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双(磺酰亚胺)钌(VI)卟啉:X 射线晶体结构和密度泛函理论计算研究 C-H 键氨化反应的机理。

Bis(sulfonylimide)ruthenium(VI) porphyrins: X-ray crystal structure and mechanism of C-H bond amination by density functional theory calculations.

机构信息

Department of Chemistry, State Key Laboratory of Synthetic Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, China.

出版信息

Chemistry. 2013 Aug 19;19(34):11320-31. doi: 10.1002/chem.201300021. Epub 2013 Jul 1.

Abstract

The X-ray crystal structure of [Ru(VI) (NMs)2 (tmp)] (Ms=SO2 - p-MeOC6 H4 ; tmp=5,10,15,20-tetramesitylporphyrinato(2-)), a metal sulfonylimide complex that can undergo alkene aziridination and C-H bond amination reactions, shows a Ru=N distance of 1.79(3) Å and Ru-N-S angle of 162.5(3)°. Density functional theory (DFT) calculations on the electronic structures of [Ru(VI) (NMs)2 (tmp)] and model complex [Ru(VI) (NMs)2 (por(0) )] (por(0) =unsubstituted porphyrinato(2-)) using the M06L functional gave results in agreement with experimental observations. For the amination of ethylbenzene by the singlet ground state of [Ru(VI) (NMs)2 (por(0))], DFT calculations using the M06L functional revealed an effectively concerted pathway involving rate-limiting hydrogen atom abstraction without a distinct radical rebound step. The substituent effect on the amination reactivity of ethylbenzene by [Ru(VI) (NX)2 (por(0) )] (X=SO2 -p-YC6 H4 with Y=MeO, Me, H, Cl, NO2 ) was examined. Electron-withdrawing Y groups lower the energy of the LUMOs of [Ru(VI) (NX)2 (por(0))], thus facilitating their interaction with the low-lying HOMO of the ethylbenzene C-H bond and hence increasing the reactivity of [Ru(VI) (NX)2 (por(0) )]. DFT calculations on the amination/aziridination reactions of [Ru(VI) (NSO2 C6 H5 )2 (por(0) )] with pent-4-enal, an aldehyde substrate bearing acyl, homoallylic, and allylic C-H bonds and a C=C bond, revealed a lower reaction barrier for the amination of the acyl C-H bond than for both the amination of the other C-H bonds and aziridination of the C=C bond in this substrate.

摘要

[Ru(VI) (NMs)2 (tmp)](Ms=SO2 - p-MeOC6 H4 ; tmp=5,10,15,20-四甲基卟啉(2-))的 X 射线晶体结构,是一种可以进行烯烃氮丙啶化和 C-H 键胺化反应的金属磺酰亚胺配合物,其 Ru=N 距离为 1.79(3) Å,Ru-N-S 角为 162.5(3)°。使用 M06L 函数对 [Ru(VI) (NMs)2 (tmp)] 和模型配合物 [Ru(VI) (NMs)2 (por(0) )](por(0) =未取代的卟啉(2-))的电子结构进行密度泛函理论(DFT)计算,结果与实验观察结果一致。对于单重基态[Ru(VI) (NMs)2 (por(0) )]对乙基苯的胺化反应,使用 M06L 函数的 DFT 计算揭示了一种有效的协同途径,涉及限速的氢原子提取,而没有明显的自由基回弹步骤。研究了 [Ru(VI) (NX)2 (por(0) )](X=SO2 -p-YC6 H4,Y=MeO,Me,H,Cl,NO2 )中取代基对乙基苯胺化反应活性的影响。供电子 Y 基团降低了 [Ru(VI) (NX)2 (por(0) )] 的 LUMO 能量,从而促进了它们与乙基苯 C-H 键的低能 HOMO 的相互作用,从而提高了 [Ru(VI) (NX)2 (por(0) )] 的反应性。[Ru(VI) (NSO2 C6 H5 )2 (por(0) )]与具有酰基、偕烯丙基和烯丙基 C-H 键和 C=C 键的戊-4-烯醛的胺化/氮丙啶化反应的 DFT 计算表明,对于酰基 C-H 键的胺化反应,反应势垒低于该底物中其他 C-H 键的胺化反应和 C=C 键的氮丙啶化反应。

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