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Can _π6 + _π4 = 10? Exploring Cycloaddition Routes to Highly Unsaturated 10-Membered Rings

机译:_π6+_π4= 10可以吗?探索到高度不饱和的10元环的环加成途径

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This paper uses DFT and G3(MP2) calculations to examine whether unbridged 10-membered rings can be made by _π6 + _π4 cycloadditions to (Z)- and (E)-hexatrienes, hexa-1,5-dien-3-ynes, (Z)-hexa-1,3-dien-5-ynes, hexa-1,2,3,5-tetraenes, and (Z)-hexa-3-ene-1,5-diynes. Cycloadditions to four An reactants, buta-1,3-diene, butenyne, butatriene, and butadiyne, are explored. Thirty different basic cycloadditions are identified, and all are shown to be exothermic according to G3(MP2) calculations; strain energies in the products are comparable with that of cyclodecane itself, despite the presence of trans-alkene, alkyne, allene, cumulene, and s-trans diene moieties. The major obstacles to the isolation of 6 + 4 cycloaddition products are competing _π4 + _π2 cycloadditions and, especially, rapid Cope rearrangement of the products, but, in many cases, the judicious introduction of substituents can overcome these problems so that practical syntheses should be possible. Reactions between (E)-hexa-1,3,5-triene and s-trans-buta-1,3-diene are shown to have substantially lower activation energies than those involving (Z)-hexa-1,3,5-triene reacting with either s-cis- or s-frans-buta-1,3-diene. Conformationally locked derivatives of s-cis,s-cis (E)-hexa-1,3,5-trienes can lead to derivatives of (Z,Z,E)-cyclodeca-1,3,7-triene that are stable to Cope rearrangement, and reactions should proceed at close to ambient temperatures with suitable activating groups. We predict that it should be possible to prepare suitably substituted derivatives of at least 11 more highly unsaturated ring systems: (5Z,7Z)-cyclodeca-1,2,5,7-tetraene, (1Z,3Z)-cyclodeca-1,3-dien-7-yne, (2Z,7E)-cyclodeca-1,2,3,7-tetraene, (Z)-cyclodeca-1,2,3-trien-7-yne, (4Z,8E)-cyclodeca-1,2,4,8-tetraene, (Z)-cyclodeca-1,2,4,5,7-pentaene, (Z)-cyclodeca-1,2,4-trien-8-yne, (1 Z,7E)-cyclodeca-1,7-dien-3-yne, (R,S,E)-cyclodeca-1,2,4,5,8-pentaene, cyclodeca-1,2,4,5,8,9-hexaene, and (R,S)-cyclodeca-1,2,4,5-tetraen-8-yne. In three other cases, we predict that cycloaddition will be followed by unusual and intriguing rearrangements. Cycloadditions can be accelerated by the presence of electron-withdrawing groups in either the 6π or 4π reactants. Transannular cyclizations of some products may lead to interesting stereocontrolled routes to 6,6- and/or 5,7-bicyclic structures.
机译:本文使用DFT和G3(MP2)计算来检查是否可以通过(Z)-和(E)-六三烯,hexa-1,5-dien-3-ynes的_π6+_π4环加成反应来形成未桥连的10元环, (Z)-六-1,3-二烯5-炔,六-1,2,3,5-四烯和(Z)-六-3-烯-1,5-二炔。探索了对四种An反应物的环加成反应,即丁酸1,3-二烯,丁烯,丁三烯和丁二炔。鉴定出三十种不同的基本环加成物,并且根据G3(MP2)计算均显示出它们是放热的。尽管存在反式烯烃,炔烃,丙二烯,异丙苯和s-反式二烯部分,但产物中的应变能与环癸烷本身相当。分离6 + 4环加成产物的主要障碍是竞争的_π4+_π2环加成,尤其是产物的快速Cope重排,但是,在许多情况下,明智地引入取代基可以克服这些问题,因此应该进行实际合成可能。与(Z)-hexa-1,3,5-涉及的那些相比,(E)-hexa-1,3,5-三烯与s-反丁烯-1,3-二烯之间的反应具有显着更低的活化能。三烯与s-顺式或s-frans-buta-1,3-二烯反应。 s-顺式,s-顺式(E)-六-1,3,5-三烯的构象锁定衍生物可以生成对以下化合物稳定的(Z,Z,E)-cyclodeca-1,3,7-三烯衍生物应对重排,反应应在合适的活化基团下于接近环境温度下进行。我们预计应该可以制备至少11个更高不饱和度的环系统的适当取代的衍生物:(5Z,7Z)-cyclodeca-1,2,5,7-四烯,(1Z,3Z)-cyclodeca-1, 3-dien-7-yne,(2Z,7E)-cyclodeca-1,2,3,7-tetraene,(Z)-cyclodeca-1,2,3-trien-7-yne,(4Z,8E)-环癸-12,1,2,4,8-四烯,(Z)-环癸-1,2,4,5,7-戊烯,(Z)-环癸-1,1,2,4-三烯-8-炔,(1 Z,7E)-cyclodeca-1,7-dien-3-yne,(R,S,E)-cyclodeca-1,2,4,5,8-pentaene,cyclodeca-1,2,4,5,8 ,9-己烯和(R,S)-cyclodeca-1,2,4,5-tetraen-8-yne。在其他三种情况下,我们预测环加成反应之后将发生异常且有趣的重排。环加成反应可以通过6π或4π反应物中存在吸电子基团来加速。某些产品的跨环环化可能会导致有趣的立体控制路线生成6,6-和/或5,7-双环结构。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第24期|P.8325-8337|共13页
  • 作者单位

    School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.;

    rnSchool of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.;

    rnSchool of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.;

    rnInstitute de Quimica-Fisica Rocasolano, Consejo Superior de Investigations Cientificas, Serrano, 119, ES-28006 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:15:40

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