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Application of Halogen Bonding to Organocatalysis: A Theoretical Perspective

机译:卤素键在有机催化中的应用:理论观点

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摘要

The strong, specific, and directional halogen bond (XB) is an ideal supramolecular synthon in crystal engineering, as well as rational catalyst and drug design. These attributes attracted strong growing interest in halogen bonding in the past decade and led to a wide range of applications in materials, biological, and catalysis applications. Recently, various research groups exploited the XB mode of activation in designing halogen-based Lewis acids in effecting organic transformation, and there is continual growth in this promising area. In addition to the rapid advancements in methodology development, computational investigations are well suited for mechanistic understanding, rational XB catalyst design, and the study of intermediates that are unstable when observed experimentally. In this review, we highlight recent computational studies of XB organocatalytic reactions, which provide valuable insights into the XB mode of activation, competing reaction pathways, effects of solvent and counterions, and design of novel XB catalysts.
机译:牢固,特异性和方向性的卤素键(XB)是晶体工程以及合理的催化剂和药物设计中的理想超分子合成子。在过去的十年中,这些特性引起了人们对卤素键的浓厚兴趣,并导致在材料,生物和催化应用中的广泛应用。最近,各种研究小组在设计影响有机转化的基于卤素的路易斯酸时利用了XB活化模式,并且在这一有希望的领域中持续增长。除了方法学发展的迅速进步外,计算研究还非常适合于对机理的理解,合理的XB催化剂设计以及对实验观察时不稳定的中间体的研究。在这篇综述中,我们重点介绍了XB有机催化反应的最新计算研究,这些研究提供了有关XB活化方式,竞争反应途径,溶剂和抗衡离子的影响以及新型XB催化剂设计的宝贵见解。

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