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Conformations of N-Heterocyclic Carbene Ligands in Ruthenium Complexes Relevant to Olefin Metathesis

机译:与烯烃复分解有关的钌配合物中N-杂环碳配体的构象

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摘要

The structure of ruthenium-based olefin metathesis catalyst 3 and model π-complex 5 in solution and in the solid state are reported. The N-tolyl ligands, due to their lower symmetry than the traditional N-mesityl substituents, complicate this analysis, but ultimately provide explanation for the enhanced reactivity of 3 relative to standard catalyst 2. The tilt of the N-tolyl ring provides additional space near the ruthenium center, which is consistent with the enhanced reactivity of 3 toward sterically demanding substrates. Due to this tilt, the more sterically accessible face bears the two methyl substituents of the N-aryl rings. These experimental studies are supported by computational studies of these complexes by DFT. The experimental data provides a means to validate the accuracy of the B3LYP and M06 functionals. B3LYP provides geometries that match X-ray crystal structural data more closely, though it leads to slightly less (0.5 kcal mol^(−1)) accuracy than M06 most likely because it underestimates attractive noncovalent interactions.
机译:报告了在溶液和固态下的钌基烯烃复分解催化剂3和模型π-络合物5的结构。 N-甲苯基配体由于其对称性低于传统的N-间苯甲基取代基,使该分析复杂化,但最终为3与标准催化剂2的反应性增强提供了解释。靠近钌中心,这与3对空间要求高的底物的反应性增强是一致的。由于这种倾斜,在空间上更易接近的面带有N-芳基环的两个甲基取代基。这些实验研究得到了DFT对这些配合物的计算研究的支持。实验数据提供了一种验证B3LYP和M06功能的准确性的方法。 B3LYP提供的几何形状与X射线晶体结构数据更紧密匹配,尽管它最有可能比M06精度稍低(0.5 kcal mol ^(-1)),因为它低估了有吸引力的非共价相互作用。

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