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首页> 外文期刊>Chemistry - A European Journal >Synthetic Studies on and Mechanistic Insight into [W(CO)5(L)]-Catalyzed Stereoselective Construction of Functionalized Bicyclo[5.3.0]decane Frameworks
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Synthetic Studies on and Mechanistic Insight into [W(CO)5(L)]-Catalyzed Stereoselective Construction of Functionalized Bicyclo[5.3.0]decane Frameworks

机译:[W(CO) 5 (L)]-催化的功能化双环[5.3.0]癸烷骨架的立体选择性构建的合成研究和机理研究

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摘要

Stereoselective preparation of a variety of synthetically useful functionalized bicyclo[5.3.0]decane derivatives was achieved by tandem cyclization of 3-siloxy-1,3,9-triene-7-yne derivatives based on the electrophilic activation of alkynes catalyzed by [W(CO)5(L)]. The reaction proceeded smoothly under photoirradiation, and various substrates were cyclized to give the corresponding bicyclic compounds with up to four chiral centers stereospecifically. Reactions of siloxydienes with a silyl substituent as an equivalent of a hydroxyl group also proceeded with wide generality to afford silyl-substituted bicyclo[5.3.0]decanes, which were highly useful as synthetic intermediates. Stereochemical studies concerning the silyl enol ether moiety suggested that two types of reaction pathway for the formation of seven-membered rings were present. The reaction of (Z)-enol silyl ethers proceeded through Cope rearrangement of cis-divinylcyclopropane intermediates, and that of (E)-enol silyl ethers by 1,4-addition of the dienyl tungsten species at the position δ to the metal atom. In the reactions of siloxydiene derivatives with silyl substituents, all possible diastereomers could be synthesized stereoselectively by changing the geometry of the silyl enol ether and enyne moieties.
机译:立体选择性制备各种合成有用的功能化双环[5.3.0]癸烷衍生物是基于[W]催化的炔烃的亲电活化,通过3-硅氧基-1,3,9-三烯-7-炔炔衍生物的串联环化而实现的。 (CO) 5 (L)]。该反应在光辐照下顺利进行,并且使各种底物环化,得到相应的双环化合物,该双环化合物具有立体定向的至多四个手性中心。甲硅烷氧基二烯与甲硅烷基取代基(相当于羟基)的反应也广泛地进行,得到甲硅烷基取代的双环[5.3.0]癸烷,其非常有用地作为合成中间体。关于甲硅烷基烯醇醚部分的立体化学研究表明存在两种类型的形成七元环的反应途径。 (Z)-烯醇甲硅烷基醚的反应通过顺式-二乙烯基环丙烷中间体和(E)-烯醇甲硅烷基醚的Cope重排通过将δ位置的二烯基钨原子加到金属原子上而进行。在甲硅烷氧​​基二烯衍生物与甲硅烷基取代基的反应中,通过改变甲硅烷基烯醇醚和烯炔部分的几何形状,可以立体选择性地合成所有可能的非对映异构体。

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