首页> 外文期刊>Monatshefte fur Chemie >Synthesis, X-ray structure, and DFT modeling of a new polymeric zinc(II) complex of 2-mercaptonicotinic acid (MntH), {[Zn(Mnt-Mnt)(en)]?H2O}(n)
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Synthesis, X-ray structure, and DFT modeling of a new polymeric zinc(II) complex of 2-mercaptonicotinic acid (MntH), {[Zn(Mnt-Mnt)(en)]?H2O}(n)

机译:合成,X射线结构和2-巯基辛酸(MNTH)的新型聚合物锌(II)络合物的DFT建模,{[Zn(MNT-MNT)(EN)]α(n)

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Two zinc(II) complexes of 2-mercaptonicotinic acid (MntH), {[Zn(Mnt-Mnt)(en)]?H2O}(n) and [Zn(Mnt-Mnt)(H2O)], were prepared by the reaction of ZnCl2 and MntH in the presence of ethylenediamine (en). They were characterized by elemental analysis, and IR, H-1, C-13 NMR and UV-Vis spectroscopic studies. In the presence of en, the sulfur atoms of the MntH ligands were connected and formed a disulfide linkage in the Mnt-Mnt dimer. The single crystal X-ray diffraction analysis of {[Zn(Mnt-Mnt)(en)]?H2O}(n) complex revealed the polymer structure organization. Each zinc atom is five coordinated in distorted trigonal bipyramidal polyhedron by three oxygen atoms of two bridging Mnt-Mnt ligands and two nitrogen atoms of an en molecule. The vibrational modes, which characterized the carboxylic oxygen coordination of the Mnt-Mnt ligand to Zn(II), were determined by periodic DFT/PAW/PW91 calculations. Molecular structure modeling, vibrational spectra calculations, and natural bond orbital analysis of the monomer and dimer ligands as well as of the Zn(II) complexes were performed at the DFT/TDDFT/mPW1PW91 level to explain the available IR, NMR and UV-Vis spectroscopic data and to confirm the ligand coordination to the metal ion. The formation of disulfide Mnt-Mnt ligand in [Zn(Mnt-Mnt)(H2O)] was confirmed by the absence of the absorption band at 377nm in the UV-Vis spectrum. The molecular modeling fragment of [Zn(Mnt-MntH)(2)(H2O)] suggested that the most probable structure is that consisting of five coordinated Zn(II) with one aqueous oxygen and four carboxylic oxygens of two bidentate bound Mnt-Mnt ligands in a polymeric structure.
机译:2-巯基辛酸(MNTH),{[Zn(MNT-MNT)(EN)]α-H 2 O}(N)和[Zn(MNT-MNT)(H2O)]的两个锌(II)络合物进行制备ZnCl2和MnTH在乙二胺(EN)存在下的反应。它们的特征在于元素分析,IR,H-1,C-13 NMR和UV-Vis光谱研究。在Zh的存在下,连接MnTh配体的硫原子并形成MNT-MNT二聚体中的二硫键。 {[Zn(MNT-MNT)(EN)]α-H 2 O}(N)复合物的单晶X射线衍射分析显示了聚合物结构组织。每个锌原子由两个桥接MNT-MNT配体和en分子的两个氮原子的三个氧原子以扭曲的三角形双吡酰胺多面体配位。用周期性DFT / PAW / PW91计算测定表征MNT-MNT配体至Zn(II)的羧基氧的振动模式。在DFT / TDDFT / MPW1PW91水平下进行单体和二聚体配体以及Zn(II)复合物的分子结构建模,振动光谱计算和天然键分析,以解释可用的IR,NMR和UV-Vis光谱数据并确认与金属离子的配体配位。通过在UV-VIS光谱中在377nm处的吸收带,确认在[Zn(MNT-MNT)(H 2 O)中形成二硫键MnT-MNT配体。 [Zn(MNT-MNTH)(2)(2)(2)(2)(H2O)]的分子建模片段表明,最可能的结构是由五种配位的Zn(II)组成,其中一个含水氧气和四个二齿结合MNT-MNT的四个羧酸氧基组成聚合物结构中的配体。

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