The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has been studied at the B3LYP/6-31G* and B3LYP/6-31G*+PCM levels of theory. The experimentally determined structure−reactivity relationship was successfully reproduced; the relative reactivity of the (E,E)-, (E,Z)-, (Z,E)-, and (Z,Z)-configured allyl vinyl ethers can be attributed to unfavorable interactions caused by pseudoaxial substituents within the chairlike transition-state structures. As expected, the isolated assessment of the calculated ground-state or transition-state stabilities is not suitable to explain the experimentally observed structure−reactivity relationship
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has be...
The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has be...
The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has be...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
A combined computational and experimental study on the Claisen rearrangement of a 2-alkoxycarbonyl-s...
A combined computational and experimental study on the Claisen rearrangement of a 2-alkoxycarbonyl-s...
A combined computational and experimental study on the Claisen rearrangement of a 2-alkoxycarbonyl-s...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has be...
The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has be...
The uncatalyzed Gosteli−Claisen rearrangement of four double bond isomeric allyl vinyl ethers has be...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
The results of kinetic studies on the uncatalyzed [3,3]-sigmatropic rearrangement of 2-alkoxycarbony...
A combined computational and experimental study on the Claisen rearrangement of a 2-alkoxycarbonyl-s...
A combined computational and experimental study on the Claisen rearrangement of a 2-alkoxycarbonyl-s...
A combined computational and experimental study on the Claisen rearrangement of a 2-alkoxycarbonyl-s...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...
The ambivalent reactivity of 2-alkoxycarbonyl-substituted propargyl vinyl ethers has been explored. ...