JoVE Logo

Войдите в систему

15.31 : α-Alkylation of Ketones via Enolate Ions

Ketones with α protons are deprotonated by strong bases like lithium diisopropylamide (LDA) to form enolate ions. The anion is stabilized by resonance, and its hybrid structure exhibits negative charges on the carbonyl oxygen and the α carbon. This ambident nucleophile can attack an electrophile via two possible sites: the carbonyl oxygen, known as O-attack, or the α carbon, known as C-attack. The nucleophilic attack via the carbanionic site is preferred. This is due to the strong interaction of the positive counterpart of the base with the anionic oxygen, which restricts the approaching electrophile, making the reaction less favorable. Also, the product obtained through C-attack is more stable than that obtained through O-attack, as the stronger C=O π bond is retained in the former, whereas a weaker C=C π bond is preserved in the latter.

A subsequent reaction of the enolate with electrophiles such as alkyl halides produces an α-alkylated ketone via the SN2 pathway. The α-alkylation of ketones is achieved with the halides of primary alkyl, benzyl, and allylic groups. With secondary and tertiary alkyl halides, elimination predominates over substitution.

Теги

alkylationKetonesEnolate IonsLDANucleophilic AttackC attackO attackSN2Primary Alkyl HalidesBenzyl HalidesAllylic HalidesSecondary Alkyl HalidesTertiary Alkyl HalidesElimination

Из главы 15:

article

Now Playing

15.31 : α-Alkylation of Ketones via Enolate Ions

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.0K Просмотры

article

15.1 : Реакционная способность энолов

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.9K Просмотры

article

15.2 : Реакционная способность ионов енолирования

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.4K Просмотры

article

15.3 : Виды энолов и энолатов

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Просмотры

article

15.4 : Конвенции механизма Enolate

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.1K Просмотры

article

15.5 : Региоселективное образование энолатов

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Просмотры

article

15.6 : Стереохимические эффекты энолизации

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.0K Просмотры

article

15.7 : Катализируемое кислотой α-галогенирование альдегидов и кетонов

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.6K Просмотры

article

15.8 : Стимулируемое основаниями α-галогенирование альдегидов и кетонов

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.4K Просмотры

article

15.9 : Многократное галогенирование метилкетонов: галоформная реакция

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.0K Просмотры

article

15.10 : α-Галогенирование производных карбоновой кислоты: обзор

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.3K Просмотры

article

15.11 : α-Бромирование карбоновых кислот: реакция Хелла–Фольхарда–Зелинского

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.9K Просмотры

article

15.12 : Реакции α-галокарбонильных соединений: нуклеофильное замещение

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.2K Просмотры

article

15.13 : Нитрозирование энолов

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Просмотры

article

15.14 : Образование C–C связей: обзор конденсации альдола

α-Carbon Chemistry: Enols, Enolates, and Enamines

13.5K Просмотры

See More

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены