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Hoveyda-Grubbs 烯烃复分解催化剂的亲电性是控制引发速率的驱动力。

Electrophilicity of Hoveyda-Grubbs Olefin Metathesis Catalysts as the Driving Force that Controls Initiation Rates.

机构信息

Centre of New Technologies, University of Warsaw, 02-097, Warszawa, Poland.

出版信息

Chemphyschem. 2022 Dec 5;23(23):e202200580. doi: 10.1002/cphc.202200580. Epub 2022 Oct 19.

Abstract

The dissociative mechanism of initiation for a series of Hoveyda-Grubbs type metathesis catalysts modified at the para and meta positions in the isopropoxybenzylidene ligand is investigated by means of DFT calculations. The electron donating/withdrawing capacity of the ligand was screened through the incorporation of various substituents such as halogens, nitro, alkoxides, ketones, esters, amines, and amides. Variations in structural parameters, energy barriers for the Ru-O bond dissociation, and Ru-O bond strength were examined as a function of the Hammett constant. It was found that electronic properties of the catalysts such as chemical potential, hardness, and electrophilicity correlate linearly with the dissociative energy barriers. These findings enable a systematic rationalization and prediction of rate of precatalyst initiation through the calculation of only the HOMO-LUMO gap of catalysts, as the faster the initiation, the more electrophilic the catalyst.

摘要

通过 DFT 计算研究了在异丙氧基苯亚甲基配体的对位和间位进行修饰的一系列 Hoveyda-Grubbs 型复分解催化剂引发的离解机理。通过引入各种取代基,如卤素、硝基、烷氧基、酮、酯、胺和酰胺,筛选配体的供电子/吸电子能力。随着哈米特常数的变化,考察了 Ru-O 键离解的结构参数和能垒、Ru-O 键强度的变化。结果表明,催化剂的电子性质,如化学势、硬度和亲电性与离解能垒线性相关。这些发现使得通过仅计算催化剂的 HOMO-LUMO 能隙,就可以对前催化剂引发的速率进行系统的合理化和预测,因为引发越快,催化剂的亲电性越强。

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