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可见光光催化驱动的难以捉摸的热 [2 + 2] 环加成反应:利用应变来获得具有 C2 对称性的三环环系。

An elusive thermal [2 + 2] cycloaddition driven by visible light photocatalysis: tapping into strain to access C2-symmetric tricyclic rings.

机构信息

107 Physical Science, Department of Chemistry, Oklahoma State University, Stillwater, OK 74078, USA.

出版信息

Org Biomol Chem. 2019 Feb 13;17(7):1854-1861. doi: 10.1039/c8ob01273c.

Abstract

A mild and operationally simple methodology is reported for the synthesis of cyclobutane rings imbedded within a C2-symmetric tricyclic framework. The method uses visible light and an iridium-based photocatalyst to drive the oft-stated "forbidden" thermal [2 + 2] cycloaddition of cycloheptenes and analogs. Importantly, it generates cyclobutane with four new stereocenters with excellent stereoselectivity, and perfect regioselectivity. The reaction is propelled forward when the photocatalyst absorbs a visible light photon, which transfers this energy to the cycloheptene. Key to success is, upon excitation to the triplet via sensitization from the photocatalyst, the double bond isomerizes to give the transient, highly strained, trans-cycloheptene. The trans-cycloheptene undergoes a strain relieving thermal, intermolecular [π2s + π2a] cycloaddition with another cis-cycloheptene. X-ray analysis reveals that the major product is the head-to-head, C2-symmetric all trans-cyclobutane. Additionally, a dramatic display structural complexity enhancement is observed with the use of chiral cycloheptenols possessing one stereocenter, which results in the formation of cyclobutanes with six contiguous stereocenters with good to excellent diastereocontrol, and can be used to isolate single stereoisomers of stereochemically complex cyclobutanes in good yield.

摘要

本文报道了一种温和且操作简便的方法,用于合成具有 C2 对称三环骨架的环丁烷环。该方法使用可见光和基于铱的光催化剂来驱动通常被称为“禁阻”的热 [2+2] 环加成反应,即环庚烯及其类似物的反应。重要的是,它以优异的立体选择性和完美的区域选择性生成具有四个新立体中心的环丁烷。当光催化剂吸收可见光光子时,反应会向前推进,将能量传递给环庚烯。成功的关键在于,通过光催化剂敏化从三重态激发后,双键异构化为瞬态、高度应变的反式环庚烯。反式环庚烯经历一个应变释放的热、分子间[π2s+π2a]环加成反应,与另一个顺式环庚烯反应。X 射线分析表明,主要产物是头对头的、C2 对称的全反式环丁烷。此外,使用具有一个手性中心的手性环庚烯醇,可以观察到显著的结构复杂性增强,形成具有六个连续立体中心的环丁烷,具有良好到优秀的非对映选择性,并且可以用于分离具有复杂立体化学的环丁烷的单一立体异构体,产率良好。

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