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用于烯烃氢化的双(膦)钴环辛二烯预催化剂的配体取代和电子结构研究

Ligand Substitution and Electronic Structure Studies of Bis(phosphine)Cobalt Cyclooctadiene Precatalysts for Alkene Hydrogenation.

作者信息

Zhong Hongyu, Beromi Megan Mohadjer, Chirik Paul J

机构信息

Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.

出版信息

Can J Chem. 2021 Feb;99(2):193-201. doi: 10.1139/cjc-2020-0352. Epub 2020 Sep 28.

Abstract

Diene self-exchange reactions of the 17-electron, formally cobalt(0) cyclooctadienyl precatalyst, (,)-(DuPhos)Co(COD) ( , (,)-DuPhos = 1,2-bis((2,5)-2,5-diisopropylphospholano)benzene, COD = 1,5-cyclooctadiene) were studied using natural abundance and deuterated 1,5-cyclooctadiene. Exchange of free and coordinated diene was observed at ambient temperature in benzene- solution and kinetic studies support a dissociative process. Both neutral and the 16-electron, cationic cobalt(I) complex, [(,)-(DuPhos)Co(COD)][BAr ] (BAr = B[(3,5-(CF))CH]) underwent instantaneous displacement of the 1,5-cyclooctadiene ligand by carbon monoxide and generated the corresponding carbonyl derivatives. The solid-state parameters, DFT-computed Mulliken spin density and analysis of molecular orbitals suggest an alternative description of as low-spin cobalt(II) with the 1,5-cyclooctadiene acting as a LX-type ligand. This view of the electronic structure provides insight into the nature of the ligand substitution processes and the remarkable stability of the neutral cobalt complexes toward protic solvents observed during catalytic alkene hydrogenation.

摘要

使用天然丰度的和氘代的1,5 - 环辛二烯研究了17电子、形式上为钴(0)的环辛二烯基前催化剂(,)-(DuPhos)Co(COD)((,)-DuPhos = 1,2 - 双((2,5)-2,5 - 二异丙基膦基)苯,COD = 1,5 - 环辛二烯)的二烯自交换反应。在室温下于苯 - 溶液中观察到了游离二烯和配位二烯的交换,动力学研究支持解离过程。中性的以及16电子的阳离子钴(I)配合物[(,)-(DuPhos)Co(COD)][BAr ](BAr = B[(3,5-(CF))CH])都经历了一氧化碳对1,5 - 环辛二烯配体的瞬间取代,并生成了相应的羰基衍生物。固态参数、DFT计算的穆利肯自旋密度以及分子轨道分析表明,可将 描述为低自旋钴(II),其中1,5 - 环辛二烯作为LX型配体。这种电子结构观点为配体取代过程的本质以及在催化烯烃氢化过程中观察到的中性钴配合物对质子溶剂的显著稳定性提供了深入见解。

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