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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Mononuclear and Polynuclear Copper(II) Complexes Derived from Pyridylalkylaminomethylphenol Polypodal Ligands
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Mononuclear and Polynuclear Copper(II) Complexes Derived from Pyridylalkylaminomethylphenol Polypodal Ligands

机译:吡啶基烷基氨基甲基苯酚多足配体衍生的单核和多核铜(II)配合物

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摘要

Four mononuclear complexes [Cu(HL1)CI]PF6 center dot CH3OH (1), [Cu(HSL1)CI]PF6 center dot 0.75H(2)O (2), [Cu(HL2)CI]PF6 center dot CH3OH (3), [Cu(HSL2)CI]PF6 center dot 1.5CH(3)OH (4), and two polynuclear complexes [Cu-2(SL2)(2)](PF6)(2)center dot 2CH(3)OH (5) and {Cu[Cu(SL2)(CI)](2)}(PF6)(2) (6) (HL1: 2-[(bis(2-pyridylmethyl)-amino)methyl]-4-methylphenol; HSL1: 2-[(bis(2-pyridylmethyl)amino) methyl]-4-methyl-6-(methyl-thio)phenol; HL2: 2-[(2-pyridylmethyl)(2'-pyridylethyl)-aminomethyl)]-4-methylphenol; HSL2: 2-[(2-pyridylmethyl)(2'-pyridylethyl)amino-methyl]-4-methyl-6-(methythio )phenol were obtained and characterized. The crystal structures of the mononuclear complexes 1-4 show the copper centers in a square-base pyramidal environment with the phenolic oxygen coordinated at the axial position. Dinuclear complex 5 has two copper centers with different geometry and bridged by phenoxo oxygens; one of the copper atoms is square pyrmidal while the other can be described with a highly distorted octahedral geometry with a long Cu-S distance (2.867 angstrom). Density functional theory calculations were used to obtain the reported structure of 6, since single crystals suitable for X-ray diffraction were not isolated. Magnetic studies done for 5 and 6 show an antiferromagnetic behavior for 5 (J = -134 cm(-1)) and a ferromagnetic behavior for 6 (J = +11.9 cm(-1)). Redox potentials for the mononuclear complexes were measured by cyclic voltammetry; the values show the effect of the chelating ring size (-213 mV and - 142 mV for Cu-HL1 and Cu-HL2, respectively) and the presence of the thiomethyl substituent (-213 mV and -184 mV for Cu-HL1 and Cu-HSL1, respectively).
机译:四个单核络合物[Cu(HL1)CI] PF6中心点CH3OH(1),[Cu(HSL1)CI] PF6中心点0.75H(2)O(2),[Cu(HL2)CI] PF6中心点CH3OH( 3),[Cu(HSL2)Cl] PF6中心点1.5CH(3)OH(4)和两个多核络合物[Cu-2(SL2)(2)](PF6)(2)中心点2CH(3) OH(5)和{Cu [Cu(SL2)(CI)](2)}(PF6)(2)(6)(HL1:2-[(双(2-吡啶基甲基)-氨基)甲基] -4-甲基苯酚; HSL1:2-[((双(2-吡啶基甲基)氨基)甲基] -4-甲基-6-(甲硫基)苯酚; HL2:2-[((2-吡啶基甲基)氨基)(2'-吡啶基乙基)-氨基甲基)]-4-甲基苯酚; HSL2:获得2-[((2-吡啶基甲基)(2'-吡啶基乙基)氨基-甲基] -4-甲基-6-(甲硫基)苯酚并进行表征。单核配合物1-4的晶体结构显示出在方基锥体环境中的铜中心,其中酚氧在轴向位置上被配位。双核络合物5具有两个铜中心,它们的几何形状不同,并由苯氧基氧桥接。铜原子中的一个是方形的嘧啶醛,而另一个铜原子可以描述为高度扭曲的八面体几何形状,具有长的Cu-S距离(2.867埃)。由于未分离出适合X射线衍射的单晶,因此使用密度泛函理论计算获得了报道的6结构。对5和6进行的磁性研究显示,对5(J = -134 cm(-1))具有反铁磁行为,对于6(J = +11.9 cm(-1))具有铁磁行为。通过循环伏安法测量单核络合物的氧化还原电势;该值显示了螯合环大小的影响(Cu-HL1和Cu-HL2分别为-213 mV和-142 mV)和硫代甲基取代基的存在(Cu-HL1和Cu为-213 mV和-184 mV -HSL1)。

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