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烯烃加成到第9族过渡金属二氧化物化合物机理的量子化学研究。

A quantum chemical study of the mechanisms of olefin addition to group 9 transition metal dioxo compounds.

作者信息

Ahmed Issahaku, Tia Richard, Adei Evans

机构信息

Computational and Theoretical Chemistry Laboratory, Department of Chemistry, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.

出版信息

Springerplus. 2016 Jun 24;5(1):867. doi: 10.1186/s40064-016-2582-x. eCollection 2016.

Abstract

The mechanistic aspects of ethylene addition to MO2(CH2)(CH3) (M=Co, Rh, Ir) have been investigated with a Hartree-Fock/DFT hybrid functional at the MO6/LACVP* and B3LYP/LACVP* levels of theory to elucidate the reaction pathways on the singlet, doublet and triplet potential energy surfaces (PES). In the reaction of the IrO2CH2CH3 complex with ethylene, [3 + 2]C,O addition is the most plausible pathway on the singlet PES, the [3 + 2]O,O addition is the most favoured pathway on the doublet surface whiles the stepwise [1 + 1] addition involving the oxygen atom of the complex in the first step and the carbon atom of the complex in the second step is the most plausible pathway on the triplet PES. For the reaction of the RhO2(CH2)(CH3) complex, the [2 + 2]Rh,O addition pathway is the most favoured on the singlet surface, the [2 + 2]Rh,C is the most plausible pathway on the triplet PES and [3 + 2]C,O is the most plausible on the doublet surface. For the reactions of the CoO2(CH2)(CH3) complex, the [1 + 2]O addition is the most plausible on the singlet PES, [3 + 2]C=Co=O cycloaddition to form the five-membered intermediate is the most preferred pathway on the doublet PES, whiles on the triplet PES the preferred pathway is the [3 + 2] addition across the O=Co=O bond of the metal complex. The reactions of olefins with the Co dioxo complex have lower activation barriers for the preferred [3 + 2] and [2 + 2] addition pathways as well as fewer side reactions than those of the rhodium and iridium systems. This could imply that the cobalt dioxo complexes can efficiently and selectively catalyze specific reactions in oxidation of olefins than Rh and Ir oxo complexes will do and therefore Co oxo complexes may be better catalysts for specific oxidation reactions of olefins than Rh and Ir complexes are. The activation barriers for the formation of the four-or five-membered metallacycle intermediates through [2 + 2] or [3 + 2] cyclo-addition are lower on the triplet PES than on the singlet PES for the formation of similar analogues. There are fewer competitive reaction pathways on the triplet surface than on the singlet PES. Also, cycloadditions that seem impossible on the singlet PES seem possible on the doublet and or triplet PESs, this is the case typically for the Rh and Co complexes, illustrating the importance of multiple spin states in organometallic reactions.Graphical AbstractTable of Contents Synopsis: A study of the mechanism of ethylene addition to MO2(CH2)(CH3)(M=Co,Rh,Ir) shows the reactions of the Co complex have lower activation barriers for the preferred [3+2] and [2+2] addition pathways and fewer side reactions than those of Rh and Ir. Reactions are more feasible and selective on the triplet PES than on the singlet PES. These illustrate the importance of multiple spin states in organometallic reactions and shows catalyst activity and selectivity decreases down the group.

摘要

已使用Hartree - Fock/DFT混合泛函在MO6/LACVP和B3LYP/LACVP理论水平上研究了乙烯加成到MO2(CH2)(CH3)(M = Co、Rh、Ir)的机理,以阐明单重态、双重态和三重态势能面(PES)上的反应途径。在IrO2CH2CH3配合物与乙烯的反应中,[3 + 2]C,O加成是单重态PES上最合理的途径,[3 + 2]O,O加成是双重态表面上最有利的途径,而第一步涉及配合物的氧原子、第二步涉及配合物的碳原子的逐步[1 + 1]加成是三重态PES上最合理的途径。对于RhO2(CH2)(CH3)配合物的反应,[2 + 2]Rh,O加成途径在单重态表面上最有利,[2 + 2]Rh,C是三重态PES上最合理的途径,[3 + 2]C,O是双重态表面上最合理的途径。对于CoO2(CH2)(CH3)配合物的反应,[1 + 2]O加成在单重态PES上最合理,[3 + 2]C=Co=O环加成形成五元中间体是双重态PES上最优选的途径,而在三重态PES上优选的途径是跨越金属配合物的O=Co=O键的[3 + 2]加成。与铑和铱体系相比,烯烃与钴双氧配合物的反应对于优选的[3 + 2]和[2 + 2]加成途径具有更低的活化能垒以及更少的副反应。这可能意味着钴双氧配合物比铑和铱的氧配合物能更有效且选择性地催化烯烃氧化中的特定反应,因此钴氧配合物可能是比铑和铱配合物更好的烯烃特定氧化反应催化剂。通过[2 + 2]或[3 + 2]环加成形成四元或五元金属环中间体的活化能垒在三重态PES上比在单重态PES上更低,用于形成类似的类似物。三重态表面上的竞争反应途径比单重态PES上更少。此外,在单重态PES上看似不可能的环加成在双重态和/或三重态PES上似乎是可能的,对于Rh和Co配合物通常是这种情况,这说明了多自旋态在有机金属反应中的重要性。

图形摘要

目录

简介

对乙烯加成到MO2(CH2)(CH3)(M = Co、Rh、Ir)的机理研究表明,与Rh和Ir相比,Co配合物的反应对于优选的[3 + 2]和[2 + 2]加成途径具有更低的活化能垒以及更少的副反应。反应在三重态PES上比在单重态PES上更可行且更具选择性。这些说明了多自旋态在有机金属反应中的重要性,并表明催化剂活性和选择性随族向下降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc9d/4920779/6e6ffb438420/40064_2016_2582_Figa_HTML.jpg

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