电子和立体变化的氨基吡啶钒配合物在醇催化还原偶联中的应用

IF 4.7 2区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Olivia V. Adamczyk, Samuel E. Griffin, Amanda A. Fogh and Laurel L. Schafer*, 
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引用次数: 0

摘要

合成、分离并表征了钒的2-氨基吡啶配合物。对比反应活性表明,2-氨基吡啶配体可用于单金属配合物的合成,DFT计算表明,与吡啶配体相比,2-氨基吡啶配体在钒上的电子给能增加。采用同效单金属三(n -苯基-2-氨基吡啶)钒(III)配合物催化还原偶联苯甲醇,并筛选了一系列不同的2-氨基吡啶配体进行转化。未取代的2-氨基吡啶作为前配体的活性最高,与先前报道的系统相比,原位催化系统显示出与苯基醇和烯丙醇的反应性提高。氨基吡啶钒配合物的分离,加上动力学研究,支持醇催化还原偶联的单金属中间体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Electronically and Sterically Varied Vanadium Aminopyridinate Complexes Applied to the Catalytic Reductive Coupling of Alcohols

Electronically and Sterically Varied Vanadium Aminopyridinate Complexes Applied to the Catalytic Reductive Coupling of Alcohols

2-Aminopyridinate complexes of vanadium were synthesized, isolated, and characterized. Comparative reactivity showed that 2-aminopyridinate ligands can be used in the synthesis of monometallic complexes and DFT calculations indicate increased electron donation for the 2-aminopyridinate ligand on vanadium compared to pyridonate ligands. A homoleptic, monometallic tris(N-phenyl-2-aminopyridinate)vanadium(III) complex was used for the catalytic reductive coupling of benzhydrol, and a series of various 2-aminopyridinate ligands were also screened for this transformation. Unsubstituted 2-aminopyridine as the proligand resulted in the highest activity, with the in situ catalytic system demonstrating improved reactivity with benzylic and allylic alcohols compared to previously reported systems. The isolation of the vanadium aminopyridinate complexes, coupled with kinetic investigations, supports monometallic intermediates for the catalytic reductive coupling of alcohols.

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来源期刊
Inorganic Chemistry
Inorganic Chemistry 化学-无机化学与核化学
CiteScore
7.60
自引率
13.00%
发文量
1960
审稿时长
1.9 months
期刊介绍: Inorganic Chemistry publishes fundamental studies in all phases of inorganic chemistry. Coverage includes experimental and theoretical reports on quantitative studies of structure and thermodynamics, kinetics, mechanisms of inorganic reactions, bioinorganic chemistry, and relevant aspects of organometallic chemistry, solid-state phenomena, and chemical bonding theory. Emphasis is placed on the synthesis, structure, thermodynamics, reactivity, spectroscopy, and bonding properties of significant new and known compounds.
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