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从二维到三维大位阻吡啶的反应性和立体参数:通过手性氮杂三亚苯增加氮原子处的空间需求

Reactivity and Steric Parameters from 2D to 3D Bulky Pyridines: Increasing Steric Demand at Nitrogen with Chiral Azatriptycenes.

作者信息

Saida Ali Ben, Mahaut Damien, Tumanov Nikolay, Wouters Johan, Champagne Benoît, Vanthuyne Nicolas, Robiette Raphaël, Berionni Guillaume

机构信息

Department of Chemistry and Namur Institute of Structured Matter, Université de Namur, 61 Rue de Bruxelles, 5000, Namur, Belgium.

Aix Marseille Univ, CNRS, Centrale Marseille, iSm2, Marseille, France.

出版信息

Angew Chem Int Ed Engl. 2024 Aug 5;63(32):e202407503. doi: 10.1002/anie.202407503. Epub 2024 Jul 9.

Abstract

Sterically hindered pyridines embedded in a three-dimensional triptycene framework have been synthesized, and their resolution by chiral HPLC enabled access to unprecedented enantiopure pyridines exceeding the known steric limits. The design principles for new axially chiral pyridine derivatives are then described. To rationalize their associations with Lewis acids and transition metals, a comprehensive determination of the steric and electronic parameters for this new class of pyridines was performed. This led to the general parameterization of the steric parameters (percent buried volume %V, Tolman cone angle θ, and He_steric descriptor) for a large set of two- and three-dimensional pyridine derivatives. These parameters are shown to describe quantitatively their interactions with carbon- and boron-centered Lewis acids and were used to predict the ΔG° of association with the prototypical B(CF) Lewis acid widely used in frustrated Lewis pair catalysis. This first parameterization of pyridine sterics is a fundamental basis for the future development of predictive reactivity models and for guiding new applications of bulky and chiral pyridines in organocatalysis, frustrated Lewis pairs, and transition-metal catalysis.

摘要

已合成了嵌入三维扭曲苯骨架中的位阻吡啶,并通过手性高效液相色谱对其进行拆分,从而获得了超越已知空间限制的前所未有的对映体纯吡啶。随后描述了新型轴向手性吡啶衍生物的设计原则。为了阐明它们与路易斯酸和过渡金属的结合情况,对这类新型吡啶的空间和电子参数进行了全面测定。这导致对大量二维和三维吡啶衍生物的空间参数(掩埋体积百分比%V、托尔曼锥角θ和He_空间描述符)进行了一般参数化。这些参数被证明可以定量描述它们与以碳和硼为中心的路易斯酸的相互作用,并用于预测与在受阻路易斯对催化中广泛使用的原型B(CF)路易斯酸结合的ΔG°。吡啶空间效应的首次参数化是未来开发预测反应性模型以及指导庞大且手性吡啶在有机催化、受阻路易斯对和过渡金属催化中的新应用的基本基础。

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