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首页> 外文期刊>Helvetica chimica acta >FORMATION OF CYCLIC KETALS FROM HYDROXYALKYL ENOL ETHERS, A STEREOELECTRONICALLY CONTROLLED ENDO-TRIG-CYCLIZATION PROCESS
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FORMATION OF CYCLIC KETALS FROM HYDROXYALKYL ENOL ETHERS, A STEREOELECTRONICALLY CONTROLLED ENDO-TRIG-CYCLIZATION PROCESS

机译:由羟基烯醇醚(一种立体电子控制的内-触发循环过程)形成环酮

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Acid-catalyzed cyclic ketal formation vs. hydrolysis of a series of hydroxyalkyl cyclic enol ethers in the presence of 1 equiv. of H2O, and acid-catalyzed cyclic-ketal formation (same ketals as above) vs. methanolysis of a series of mixed pent-4-enyl hydroxyalkyl ketals with N-bromosuccinimide in the presence of 4 equiv. of MeOH led to the same result: the intramolecular cyclization processes occur at similar rates as the intermolecular H2O or MeOH attacks independently of the size of the rings formed (five-, six-, or seven-membered), by cyclizations. These results can be explained by the facts that, due to stereoelectronic effects which impose a torsional strain to the sp(2) hybridized O-atom, the cyclization activation enthalpy decreases, as the length of the hydroxyalkyl chain increase (ease of cyclization: 7 > 6 > 5), whereas the entropy factor favors the cyclization in the reverse fashion (ease of cyclization: 5 > 6 > 7). The various reaction pathways have been examined using the semi-empirical Hamiltonian AMI, and the results obtained confirm that large-ring formation is enthalpically much favored over the cyclization processes leading to small rings (ease of cyclization: 7 > 6 > 5). [References: 18]
机译:在1当量的存在下,酸催化的环状缩酮的形成与一系列羟烷基环状烯醇醚的水解反应。在4当量的存在下,酸的催化,环状缩酮的形成(与上述缩酮相同)与一系列混合的戊四烯基羟烷基缩酮与N-溴代琥珀酰亚胺的甲醇分解反应。 MeOH导致相同的结果:分子内环化过程发生的速率与分子间H2O或MeOH攻击的速率相似,而与环化形成的环(五元,六元或七元)的大小无关。这些结果可以用以下事实来解释:由于立体电子效应将扭曲应变施加到sp(2)杂化的O原子上,随着羟烷基链长度的增加,环化活化焓降低(环化容易度:7 > 6> 5),而熵因子则有利于以相反的方式进行环化(环化的容易程度:5> 6> 7)。已经使用半经验汉密尔顿式AMI检查了各种反应途径,并且获得的结果证实,大环的形成在焓上比导致小环的环化过程更受青睐(环化的容易程度:7> 6> 5)。 [参考:18]

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