首页> 外文期刊>Journal of the American Chemical Society >TRANSITION STRUCTURE AND SUBSTITUENT EFFECTS ON AQUEOUS ACCELERATION OF THE CLAISEN REARRANGEMENT
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TRANSITION STRUCTURE AND SUBSTITUENT EFFECTS ON AQUEOUS ACCELERATION OF THE CLAISEN REARRANGEMENT

机译:过渡结构及其对Claisen重排水加速的取代效应

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A combined quantum mechanical and statistical mechanical approach is used to assess the transition structure and substituent effects on the rate acceleration of Claisen rearrangements in aqueous solution. It is demonstrated that the computed aqueous solvent effect depends critically on the nature of the transition structure, and a correlation between transition state stabilization and dipole moment in water is obtained. In addition, transition structures for a series of substituted allyl vinyl ether compounds have been optimized at the RHF/6-31G(d) level. The results indicate that transition structures are less tight for donor substitutions on the allyl fragment and acceptor groups on the oxallyl unit than the parent AVE. This leads to increased aqueous rate acceleration, accompanying enhanced ionic characters at the transition state for the Claisen rearrangement. Substituted R(2)-cyano and R(6) methoxy allyl vinyl ether is predicted to have a synergetic effect with a solvent-induced rate increase of 6 x 10(5). [References: 47]
机译:结合使用量子力学和统计力学方法来评估过渡结构和取代基对水溶液中Claisen重排速率加速的影响。结果表明,计算出的水性溶剂效应关键取决于过渡结构的性质,并且获得了过渡态稳定度与水中偶极矩之间的相关性。另外,一系列取代的烯丙基乙烯基醚化合物的过渡结构已在RHF / 6-31G(d)水平上得到优化。结果表明,与母体AVE相比,烯丙基片段上的供体取代基和草烯丙基单元上的受体基团的过渡结构不那么紧密。这导致增加的水合速率加速,伴随着克莱森重排的过渡态离子特性的增强。预计取代的R(2)-氰基和R(6)甲氧基烯丙基乙烯基醚具有协同作用,溶剂诱导的速率增加6 x 10(5)。 [参考:47]

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