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首页> 外文期刊>Inorganica Chimica Acta >AB INITIO DENSITY FUNCTIONAL STUDIES ON THE STABILITY OF TETRATHIOCYANATO COMPLEXES OF ZN(II), CD(II) AND HG(II)
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AB INITIO DENSITY FUNCTIONAL STUDIES ON THE STABILITY OF TETRATHIOCYANATO COMPLEXES OF ZN(II), CD(II) AND HG(II)

机译:ZN(II),CD(II)和HG(II)的四硫代噻吩配合物稳定性的从头算密度函数研究

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The most stable structures and formation energies of [M(NCS)(4)](2-), [M(NCS)(2)(SCN)(2)](2-), [M(SCN)(4)](2-) (M = Zn(II), Cd(II), Hg(II)) and [Cd(NCS)(3)(SCN)](2-) have been calculated by the ab initio density functional method. The complex anions [M(NCS)(4)](2)- were optimized to regular tetrahedral geometry with a linear M-N-C, and the [M(SCN)(4)](2-) complex anions to a twisted tetrahedral geometry. The geometry optimizations of [M(NCS)(2)(SCN)(2)](2-) and [Cd(NCS)(3)(SCN)](2-) contained both linear M-N-C and bent M-S-C bonds formed in the optimized complexes The formation energies of [M(NCS)(4)](2-), [M(NCS)(2)(SCN)(2)](2-) and [M(SCN)(4)](2-) are - 2701, - 2625 and - 2557 kJ mol(-1) for Zn(II), - 2378, - 2317 and - 2262 kJ mol(-1) for Cd(II), and - 3803, - 4082 and - 4333 kJ mol(-1) for Hg(II), respectively, and that of [Cd(NCS)(3)(SCN)](2-) is - 2342 kJ mol(-1). A comparison of the formation energies indicated that both in water and in dimethyl sulfoxide [Zn(NCS)(3)](2-) and [Hg(SCN)(4)](2-) are the most stable complexes among the respective coordination isomers. However, the complex anions [Cd(NCS)(3)(SCN)](2-) and [Cd(NCS)(2)(SCN)(2)](2-) in dimethylformamide and in water, respectively, were less stable than [Cd(NCS)(4)](2-). The tetrathiocynato metal complexes with several coordination modes of SCN in solution were discussed on the basis of their formation energies. [References: 21]
机译:[M(NCS)(4)](2-),[M(NCS)(2)(SCN)(2)](2-),[M(SCN)(4)的最稳定的结构和形成能](2-)(M = Zn(II),Cd(II),Hg(II))和[Cd(NCS)(3)(SCN)](2-)已通过从头算密度函数法计算。配位阴离子[M(NCS)(4)](2)-已优化为具有线性M-N-C的规则四面体几何形状,[M(SCN)(4)](2-)配位阴离子为扭曲的四面体几何形状。 [M(NCS)(2)(SCN)(2)](2-)和[Cd(NCS)(3)(SCN)](2-)的几何优化包含线性MNC和弯曲的MSC键优化的配合物[M(NCS)(4)](2-),[M(NCS)(2)(SCN)(2)](2-)和[M(SCN)(4)]的形成能(2-)对于Zn(II)是-2701,-2625和-2557 kJ mol(-1),对于Cd(II)是-2378,-2317和-2262 kJ mol(-1)和-3803,- Hg(II)的浓度分别为4082和-4333 kJ mol(-1),[Cd(NCS)(3)(SCN)](2-)的浓度为-2342 kJ mol(-1)。比较形成能表明,在水和二甲基亚砜中,[Zn(NCS)(3)](2-)和[Hg(SCN)(4)](2-)都是最稳定的络合物配位异构体。但是,二甲基甲酰胺和水中的复合阴离子[Cd(NCS)(3)(SCN)](2-)和[Cd(NCS)(2)(SCN)(2)](2-)分别为稳定性不及[Cd(NCS)(4)](2-)。基于它们的形成能,讨论了在溶液中具有多种SCN配位模式的四硫氰酸金属络合物。 [参考:21]

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