Sanyal Ria, Zhang Xuepeng, Kundu Priyanka, Chattopadhyay Tanmay, Zhao Cunyuan, Mautner Franz A, Das Debasis
Department of Chemistry, University of Calcutta , 92 A.P.C. Road, Kolkata 700009, India.
Inorg Chem. 2015 Mar 2;54(5):2315-24. doi: 10.1021/ic502937a. Epub 2015 Feb 19.
An "end-off" compartmental ligand has been synthesized by an abnormal Mannich reaction, namely, 2-[bis(2-methoxyethyl)aminomethyl]-4-isopropylphenol yielding three centrosymmetric binuclear μ-phenoxozinc(II) complexes having the molecular formula [Zn2(L)2X2] (Zn-1, Zn-2, and Zn-3), where X = Cl(-), Br (-), and I (-), respectively. X-ray crystallographic analysis shows that the ZnO3NX chromophores in each molecule form a slightly distorted trigonal-bipyramidal geometry (τ = 0.55-0.68) with an intermetallic distance of 3.068, 3.101, and 3.083 Å (1-3, respectively). The spectrophotometrical investigation on their phosphatase activity established that all three of them possess significant hydrolytic efficiency. Michaelis-Menten-derived kinetic parameters indicate that the competitiveness of the rate of P-O bond fission employing the phosphomonoester (4-nitrophenyl)phosphate in 97.5% N,N-dimethylformamide is 3 > 1 > 2 and the kcat value lies in the range 9.47-11.62 s(-1) at 298 K. Theoretical calculations involving three major active catalyst forms, such as the dimer-cis form (D-Cis), the dimer-trans form (D-Trans), and the monoform (M-1 and M-2), systematically interpret the reaction mechanism wherein the dimer-cis form with the binuclear-bridged hydroxide ion acting as the nucleophile and one water molecule playing a role in stabilizing the leaving group competes as the most favored pathway.
通过异常曼尼希反应合成了一种“端基封闭”的间隔配体,即2-[双(2-甲氧基乙基)氨基甲基]-4-异丙基苯酚,得到了三种具有中心对称的双核μ-苯氧基锌(II)配合物,其分子式为[Zn2(L)2X2](Zn-1、Zn-2和Zn-3),其中X分别为Cl(-)、Br (-)和I (-)。X射线晶体学分析表明,每个分子中的ZnO3NX发色团形成略微扭曲的三角双锥几何结构(τ = 0.55 - 0.68),金属间距离分别为3.068、3.101和3.083 Å(分别对应1 - 3)。对其磷酸酶活性的分光光度研究表明,它们三者都具有显著的水解效率。米氏动力学参数表明,在97.5% N,N-二甲基甲酰胺中使用磷酸单酯(4-硝基苯基)磷酸酯时,P - O键断裂速率的竞争力为3 > 1 > 2,在298 K时kcat值在9.47 - 11.62 s(-1)范围内。涉及三种主要活性催化剂形式的理论计算,如二聚体-顺式形式(D-Cis)、二聚体-反式形式(D-Trans)和单形式(M-1和M-2),系统地解释了反应机理,其中以双核桥连氢氧根离子作为亲核试剂且一个水分子在稳定离去基团中起作用的二聚体-顺式形式作为最有利的途径参与竞争。