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路易斯加合物中化学键的本质:通过 Al NMR 四极耦合常数反映出来:固态 NMR 和量子化学的综合方法。

The Nature of Chemical Bonding in Lewis Adducts as Reflected by Al NMR Quadrupolar Coupling Constant: Combined Solid-State NMR and Quantum Chemical Approach.

机构信息

Institute of Macromolecular Chemistry of the Czech Academy of Sciences , Heyrovskeho nam. 2 , 162 06 , Prague 6 , Czech Republic.

Department of Structural Analysis , Institute of Physics of the Czech Academy of Sciences , Na Slovance 2 , Praha 8 , 182 21 , Czech Republic.

出版信息

Inorg Chem. 2018 Jun 18;57(12):7428-7437. doi: 10.1021/acs.inorgchem.8b01009. Epub 2018 Jun 5.

Abstract

Lewis acids and Lewis adducts are widely used in the chemical industry because of their high catalytic activity. Their precise geometrical description and understanding of their electronic structure are a crucial step for targeted synthesis and specific use. Herein, we present an experimental/computational strategy based on a solid-state NMR crystallographic approach allowing for detailed structural characterization of a wide range of organoaluminum compounds considerably differing in their chemical constitution. In particular, we focus on the precise measurement and subsequent quantum-chemical analysis of many different Al NMR resonances in the extremely broad range of quadrupolar coupling constants from 1 to 50 MHz. In this regard, we have optimized an experimental strategy combining a range of static as well as magic angle spinning experiments allowing reliable detection of the entire set of aluminum sites present in trimesitylaluminum (AlMes) reaction products. In this way, we have spectroscopically resolved six different products in the resulting polycrystalline mixture. All Al NMR resonances are precisely recorded and comprehensively analyzed by a quantum-chemical approach. Interestingly, in some cases the recorded Al solid-state NMR spectra show unexpected quadrupolar coupling constant values reaching up to ca. 30 MHz, which are attributed to tetra-coordinated aluminum species (Lewis adducts with trigonal pyramidal geometry). The cause of this unusual behavior is explored by analyzing the natural bond orbitals and complexation energies. The linear correlation between the quadrupolar coupling constant value and the nature of bonds in the Lewis adducts is revealed. Moreover, the Al NMR data are shown to be sensitive to the geometry of the tetra-coordinated organoaluminum species. Our findings thus provide a viable approach for the direct identification of Lewis acids and Lewis adducts, not only in the investigated multicomponent organoaluminum compounds but also in inorganic zeolites featuring catalytically active trigonal (Al) and strongly perturbed Al sites.

摘要

路易斯酸和路易斯加合物由于其高催化活性而在化学工业中得到广泛应用。它们的精确几何描述和电子结构的理解是有针对性的合成和特定用途的关键步骤。在这里,我们提出了一种基于固态 NMR 结晶学方法的实验/计算策略,该方法允许对在化学组成上差异很大的广泛的有机铝化合物进行详细的结构表征。特别是,我们专注于精确测量和随后的量子化学分析在从 1 到 50 MHz 的极其宽的四极耦合常数范围内的许多不同的 Al NMR 共振。在这方面,我们优化了一种实验策略,该策略结合了一系列静态和魔角旋转实验,允许可靠地检测三苯甲基铝(AlMes)反应产物中存在的整套铝位。通过这种方式,我们在多晶混合物中光谱学上分辨出六种不同的产物。所有 Al NMR 共振都通过量子化学方法精确记录和全面分析。有趣的是,在某些情况下,记录的 Al 固态 NMR 光谱显示出出乎意料的四极耦合常数值高达约 30 MHz,这归因于四配位的铝物种(具有三角锥形几何形状的路易斯加合物)。通过分析自然键轨道和络合能来探讨这种异常行为的原因。揭示了四极耦合常数值与路易斯加合物中键的性质之间的线性相关性。此外,Al NMR 数据对四配位有机铝物种的几何形状敏感。因此,我们的研究结果为直接识别路易斯酸和路易斯加合物提供了一种可行的方法,不仅在研究的多组分有机铝化合物中,而且在具有催化活性的三角(Al)和强烈扰动的 Al 位的无机沸石中也是如此。

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