首页> 外文期刊>Journal of Physical Organic Chemistry >A combined experimental and density functional study of 1-(arylsulfonyl)-2-R-4-chloro-2-butenes reactivity towards the allylic chlorine
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A combined experimental and density functional study of 1-(arylsulfonyl)-2-R-4-chloro-2-butenes reactivity towards the allylic chlorine

机译:1-(芳基磺酰基)-2-R-4-氯-2-丁烯对烯丙基氯反应性的组合实验和密度泛函研究

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Nucleophilic substitution and dehydrochlorination reactions of a number of the ring-substituted 1-(arylsulfonyl)-2-R-4-chloro-2-butenes are studied both experimentally and theoretically. The developed synthetic procedures are characterized by a general rapidity, cheapness, and simplicity providing moderate to high yields of 1-arylsulfonyl 1,3-butadienes (48-95%), 1-(arylsulfonyl)-2-R-4-(N,N-dialkylamino)-2-butenes (31-53%), 1-(arylsulfonyl)-2-R-2-buten-4-ols (37-61%), and bis[4-(arylsulfonyl)-3-R-but-2-enyl]sulfides (40-70%). The density functional theory B3LYP/6-311++G(2d,2p) calculations of the intermediate allylic cations in acetone revealed their high stability occurring from a resonance stabilization and hyperconjugation by the SO2Ar group. The reactivity parameters estimated at the bond critical points of the diene/allylic moiety display a high correlation (R-2>0.97) with the Hammett (sigma(p)) constants. 1-Arylsulfonyl 1,3-butadienes are characterized by a partly broken conjugated system, which follows from analysis of the two-centered delocalization () and localization () index values. The highest occupied molecular orbital energies of 1-arylsulfonyl 1,3-butadienes are lower than those of 1,3-butadiene explaining their low reactivity towards the Diels-Alder condensation. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:通过实验和理论研究了许多环取代的1-(芳基磺酰基)-2-R-4-氯-2-丁烯的亲核取代和脱氯化氢反应。所开发的合成方法的特征在于一般的快速性,便宜性和简便性,可提供中等至高产率的1-芳基磺酰基1,3-丁二烯(48-95%),1-(芳基磺酰基)-2-R-4-(N ,N-二烷基氨基)-2-丁烯(31-53%),1-(芳基磺酰基)-2-R-2-丁烯-4-醇(37-61%)和双[4-(芳基磺酰基)-3 -R-丁-2-烯基]硫化物(40-70%)。丙酮中的中间烯丙基阳离子的密度泛函理论B3LYP / 6-311 ++ G(2d,2p)计算表明,它们的高稳定性来自于SO2Ar基团的共振稳定和超共轭作用。在二烯/烯丙基部分的键临界点估计的反应性参数与Hammett常数(sigma(p))具有高度相关性(R-2> 0.97)。 1-芳基磺酰基1,3-丁二烯的特征在于部分破坏的共轭体系,该体系来自对两个中心的离域()和本地化()指数值的分析。 1-芳基磺酰基1,3-丁二烯的最高占据的分子轨道能量低于1,3-丁二烯的,这说明它们对狄尔斯-阿尔德缩合反应的活性较低。版权所有(c)2015 John Wiley&Sons,Ltd.

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