首页> 外文期刊>CrystEngComm >Relative stability of the cis and trans isomers of octahedral cobalt(III) complexes of the type [Co(N2O2)X-2] with tetradentate salen type Schiff bases: a combined theoretical and experimental study
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Relative stability of the cis and trans isomers of octahedral cobalt(III) complexes of the type [Co(N2O2)X-2] with tetradentate salen type Schiff bases: a combined theoretical and experimental study

机译:[CO(N2O2)X-2]与四戊酸盐型Schiff碱基的八半钴(III)复合物的顺式钴(III)复合物的相对稳定性:一种理论和实验研究

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Octahedral cobalt(III) complexes of the type [Co(N2O2)X-2] with N2O2 donor tetradentate salen type Schiff bases may form cis and trans isomers. DFT calculations are used to explore and analyze in detail a series of octahedral cobalt(III) complexes. The cis isomers are found to be more stable in most cases. One such complex, [(CoLa)-L-III(N-3)(DMSO)] {H2La = N,N-bis.3,5-dichlorosalicylidene)2,2-dimethyl-1,3-propanediamine}, is synthesized and its structure is confirmed by single crystal X-ray diffraction analysis. As predicted from the theoretical calculations, this structure corresponds to a cis isomer. A Cl center dot center dot center dot Cl close contact exists in the solid-state structure of the synthesized complex and the nature of the interaction is analyzed using theoretical computations. Bader's theory of atoms in molecules (AIM) approach is applied to calculate the Cl center dot center dot center dot Cl interaction energy in the crystal via the electron density features at the Cl center dot center dot center dot Cl bond critical point. The value of the total energy density which is the sum of the kinetic and potential energy densities at the bond critical point (BCP) of a Cl center dot center dot center dot Clclose contact is 3.99 kJ mol(-1) Bohr
机译:用N2O2供体四烯烃型Schiff碱的[CO(N2O2)X-2]类型的八面体钴(III)复合物可以形成顺式和反式异构体。 DFT计算用于探索和分析详细的一系列八面体钴(III)复合物。在大多数情况下发现顺式异构体更稳定。一种这样的复合物,[(可氧化碳)-L-III(N-3)(DMSO)](H2LA = N,N-BIS.3,5-二氯基亚二丙烯)2,2-二甲基-1,3-丙二胺}是通过单晶X射线衍射分析证实合成及其结构。如从理论计算中预测的那样,该结构对应于CIS异构体。 CL中心点中心点中心点CL紧密接触存在于合成复合物的固态结构中,并使用理论计算分析相互作用的性质。獾的分子中的原子理论(AIM)方法应用于通过CL中心点中心点中心点CL CLOND TOT CL CLOND TEXCL CLOND TEXCL CL CLOND TOTCH的电子密度特征计算晶体中的CL中心点中心点中心点C1 CL相互作用。作为CL中心点中心点中心点Clclose接触的键临界点(BCP)的动力学和势能密度的总能量密度的值为3.99 kJ摩尔(-1)Bohr

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