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导向C-H活化中的邻基效应。

The ortho effect in directed C-H activation.

作者信息

Tóth Balázs L, Monory Anna, Egyed Orsolya, Domján Attila, Bényei Attila, Szathury Bálint, Novák Zoltán, Stirling András

机构信息

ELTE "Lendület" Catalysis and Organic Synthesis Research Group, Faculty of Science, Institute of Chemistry, Eötvös Loránd University Pázmány Péter Sétány. 1/A H-1117 Budapest Hungary

Research Centre for Natural Sciences, Eötvös Loránd Research Network Magyar Tudósok Körútja 2 H-1117 Budapest Hungary

出版信息

Chem Sci. 2021 Mar 2;12(14):5152-5163. doi: 10.1039/d1sc00642h.

Abstract

The success of transition metal-catalysed -directed C-H activation is often plagued by the effects of undesirable interactions between the directing group (DG) and other groups introduced into the aromatic core of the substrate. In particular, when these groups are in neighbouring positions, their interactions can affect profoundly the efficacy of the C-H activation by transition metals. In this work we introduce a simple model to interpret the influence of steric hindrance of a group in position to the DG in directed -C-H bond activation reactions, and coined the term Ortho Effect (OE) for such situations. We consider simple descriptors such as torsion angle and torsional energy to predict and explain the reactivity of a given substrate in directed C-H activation reactions. More than 250 examples have been invoked for the model, and the nature of the ortho effect was demonstrated on a wide variety of structures. In order to guide organic chemists, we set structural and energetic criteria to evaluate the efficiency of the metalation step which is usually the rate-determining event in C-H activations, we provide a simple and general protocol to estimate the reactivity of a potential substrate in C-H activation. For borderline cases these criteria help set the minimum reaction temperature to obtain reasonable reaction rates. As an example for the practical applicability of the model, we performed synthetic validations palladium-catalysed 2,2,2-trifluoroethylation reactions in our lab. Furthermore, we give predictions for the necessary reaction conditions for several selected DGs.

摘要

过渡金属催化的导向C-H活化反应的成功常常受到导向基团(DG)与引入底物芳环核心的其他基团之间不良相互作用的影响。特别是当这些基团处于相邻位置时,它们的相互作用会深刻影响过渡金属对C-H的活化效果。在这项工作中,我们引入了一个简单模型来解释在导向C-H键活化反应中,与DG处于邻位的基团的空间位阻影响,并将这种情况称为邻位效应(OE)。我们考虑了诸如扭转角和扭转能等简单描述符来预测和解释给定底物在导向C-H活化反应中的反应性。该模型引用了超过250个例子,并在各种结构上证明了邻位效应的本质。为了指导有机化学家,我们设定了结构和能量标准来评估金属化步骤的效率,金属化步骤通常是C-H活化中的速率决定步骤,我们提供了一个简单通用的方案来估计潜在底物在C-H活化中的反应性。对于临界情况,这些标准有助于设定获得合理反应速率所需的最低反应温度。作为该模型实际应用的一个例子,我们在实验室中对钯催化的2,2,2-三氟乙基化反应进行了合成验证。此外,我们还对几种选定的DG所需的反应条件进行了预测。

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