The Diels-Alder reactivities of a series of cycloalkenes, from the highly strained cyclopropene to the unstrained cyclohexene, have been studied with density functional theory using the M06-2X functional. The normal electron-demand Diels-Alder reactions with cyclopentadiene and the inverse electron-demand Diels-Alder reactions with 3,6-bis(trifluoromethyl)tetrazine were analyzed using the distortion/interaction-activation strain model. Previous studies showed that activation strain computed from the distorted reactants in the transition structures are larger for unstrained than strained cycloalkenes, and that most of the activation energy differences are accounted for by this difference. We have now analyzed the strain and interaction energ...
The reactivities of 2-butyne, cycloheptyne, cyclooctyne, and cyclononyne in the 1,3-dipolar cycloadd...
Heteroaromatic azadienes, especially 1,2,4,5-tetrazines, are extremely reactive partners with alkene...
The interactions (including weak interactions) between dienophiles and dienes play an important role...
The Diels–Alder reactivities of a series of cycloalkenes, from the highly strained cyclopropene to t...
The Diels-Alder reactions of the cycloalkenes, cyclohexene through cyclopropene, with a series of di...
The Diels–Alder reactions of the cycloalkenes, cyclohexene through cyclopropene, with a series of di...
Contains fulltext : 177932.pdf (publisher's version ) (Closed access
The factors controlling the reactivity of the strained-alkyne embedded cycloparaphenylenes have been...
The Diels–Alder reactions of seven 1,2,4,5-tetrazines with unstrained and strained alkenes and alkyn...
Heteroaromatic azadienes, especially 1,2,4,5-tetrazines, are extremely reactive partners with alkene...
Quantum chemical calculations are used to investigate the experimentally measured reactivities of cy...
In this Focus Review, we present the application of the so-called Activation Strain Model of chemica...
In this Focus Review, we present the application of the so-called Activation Strain Model of chemica...
Quantum chemical calculations were used to investigate the Diels-Alder reactivities for a series of ...
The reactivities of 2-butyne, cycloheptyne, cyclooctyne, and cyclononyne in the 1,3-dipolar cycloadd...
The reactivities of 2-butyne, cycloheptyne, cyclooctyne, and cyclononyne in the 1,3-dipolar cycloadd...
Heteroaromatic azadienes, especially 1,2,4,5-tetrazines, are extremely reactive partners with alkene...
The interactions (including weak interactions) between dienophiles and dienes play an important role...
The Diels–Alder reactivities of a series of cycloalkenes, from the highly strained cyclopropene to t...
The Diels-Alder reactions of the cycloalkenes, cyclohexene through cyclopropene, with a series of di...
The Diels–Alder reactions of the cycloalkenes, cyclohexene through cyclopropene, with a series of di...
Contains fulltext : 177932.pdf (publisher's version ) (Closed access
The factors controlling the reactivity of the strained-alkyne embedded cycloparaphenylenes have been...
The Diels–Alder reactions of seven 1,2,4,5-tetrazines with unstrained and strained alkenes and alkyn...
Heteroaromatic azadienes, especially 1,2,4,5-tetrazines, are extremely reactive partners with alkene...
Quantum chemical calculations are used to investigate the experimentally measured reactivities of cy...
In this Focus Review, we present the application of the so-called Activation Strain Model of chemica...
In this Focus Review, we present the application of the so-called Activation Strain Model of chemica...
Quantum chemical calculations were used to investigate the Diels-Alder reactivities for a series of ...
The reactivities of 2-butyne, cycloheptyne, cyclooctyne, and cyclononyne in the 1,3-dipolar cycloadd...
The reactivities of 2-butyne, cycloheptyne, cyclooctyne, and cyclononyne in the 1,3-dipolar cycloadd...
Heteroaromatic azadienes, especially 1,2,4,5-tetrazines, are extremely reactive partners with alkene...
The interactions (including weak interactions) between dienophiles and dienes play an important role...