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Interaction between Metalloporphyrins and Diazine Tautomers

机译:金属卟啉与二嗪互变异构体之间的相互作用

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The interaction between metalloporphyrins and diazine tautomers was investigated using quantum chemistry method. The results showed that the metal atom in the metalloporphyrin was not coplanar with porphin ring, and zinc porphyrin has the most extent of its non-coplanar nature. The most stable complex in nine complexes was iron porphyrin. NBO analysis indicated that the interaction between the lone pair of electrons on the nitrogen atom and the unoccupied lone pair orbital of metal contributes significantly to the stability of the complexes. Through the conceptual DFT parameter and Fukui dual descriptor, the thermodynamic stability and reactivity of complexes were analyzed. The density difference function (DDF) analyzes were performed to explore the rearrangement of electronic density after the coordination interaction. NICS calculation indicated that metalloporphyrin aromaticity was reduced after the coordination interaction, and aromaticity of diazine tautomer was increased along direction vector of the coordination interaction force.
机译:用量子化学方法研究了金属卟啉与二嗪互变异构体之间的相互作用。结果表明,金属卟啉中的金属原子与卟啉环不共面,而锌卟啉具有最大程度的非共面性。九种配合物中最稳定的配合物是卟啉铁。 NBO分析表明,氮原子上电子的孤对与金属的未占据孤对轨道之间的相互作用对配合物的稳定性有重要影响。通过概念DFT参数和Fukui对偶描述符,分析了配合物的热力学稳定性和反应活性。进行密度差函数(DDF)分析以探讨配位相互作用后电子密度的重排。 NICS计算表明,配位相互作用后金属卟啉的芳香性降低,二嗪互变异构体的芳香性沿配位相互作用力的方向向量增加。

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