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高核Pd 配合物在假三齿配体作用下的 C-C 键氧化反应活性的改善。

Improved Oxidative C-C Bond Formation Reactivity of High-Valent Pd Complexes Supported by a Pseudo-Tridentate Ligand.

机构信息

Department of Chemistry, Washington University, St. Louis, Missouri 63130, United States.

Department of Chemistry and Biochemistry, One University Boulevard, University of Missouri, St. Louis, Missouri 63121, United States.

出版信息

Inorg Chem. 2020 Aug 17;59(16):11782-11792. doi: 10.1021/acs.inorgchem.0c01763. Epub 2020 Jul 27.

Abstract

There is a large interest in developing oxidative transformations catalyzed by palladium complexes that employ environmentally friendly and economical oxidizing reagents such as dioxygen. Recently, we have reported the isolation and characterization of various mononuclear Pd and Pd complexes supported by the tetradentate ligands ,'-dialkyl-2,11-diaza3.3pyridinophane (N4, R = Bu, Pr, Me), and the aerobically induced C-C and C-heteroatom bond formation reactivity was investigated in detail. Given that the steric and electronic properties of the multidentate ligands were shown to tune the stability and reactivity of the corresponding high-valent Pd complexes, herein we report the use of an asymmetric N4 ligand, mehtyl-'-tosyl-2,11-diaza3.3pyridinophane (N4), in which one amine N atom contains a tosyl group. The N-Ts donor atom exhibits a markedly reduced donating ability, which led to the formation of transiently stable Pd and Pd complexes, and consequently the corresponding O oxidation reactivity and the subsequent C-C bond formation were improved significantly.

摘要

人们对于开发使用环境友好且经济的氧化试剂(如氧气)来催化钯配合物的氧化转化反应非常感兴趣。最近,我们已经报道了各种单核钯配合物和钯配合物的分离和特性,这些配合物由四齿配体,'-二烷基-2,11-二氮杂3.3吡啶并环(N4,R = Bu、Pr、Me)支持,并且详细研究了有氧诱导的 C-C 和 C-杂原子键形成反应性。鉴于多齿配体的空间和电子性质被证明可以调节相应高价钯配合物的稳定性和反应性,在此我们报告了使用不对称 N4 配体,甲基-'-对甲苯磺酰基-2,11-二氮杂3.3吡啶并环(N4),其中一个胺 N 原子含有对甲苯磺酰基。N-Ts 供体原子表现出明显降低的供电子能力,这导致形成瞬态稳定的钯和钯配合物,从而显著提高了相应的 O 氧化反应性和随后的 C-C 键形成。

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