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无张力的Criegee中间体的合成:反向α-效应和其他保护性立体电子作用力可阻止γ-氢过氧基-γ-过氧内酯的拜耳-维利格重排。

Synthesis of unstrained Criegee intermediates: inverse α-effect and other protective stereoelectronic forces can stop Baeyer-Villiger rearrangement of γ-hydroperoxy-γ-peroxylactones.

作者信息

Vil' Vera A, Barsegyan Yana A, Kuhn Leah, Ekimova Maria V, Semenov Egor A, Korlyukov Alexander A, Terent'ev Alexander O, Alabugin Igor V

机构信息

N. D. Zelinsky Institute of Organic Chemistry Russian Academy of Sciences 47 Leninsky Prospect Moscow 119991 Russian Federation

Department of Chemistry and Biochemistry, Florida State University Tallahassee Fl 32306 USA

出版信息

Chem Sci. 2020 May 6;11(20):5313-5322. doi: 10.1039/d0sc01025a.

Abstract

We address this question by exploring the interplay between the primary and secondary stereoelectronic effects in the Baeyer-Villiger (BV) rearrangement by experimental and computational studies of γ-OR-substituted γ-peroxylactones, the previously elusive non-strained Criegee intermediates (CI). These new cyclic peroxides were synthesized by the peroxidation of γ-ketoesters followed by cyclization using a BF·EtO/HO system. Although the primary effect (alignment of the migrating C-R bond with the breaking O-O bond) is active in the 6-membered ring, weakening of the secondary effect (donation from the OR lone pair to the breaking C-R bond) provides sufficient kinetic stabilization to allow the formation and isolation of stable γ-hydroperoxy-γ-peroxylactones with a methyl-substituent in the C6-position. Furthermore, supplementary protection is also provided by reactant stabilization originating from two new stereoelectronic factors, both identified and quantified for the first time in the present work. First, an unexpected boat preference in the γ-hydroperoxy-γ-peroxylactones weakens the primary stereoelectronic effects and introduces a ∼2 kcal mol Curtin-Hammett penalty for reacquiring the more reactive chair conformation. Second, activation of the secondary stereoelectronic effect in the TS comes with a ∼2-3 kcal mol penalty for giving up the exo-anomeric stabilization in the 6-membered Criegee intermediate. Together, the three new stereoelectronic factors (inverse α-effect, misalignment of reacting bonds in the boat conformation, and the exo-anomeric effect) illustrate the richness of stereoelectronic patterns in peroxide chemistry and provide experimentally significant kinetic stabilization to this new class of bisperoxides. Furthermore, mild reduction of γ-hydroperoxy-γ-peroxylactone with PhP produced an isolable γ-hydroxy-γ-peroxylactone, the first example of a structurally unencumbered CI where neither the primary nor the secondary stereoelectronic effect are impeded. Although this compound is relatively unstable, and instead follows a new mode of reactivity for the CI - a ring-opening process.

摘要

我们通过对γ-OR取代的γ-过氧内酯(以前难以捉摸的无张力Criegee中间体(CI))进行实验和计算研究,探讨了拜耳-维利格(BV)重排中一级和二级立体电子效应之间的相互作用,从而解决了这个问题。这些新型环状过氧化物是通过γ-酮酯的过氧化反应,然后使用BF·EtO/HO体系进行环化反应合成的。尽管一级效应(迁移的C-R键与断裂的O-O键的对齐)在六元环中起作用,但二级效应(OR孤对电子向断裂的C-R键的供电子作用)的减弱提供了足够的动力学稳定性,使得能够形成并分离出在C6位带有甲基取代基的稳定的γ-氢过氧基-γ-过氧内酯。此外,反应物稳定化还提供了额外的保护,这源于两个新的立体电子因素,在本工作中首次被识别和量化。首先,γ-氢过氧基-γ-过氧内酯中意外的船式构象偏好减弱了一级立体电子效应,并引入了约2 kcal/mol的柯廷-哈米特能垒,用于重新获得反应活性更高的椅式构象。其次,过渡态中二级立体电子效应的激活伴随着约2 - 3 kcal/mol的能垒,这是由于在六元Criegee中间体中放弃了外端异头效应的稳定化作用。这三个新的立体电子因素(反向α效应、船式构象中反应键的错位以及外端异头效应)共同说明了过氧化物化学中立体电子模式的丰富性,并为这类新型双过氧化物提供了具有实验意义的动力学稳定性。此外,用PhP对γ-氢过氧基-γ-过氧内酯进行温和还原,得到了一种可分离的γ-羟基-γ-过氧内酯,这是结构上无阻碍的CI的第一个例子,其中一级和二级立体电子效应均未受到阻碍。尽管这种化合物相对不稳定,并且遵循了CI的一种新的反应模式——开环过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5438/8159355/4f0f0e64fff1/d0sc01025a-s1.jpg

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