首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Structural, spectral, pH-metric and biological studies on mercury (II), cadmium (II) and binuclear zinc (II) complexes of NS donor thiosemicarbazide ligand
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Structural, spectral, pH-metric and biological studies on mercury (II), cadmium (II) and binuclear zinc (II) complexes of NS donor thiosemicarbazide ligand

机译:NS供体硫代氨基脲配体的汞(II),镉(II)和双核锌(II)配合物的结构,光谱,pH度量和生物学研究

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Hg(II), Cd(II) and binuclear Zn(II) complexes derived from the tetradentate N1-ethyl-N2-(pyridine-2-yl) hydrazine-1, 2-bis (carbothioamide) ligand (H_2PET) have been prepared and characterized by conventional techniques. The isolated complexes acquired the formulas, [Hg(HPET)(H_2O)_2Cl]·H_2O, [Cd(HPET)Cl] and [Zn_2(HPET)(PET)(OAc)]·H_2O, respectively. IR data revealed that the ligand behaves as monobasic tridentate through (C=N)_(py), (C-S) and new (N=C)_(azomethine)~* groups in both Hg(II) and Cd(II) complexes. In the binuclear Zn(II) complex, the behavior of ligand contains two types, where H2PET acts as dibasic tetradentate via (C=N)_(py), both deprotonated (C-SH) and the new (N=C)_(azomethine)~* towards two Zn atoms and also it acts as monobasic tridentate via (C=S), deprotonated (C-SH) and (C=N)_(py) towards the same Zn atoms. An octahedral geometry for Hg(II) complex and tetrahedral geometry for both Cd(II) and Zn(II) complexes were proposed. The bond lengths, bond angles, HOMO, LUMO and dipole moment have been calculated by DFT using materials studio program to confirm the geometry of ligand and its metal complexes. The association constant of the ligand and the stability constants of its complexes as well as the thermodynamic parameters were calculated by pH metric measurements at 298, 308 and 318 K in 50% dioxane-water mixture, respectively. Also, the kinetic and thermodynamic parameters for the different thermal degradation steps of the complexes were determined by Coats-Redfern and Horowitz-Metzger methods. Moreover, the anti-oxidant (using ABTS and DPPH methods), anti-hemolytic, and cytotoxic activities of the compounds have been tested.
机译:制备了由四齿N1-乙基-N2-(吡啶-2-基)肼-1、2-双(碳硫酰胺)配体(H_2PET)衍生的Hg(II),Cd(II)和双核Zn(II)配合物并以传统技术为特征。分离出的配合物分别获得了[Hg(HPET)(H_2O)_2Cl]·H_2O,[Cd(HPET)Cl]和[Zn_2(HPET)(PET)(OAc)]·H_2O的化学式。红外数据表明,该配体在Hg(II)和Cd(II)络合物中通过(C = N)_(py),(CS)和新的(N = C)_(azomethine)〜*基团表现为一元三齿态。在双核Zn(II)络合物中,配体的行为包含两种类型,其中H2PET通过(C = N)_(py)充当二元四齿态,都具有去质子化(C-SH)和新的(N = C)_ (偶氮甲碱)〜*朝向两个Zn原子,并且它通过(C = S),去质子化(C-SH)和(C = N)_(py)朝向相同的Zn原子起三元齿的作用。提出了Hg(II)配合物的八面体几何形状和Cd(II)和Zn(II)配合物的四面体几何形状。通过使用材料工作室程序通过DFT计算键长,键角,HOMO,LUMO和偶极矩,以确认配体及其金属配合物的几何形状。配体的缔合常数,其配合物的稳定性常数以及热力学参数分别通过在50%二恶烷与水的混合物中在298、308和318 K下进行pH度量测量来计算。同样,通过Coats-Redfern和Horowitz-Metzger方法确定了配合物不同热降解步骤的动力学和热力学参数。此外,还测试了化合物的抗氧化剂(使用ABTS和DPPH方法),抗溶血和细胞毒性活性。

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