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极性有机氟取代基:烷基链和脂环上的多取代氟原子。

Polar Organofluorine Substituents: Multivicinal Fluorines on Alkyl Chains and Alicyclic Rings.

机构信息

School of Chemistry, University of St Andrews, North Haugh, St Andrews, KY16 9ST, UK.

出版信息

Chemistry. 2020 Jun 26;26(36):7981-7997. doi: 10.1002/chem.202000178. Epub 2020 May 8.

Abstract

This Review outlines the progression, primarily of our own work, but with important contributions from other labs, on the synthesis and properties of multiple vicinally fluorinated alkyl chains and rings. Chain conformations of individual diastereoisomers with -CHF- at adjacent carbons are influenced by stereoelectronic factors associated with the polar C-F bond and the polarised geminal hydrogens. Generally, the chain will prefer a conformation which acts to minimise overall molecular polarity, and where the C-F bonds orient away from each other. However, when vicinal fluorine atoms are positioned on a ring then conformations are more constrained. The ring will adopt optimal conformations such as a chair in cyclohexane and then C-F bonds can be introduced with a stereochemistry that forces parallel (axial) orientations. In the case of cyclohexane, 1,3-diaxial arrangements of C-F bonds impart considerable polarity to the ring, resulting in an electronegative 'fluorine face' and an electropositive 'hydrogen face'. For all-syn 1,2,3,4,5,6-hexafluorocyclohexane, this arrangement generates an unusually polar aliphatic ring system. Most recently the concept has been extended to the preparation of all-syn 1,2,3-trifluorocyclopropanes, a rigid ring system with fluorine atoms on one face and hydrogens on the other. Lipophilicity Log P values of such compounds indicate that they are significantly more polar than their parent alicyclic hydrocarbons and give some positive indication for a future role of such substituents in medicinal chemistry. Expanding to such a role will require access to improved synthesis methods to these motifs and consequently access to a broader a range of building blocks, however some exciting new methods have emerged recently and these are briefly reviewed.

摘要

本文概述了我们自己的工作以及其他实验室的重要贡献,介绍了多邻位氟化的烷基链和环的合成和性质。相邻碳原子上具有-CHF-的非对映异构体的链构象受到与极性 C-F 键和极化的偕二氢相关的立体电子因素的影响。通常,链将优先选择一种构象,以最小化整体分子极性,并且 C-F 键彼此远离。然而,当邻位氟原子位于环上时,构象会受到更多限制。环将采用最佳构象,例如环己烷中的椅式构象,然后可以引入具有立体化学的 C-F 键,迫使它们平行(轴向)取向。在环己烷的情况下,C-F 键的 1,3-双轴向排列赋予环相当大的极性,导致电负性的“氟面”和正电性的“氢面”。对于全顺式 1,2,3,4,5,6-六氟环己烷,这种排列产生了一个异常极性的脂肪环系统。最近,这一概念已扩展到全顺式 1,2,3-三氟环丙烷的制备,这是一种具有一个面上的氟原子和另一个面上的氢原子的刚性环系统。此类化合物的亲脂性 LogP 值表明它们比其母体脂环烃具有明显更高的极性,并为这些取代基在药物化学中的未来作用提供了一些积极的迹象。要扩展到这样的作用,需要获得这些基序的改进合成方法,从而获得更广泛的构建块范围,但是最近出现了一些令人兴奋的新方法,本文对此进行了简要回顾。

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