JoVE Logo

Sign In

8.3 : Halogenation of Alkenes

Halogenation is the addition of chlorine or bromine across the double bond in an alkene to yield a vicinal dihalide. The reaction occurs in the presence of inert and non-nucleophilic solvents, such as methylene chloride, chloroform, or carbon tetrachloride.

Consider the bromination of cyclopentene. Molecular bromine is polarized in the proximity of the π electrons of cyclopentene. An electrophilic bromine atom adds across the double bond, forming a cyclic bromonium ion intermediate.

Cyclopentene to bromonium ion formation; chemical reaction diagram with Br2 intermediate.

A bromonium ion is more stable than the analogous carbocation, as it has more covalent bonds and all the atoms have filled octets.

Bromine stability comparison in organic molecules; diagram shows less stable vs more stable structures.

In the second step, the nucleophile, a bromide ion, attacks one of the carbon atoms in the bridged bromonium ion. Due to the non-availability of bonding orbitals and steric crowding, the nucleophile approaches the antibonding orbitals, pointing opposite to the carbon–bromine bond. This accounts for the anti addition.

Bromination reaction mechanism; cyclohexene diagram; electrophilic addition of bromine; organic chemistry.

Thus, the addition of two bromine atoms takes place from the opposite faces of the double bond in cyclopentene to yield trans-1,2-dibromocyclopentane.

The configuration of the starting alkene decides the stereochemical outcome for halogenation reactions. For example, the addition across cis-2-butene generates a pair of enantiomers, while addition across trans-2-butene produces a meso compound. Therefore, the halogenation of alkenes is a diastereospecific reaction.

Tags

HalogenationAlkenesChlorineBromineVicinal DihalideInert SolventsNon nucleophilic SolventsMethylene ChlorideChloroformCarbon TetrachlorideBromination Of CyclopentenePolarized BromineElectrophilic Bromine AtomCyclic Bromonium Ion IntermediateStability Of Bromonium IonCarbocationNucleophileBridged Bromonium IonAnti AdditionTrans 12 dibromocyclopentaneStereochemical OutcomeCis 2 buteneTrans 2 buteneEnantiomersMeso Compound

From Chapter 8:

article

Now Playing

8.3 : Halogenation of Alkenes

Reactions of Alkenes

15.2K Views

article

8.1 : الانتقائية للضافات المحبة للكهرباء - تأثير بيروكسيد

Reactions of Alkenes

8.3K Views

article

8.2 : التفاعل المتسلسل للجذور الحرة وبلمرة الألكينات

Reactions of Alkenes

7.7K Views

article

8.4 : تشكيل الهالوهيدرن من الألكينات

Reactions of Alkenes

12.7K Views

article

8.5 : ترطيب الألكينات المحفز بالحمض

Reactions of Alkenes

13.5K Views

article

8.6 : الانتقائية والكيمياء الفراغية للترطيب المحفز بالأحماض

Reactions of Alkenes

8.3K Views

article

8.7 : Oxymercuration-الحد من الألكينات

Reactions of Alkenes

7.4K Views

article

8.8 : الأكسدة المائية للألكينات

Reactions of Alkenes

7.7K Views

article

8.9 : الانتقائية والكيمياء الفراغية للثقب المائي

Reactions of Alkenes

8.0K Views

article

8.10 : أكسدة الألكينات: ثنائي هيدروكسيل المزامنة مع رابع أكسيد الأوزميوم

Reactions of Alkenes

9.7K Views

article

8.11 : أكسدة الألكينات: ثنائي هيدروكسيل متزامن مع برمنجنات البوتاسيوم

Reactions of Alkenes

10.7K Views

article

8.12 : أكسدة الألكينات: مضاد ثنائي هيدروكسيل مع أحماض البيروكسي

Reactions of Alkenes

5.5K Views

article

8.13 : الانقسام التأكسدي للألكينات: تحلل الأزونويل

Reactions of Alkenes

9.8K Views

article

8.14 : الحد من الألكينات: الهدرجة الحفازة

Reactions of Alkenes

11.8K Views

article

8.15 : تقليل الألكينات: الهدرجة الحفازة غير المتماثلة

Reactions of Alkenes

3.2K Views

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved