JoVE Logo

Войдите в систему

8.12 : Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids

Diols are compounds with two hydroxyl groups. In addition to syn dihydroxylation, diols can also be synthesized through the process of anti dihydroxylation. The process involves treating an alkene with a peroxycarboxylic acid to form an epoxide. Epoxides are highly strained three-membered rings with oxygen and two carbons occupying the corners of an equilateral triangle. This step is followed by ring-opening of the epoxide in the presence of an aqueous acid to give a trans diol. Peroxycarboxylic acids are strong oxidizing agents and analogous to carboxylic acids. However, they have an extra oxygen atom between the carbonyl group and the hydrogen atom. Commonly used organic peracids include meta-chloroperoxybenzoic acid and peroxyacetic acid.

The mechanism begins with a concerted nucleophilic attack by the alkene π bond on the electrophilic oxygen of the peroxy acid, breaking the oxygen–oxygen bond and forming a new carbon–oxygen double bond, leading to a cyclic transition state.

Figure1

The second step of the reaction involves an acid-catalyzed ring-opening of the epoxide to finally form a trans diol.

Figure2

Overall, the regiochemistry of the reaction is governed by a combination of steric and electronic factors. In epoxides with a primary and secondary carbon, steric factors dominate, favoring an attack at the less substituted carbon. With a tertiary carbon, electronic effects dominate, favoring attack at the more substituted carbon.

Теги

OxidationAlkenesAnti DihydroxylationPeroxy AcidsDiolsEpoxideRing openingAqueous AcidPeroxycarboxylic AcidsOrganic PeracidsMeta chloroperoxybenzoic AcidPeroxyacetic AcidMechanismNucleophilic AttackElectrophilic OxygenCyclic Transition StateAcid catalyzed Ring openingTrans DiolRegiochemistrySteric FactorsElectronic Factors

Из главы 8:

article

Now Playing

8.12 : Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids

Reactions of Alkenes

5.5K Просмотры

article

8.1 : Региоселективность электрофильных добавок-пероксидный эффект

Reactions of Alkenes

8.3K Просмотры

article

8.2 : Свободнорадикальная цепная реакция и полимеризация алкенов

Reactions of Alkenes

7.6K Просмотры

article

8.3 : Галогенирование алкенов

Reactions of Alkenes

15.1K Просмотры

article

8.4 : Образование галогидрина из алкенов

Reactions of Alkenes

12.6K Просмотры

article

8.5 : Кислотно-катализируемая гидратация алкенов

Reactions of Alkenes

13.4K Просмотры

article

8.6 : Региоселективность и стереохимия кислотно-катализируемой гидратации

Reactions of Alkenes

8.3K Просмотры

article

8.7 : Оксимеркурация - восстановление алкенов

Reactions of Alkenes

7.4K Просмотры

article

8.8 : Гидроборация-окисление алкенов

Reactions of Alkenes

7.7K Просмотры

article

8.9 : Региоселективность и стереохимия гидроборации

Reactions of Alkenes

8.0K Просмотры

article

8.10 : Окисление алкенов: син-дигидроксилирование тетраоксидом осмия

Reactions of Alkenes

9.7K Просмотры

article

8.11 : Окисление алкенов: син-дигидроксилирование перманганатом калия

Reactions of Alkenes

10.5K Просмотры

article

8.13 : Окислительное расщепление алкенов: озонолиз

Reactions of Alkenes

9.8K Просмотры

article

8.14 : Восстановление алкенов: каталитическое гидрирование

Reactions of Alkenes

11.7K Просмотры

article

8.15 : Восстановление алкенов: асимметричное каталитическое гидрирование

Reactions of Alkenes

3.2K Просмотры

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены