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Central-to-axial chirality transfer in the benzannulation reaction of optically pure Fischer carbene complexes in the synthesis of allocolchicinoids

机译:光学纯Fischer卡宾配合物在合成油桃环素类化合物的苯环化反应中的中心-轴向手性转移

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A method for the synthesis of allocolchicinoids is explored that involves the benzannulation reaction of Fischer chromium carbene complexes with alkynes. The benzannulation reaction is employed to install the aromatic C-ring via the reaction of an a,o-unsaturated carbene complex in which the carbene complex is attached to a seven-membered ring that is to become the B-ring of the allocolchicinoids. Two different regioisomeric series can be accessed depending on which position the carbene complex is on the seven-membered ring. A key issue that is addressed is the stereochemistry of the newly formed axis of chirality that results from a stereo-relay from an existing chiral center on the seven-membered ring at the position destined to be C(7) in the allocolchicinoids. The level of stereochemistry is dependent on the position of the carbene complex on the seven-membered ring. A mechanism is proposed to account for this stereochemical dependence and to account for the observed effects of temperature and solvent on the stereoselectivity. Finally, the benzannulation reactions of optically pure complexes are examined and quite surprisingly one, but not both, of the diastereomeric products is racemized. The racemization can be prevented with the proper choice of solvent and temperature. A mechanism is proposed to account for the racemization of only one of the diastereomers of the product that involves the intermediacy of an o-quinone methide chromium tricarbonyl complex. (c) 2007 Elsevier Ltd. All rights reserved.
机译:探索了一种合成油桃素类化合物的方法,该方法涉及费希尔铬卡宾配合物与炔烃的苯并环化反应。苯环化反应用于通过a,o-不饱和卡宾络合物的反应来安装芳族C环,其中卡宾络合物连接到七元环上,该七元环将成为金属环素类化合物的B环。取决于卡宾络合物在七元环上的位置,可以得到两个不同的区域异构系列。解决的一个关键问题是新形成的手性轴的立体化学,该立体化学是由七元环上现有的手性中心在二十碳五烯酸类化合物中注定为C(7)的位置产生的立体继电器产生的。立体化学的水平取决于卡宾配合物在七元环上的位置。提出了一种机制来解释这种立体化学依赖性,并考虑到所观察到的温度和溶剂对立体选择性的影响。最后,检查了光学纯络合物的苯并环化反应,非常令人惊讶的是,一种非对映体产物(但不是两种)都被消旋了。外消旋化可以用溶剂和温度适当选择来防止。提出了一种机制来解释仅一种产物的非对映异构体的外消旋化,该外消旋体涉及邻醌甲基化物三羰基铬铬配合物的中间体。 (c)2007 Elsevier Ltd.保留所有权利。

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