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Molecular-level insight in supported olefin metathesis catalysts by combining surface organometallic chemistry, high throughput experimentation, and data analysis

机译:通过组合表面有机金属化学,高通量实验和数据分析,通过组合支持的烯烃复分解催化剂的分子水平洞察力

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A combination of high-throughput experimentation (HTE), surface organometallic chemistry (SOMC) and statistical data analysis provided the platform to analyze in situ silica-grafted Mo imido alkylidene catalysts based on a library of 35 phenols. Overall, these tools allowed for the identification of σ-donor electronic effects and dispersive interactions and as key drivers in a prototypical metathesis reaction, homodimerization of 1-nonene. Univariate and multivariate correlation analysis confirmed the categorization of the catalytic data into two groups, depending on the presence of aryl groups in ortho position of the phenol ligand. The initial activity (TOF _(in) ) was predominantly correlated to the σ-donor ability of the aryloxy ligands, while the overall catalytic performance (TON _(1 h) ) was mainly dependent on attractive dispersive interactions with the used phenol ligands featuring aryl ortho substituents and, in sharp contrast, repulsive dispersive interactions with phenol free of aryl ortho substituents. This work outlines a fast and efficient workflow of gaining molecular-level insight into supported metathesis catalysts and highlights σ-donor ability and noncovalent interactions as crucial properties for designing active d ~(0) supported metathesis catalysts.
机译:高通量实验(HTE),表面有机金属化学(SOMC)和统计数据分析的组合提供了基于35个酚的文库分析原位二氧化硅接枝的Mo Imido烷基催化剂的平台。总体而言,这些工具允许鉴定Σ - 供体电子效应和分散相互作用,并作为原型复分解反应中的关键驱动器,1-壬烯的同态化。单变量和多变量的相关分析证实催化数据的分类为两组,取决于酚配体的邻位中的芳基的存在。主要的活性(TOF _(in))与芳氧基配体的σ-供体能力相关,而总催化性能(吨_(1 h))主要取决于与使用的酚配体的吸引性的分散相互作用相互作用芳基Ortho取代基与鲜明对比度,与不含芳基邻氨基取代基的苯酚的排斥分散相互作用。这项工作概述了将分子水平洞察力进入支持的复分解催化剂的快速有效的工作流程,并突出显示σ-供体能力和非共价相互作用作为设计活性D〜(0)支持的复分解催化剂的关键性质。

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