is dramatically enhanced by lowering the pH, and the reactions are supposed to involve high valent Ni(III)-OCl or Ni(III)-O· intermediates. 3 is the best epoxidation catalyst among the three complexes with 99% conversion and very high turnover number (TON, 396).
三种不同的 ONO 供体乙酰腙席夫碱是由乙酸肼与三种不同的羰基化合物缩合而成的:水杨醛(HL(1))、2-羟基苯乙酮(HL(2))和 2,3-二羟基苯甲醛(HL(3))。这些三齿配体与 Ni(OOCCF(3))(2)·xH(2)O 反应,得到三种具有扭曲八面体几何形状的新 Ni(II)配合物:Ni(L(1))(OOCCF(3))(CH(3)OH)(1)、Ni(L(2))(OOCCF(3))(H(2)O)(2)和Ni(L(3))(L(3)H)(H(2)O)(1.65)(CH(3)OH)(0.35)(3)。配体和配合物通过元素分析和红外和紫外可见光谱进行了表征,并通过单晶 X 射线衍射(XRD)研究建立了配合物的结构。1 和 2 是中心对称的双核配合物,是结构异构体,而 3 是由一个中性和一个单阴离子配体配位的双螯合阳离子单体。3 中的 O-H···O 氢键导致二聚体的形成。配体骨架中的轻微空间和电子修饰导致配合物 1-3 的超分子结构存在差异,导致配合物 1-3 分别形成了一维、二维和三维氢键网络。变温磁化率测量表明,在 1 和 2 中,酚氧基桥联的 Ni(II)二聚体之间存在中等强度的反铁磁相互作用,而在 3 中,通过氢键和π-π堆积相互作用发生非常弱的反铁磁交换。所有配合物都被证明是在相转移条件下用过氧化氢氧化烯烃的有效催化剂。通过降低 pH 值,烯烃的环氧化效率显著提高,反应涉及高价 Ni(III)-OCl 或 Ni(III)-O·中间体。在三种配合物中,3 是最好的环氧化催化剂,转化率为 99%,转化率数(TON,396)非常高。