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Synthesis, structural determination, theoretical studies and catalytic activity of Mn(II) complex of N-isonicotinyl phosphoric triamide ligand

机译:N-异烟酰胺基磷酸三酰胺配体的Mn(II)配合物的合成,结构测定,理论研究和催化活性

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synthesized and characterized by H-1, C-13, P-31 NMR and IR spectroscopies. The reaction of MnCl2 center dot 4H(2)O with L led to the formation of a new 3D system {MnL2Cl2}(n)center dot 34CH(3)OH (C-1). X-ray crystallographic data revealed that the ligand binds to the neighboring manganese ions through the nitrogen atom of pyridine (N-py) and the oxygen atom of phosphoryl (O-P) in a bidentate manner. The Mn(II) centers showed a distorted cis(N-py, N-py) cis(O-P, O-P) cis(Cl, Cl) octahedral configuration. In order to compare the relative stability of C-1 (with all-cis configuration) and its possible all-trans isomer, C-1', density functional theory (DFT) calculations were performed and the results showed the preference of C-1 over C-1' from energy point of view. Quantum theory of atoms in molecules (QTAIM) analysis was applied to elucidate the nature of interactions, and the results suggested an ionic character (closed-shell interaction) for Mn-OP bond, and a partial covalent contribution for Mn-N-py interaction. Natural bond orbital (NBO) analysis was also used to calculate the charge distribution on atoms in the complex. The complex C-1 showed efficient catalytic activity in the oxidation reaction of some alkenes to their corresponding epoxides. In addition, the effect of temperature and reaction time on the conversion and selectivity of cyclohexene epoxidation reaction in the presence of C-1 as catalyst was investigated. (C) 2015 Elsevier B.V. All rights reserved.
机译:合成并通过H-1,C-13,P-31 NMR和IR光谱表征。 MnCl2中心点4H(2)O与L的反应导致形成新的3D系统{MnL2Cl2}(n)中心点34CH(3)OH(C-1)。 X射线晶体学数据表明,配体通过吡啶的氮原子(N-py)和磷酰基的氧原子(O-P)与邻位的锰离子结合成二齿形。 Mn(II)中心显示扭曲的顺(N-py,N-py)顺(O-P,O-P)顺(Cl,Cl)八面体构型。为了比较C-1(具有全顺式构型)及其可能的全反式异构体的相对稳定性,进行了C-1',密度泛函理论(DFT)计算,结果显示了C-1的偏好从能量的角度来看超过C-1'。应用分子中的原子量子理论(QTAIM)分析来阐明相互作用的性质,结果表明Mn-OP键具有离子特性(闭壳相互作用),而Mn-N-py相互作用具有部分共价贡献。自然键轨道(NBO)分析还用于计算复合物中原子的电荷分布。配合物C-1在某些烯烃氧化成相应的环氧化物中显示出有效的催化活性。另外,研究了温度和反应时间对以C-1为催化剂存在下环己烯环氧化反应的转化率和选择性的影响。 (C)2015 Elsevier B.V.保留所有权利。

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