JoVE Logo

Zaloguj się

16.19 : Diels–Alder vs Retro-Diels–Alder Reaction: Thermodynamic Factors

The Diels–Alder reaction is thermally reversible, meaning that the reaction reverts to the starting diene and dienophile under suitable temperatures. The forward reaction gives a cyclohexene derivative and is favored at low to medium temperatures. The reverse process, also called retro-Diels–Alder reaction, is a ring-opening process favored at high temperatures.

Figure1

Thermodynamic factors

The influence of temperature on the spontaneity of a particular reaction can be assessed based on the change in the Gibbs free energy, ΔG. If ΔG is negative, the reaction occurs spontaneously. However, if ΔG is positive, the reaction occurs spontaneously in the opposite direction.

Figure2

ΔG is a composite of two terms, ΔH and −TΔS. In a Diels–Alder reaction, two stronger σ bonds are formed at the expense of two weaker π bonds, resulting in a negative ΔH. Cycloaddition reactions proceed with a decrease in entropy. Consequently, ΔS is negative, and the term −TΔS is positive. At low temperatures, the sum of the two terms is negative, implying that the forward reaction is spontaneous. In contrast, the sum is positive at high temperatures, indicating that the reverse reaction is spontaneous.

Tagi

Diels Alder ReactionRetro Diels Alder ReactionThermodynamicsGibbs Free EnergyEnthalpy ChangeEntropy ChangeTemperature DependenceCycloadditionCyclohexeneForward ReactionReverse Reaction

Z rozdziału 16:

article

Now Playing

16.19 : Diels–Alder vs Retro-Diels–Alder Reaction: Thermodynamic Factors

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.8K Wyświetleń

article

16.1 : Struktura sprzężonych dienów

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.7K Wyświetleń

article

16.2 : Stabilność sprzężonych dienów

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.2K Wyświetleń

article

16.3 : π Orbitale molekularne 1,3-butadienu

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

8.5K Wyświetleń

article

16.4 : π Orbitale molekularne kationu i anionu allilu

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.0K Wyświetleń

article

16.5 : π Orbitale molekularne rodnika allilowego

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.3K Wyświetleń

article

16.6 : Elektrofilowa 1,2- i 1,4-addycja HX do 1,3-butadienu

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

5.2K Wyświetleń

article

16.7 : Elektrofilowa 1,2- i 1,4-addycja x2 do 1,3-butadienu

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.3K Wyświetleń

article

16.8 : Elektrofilowe dodawanie HX do 1,3-butadienu: kontrola termodynamiczna a kinetyczna

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.4K Wyświetleń

article

16.9 : Spektroskopia UV–VIS układów sprzężonych

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

6.8K Wyświetleń

article

16.10 : Spektroskopia UV-Vis: zasady Woodwarda-Fiesera

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

23.4K Wyświetleń

article

16.11 : Reakcje perycykliczne: wprowadzenie

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

8.2K Wyświetleń

article

16.12 : Termiczne i fotochemiczne reakcje elektrocykliczne: przegląd

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.3K Wyświetleń

article

16.13 : Termiczne reakcje elektrocykliczne: stereochemia

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.9K Wyświetleń

article

16.14 : Fotochemiczne reakcje elektrocykliczne: stereochemia

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.8K Wyświetleń

See More

JoVE Logo

Prywatność

Warunki Korzystania

Zasady

Badania

Edukacja

O JoVE

Copyright © 2025 MyJoVE Corporation. Wszelkie prawa zastrzeżone