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钴苯基偶氮吡啶配合物在配体处的质子化产生一种质子、氢化物和氢原子转移试剂。

Protonation of a Cobalt Phenylazopyridine Complex at the Ligand Yields a Proton, Hydride, and Hydrogen Atom Transfer Reagent.

作者信息

McLoughlin Elizabeth A, Waldie Kate M, Ramakrishnan Srinivasan, Waymouth Robert M

机构信息

Department of Chemistry , Stanford University , Stanford , California 94305 , United States.

出版信息

J Am Chem Soc. 2018 Oct 17;140(41):13233-13241. doi: 10.1021/jacs.8b06156. Epub 2018 Oct 4.

Abstract

Protonation of the Co(I) phenylazopyridine (azpy) complex [CpCo(azpy)] 2 occurs at the azo nitrogen of the 2-phenylazopyridine ligand to generate the cationic Co(I) complex [CpCo(azpyH)] 3 with no change in oxidation state at Co. The N-H bond of 3 exhibits diverse hydrogen transfer reactivity, as studies with a variety of organic acceptors demonstrate that 3 can act as a proton, hydrogen atom, and hydride donor. The thermodynamics of all three cleavage modes for the N-H bond (i.e., proton, hydride, and hydrogen atom) were examined both experimentally and computationally. The N-H bond of 3 exhibits a p K of 12.1, a hydricity of Δ G° = 89 kcal/mol, and a bond dissociation free energy (BDFE) of Δ G° = 68 kcal/mol in CDCN. Hydride transfer from 3 to the trityl cation (Δ G° = 99 kcal/mol) is exergonic but takes several hours to reach completion, indicating that 3 is a relatively poor hydride donor, both kinetically and thermodynamically. Hydrogen atom transfer from 3 to 2,6-di- tert-butyl-4-(4'-nitrophenyl)phenoxyl radical (BuNPArO·, Δ G° = 77.8 kca/mol) occurs rapidly, illustrating the competence of 3 as a hydrogen atom donor.

摘要

钴(I)苯基偶氮吡啶(azpy)配合物[CpCo(azpy)]₂在2-苯基偶氮吡啶配体的偶氮氮处发生质子化,生成阳离子钴(I)配合物[CpCo(azpyH)]₃,钴的氧化态不变。配合物3的N-H键表现出多样的氢转移反应活性,因为与多种有机受体的研究表明3可以作为质子、氢原子和氢负离子供体。通过实验和计算研究了N-H键的三种断裂模式(即质子、氢负离子和氢原子)的热力学性质。在CDCN中,配合物3的N-H键的pK为12.1,水合能ΔG° = 89 kcal/mol,键解离自由能(BDFE)ΔG° = 68 kcal/mol。从3到三苯甲基阳离子的氢负离子转移(ΔG° = 99 kcal/mol)是放能的,但需要几个小时才能完成,这表明3在动力学和热力学上都是相对较差的氢负离子供体。从3到2,6-二叔丁基-4-(4'-硝基苯基)苯氧基自由基(BuNPArO·,ΔG° = 77.8 kca/mol)的氢原子转移迅速发生,这说明3作为氢原子供体的能力。

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