首页> 外文期刊>Chemistry: A European journal >The Family of Ferrocene-Stabilized Silylium Ions: Synthesis, ~(29)Si NMR Characterization, Lewis Acidity, Substituent Scrambling, and Quantum-Chemical Analyses
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The Family of Ferrocene-Stabilized Silylium Ions: Synthesis, ~(29)Si NMR Characterization, Lewis Acidity, Substituent Scrambling, and Quantum-Chemical Analyses

机译:二茂铁稳定的硅离子家族:合成,〜(29)Si NMR表征,路易斯酸度,取代基加扰和量子化学分析

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摘要

The purpose of this systematic experimental and theoretical study is to deeply understand the unique bonding situation in ferrocene-stabilized silylium ions as a function of the substituents at the silicon atom and to learn about the structure parameters that determine the ~(29)Si NMR chemical shift and electrophilicity of these strong Lewis acids. For this, ten new members of the family of ferrocenestabilized silicon cations were prepared by a hydride abstraction reaction from silanes with the trityl cation and characterized by multinuclear 1H and ~(29)Si NMR spectroscopy. A closer look at the NMR spectra revealed that additional minor sets of signals were not impurities but silylium ions with substitution patterns different from that of the initially formed cation. Careful assignment of these signals furnished experimental proof that sterically less hindered silylium ions are capable of exchanging substituents with unreacted silane precursors. Density functional theory calculations provided mechanistic insight into that substituent transfer in which the migrating group is exchanged between two silicon fragments in a concerted process involving a ferrocene-bridged intermediate. Moreover, the quantum-chemical analysis of the ~(29)Si NMR chemical shifts revealed a linear relationship between d(~(29)Si) values and the Fe···Si distance for subsets of silicon cations. An electron localization function and electron localizability indicator analysis shows a threecenter two-electron bonding attractor between the iron, silicon, and C'_(ipso) atoms, clearly distinguishing the silicon cations from the corresponding carbenium ions and boranes. Correlations between ~(29)Si NMR chemical shifts and Lewis acidity, evaluated in terms of fluoride ion affinities, are seen only for subsets of silylium ions, sometimes with non-intuitive trends, indicating a complicated interplay of steric and electronic effects on the degree of the Fe···Si interaction.
机译:这项系统的实验和理论研究的目的是深入了解二茂铁稳定的硅离子与硅原子上取代基的函数关系,并了解决定〜(29)Si NMR化学的结构参数这些强路易斯酸的位移和亲电性。为此,通过硅烷与三苯甲基阳离子的氢化物抽象反应制备了二茂铁稳定的硅阳离子家族的十个新成员,并通过多核1H和〜(29)Si NMR光谱进行了表征。仔细观察NMR谱图可以发现,其他次要信号不是杂质,而是取代模式与最初形成的阳离子不同的甲硅烷基离子。这些信号的仔细分配提供了实验证明,即受空间影响较小的甲硅烷基离子能够与未反应的硅烷前体交换取代基。密度泛函理论计算提供了对取代基转移的机制性了解,在该转移中,迁移基团在涉及二茂铁桥接中间体的协同过程中在两个硅片段之间交换。此外,〜(29)Si NMR化学位移的量子化学分析显示,硅阳离子的子集的d(〜(29)Si)值与Fe···Si距离呈线性关系。电子本地化功能和电子本地化指标分析显示,铁,硅和C'_(ipso)原子之间存在一个三中心的两电子键吸引子,可清楚地区分硅阳离子与相应的碳正离子和硼烷。以氟离子亲和力评估的〜(29)Si NMR化学位移与Lewis酸度之间的相关性仅针对甲硅烷基离子的子集可见,有时具有非直觉的趋势,表明空间和电子效应对该程度的复杂相互作用Fe··Si相互作用

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