All Halogen Derivatives

Info!

Please note that to download files from our site, you must be signed in to your account. Kindly Log In or Register to access the file download feature.

Group Items
All Halogen Derivatives 166719
— Aromatic Halogen Derivatives 150953
— Aliphatic Halogen Derivatives 22297
— Not Fluorine Halogen Derivatives 130517
— Aliphatic Not Fluorine Halogen Derivatives 17045
— Aromatic Not Fluorine Halogen Derivatives 116247
— Bromine Halogen Derivatives 57049
— Aliphatic Bromine Halogen Derivatives 6690
— Aromatic Bromine Halogen Derivatives 50971
‹ Back To List

Halogen derivatives are compounds that contain one or more halogen atoms (fluorine, chlorine, bromine or iodine) attached to a carbon skeleton. They are widely used as reagents for chemical synthesis because they can introduce halogens or other functional groups into organic molecules through various reactions. Some of the common reactions involving halogen derivatives are electrophilic halogenation, nucleophilic substitution, elimination and addition.

Electrophilic halogenation is a reaction where a halogen atom replaces a hydrogen atom on an aromatic ring or an alkene. The halogen acts as an electrophile and attacks the electron-rich pi bond of the unsaturated system. The reactivity of different halogens depends on their electronegativity and oxidation state. Fluorine and chlorine are more electrophilic and aggressive than bromine and iodine. Electrophilic halogenation can be used to synthesize various halogenated aromatic compounds, such as chlorobenzene, bromobenzene and iodobenzene.

Nucleophilic substitution is a reaction where a nucleophile replaces a leaving group (usually a halogen) on an alkyl or aryl halide. The nucleophile can be an ion, such as hydroxide or cyanide, or a neutral molecule, such as water or ammonia. The mechanism of nucleophilic substitution can be either SN1 (unimolecular) or SN2 (bimolecular), depending on the structure of the substrate and the nature of the nucleophile. Nucleophilic substitution can be used to synthesize various functionalized organic compounds, such as alcohols, ethers, nitriles and amines.

Elimination is a reaction where a small molecule (usually water or hydrogen halide) is removed from an alkyl or aryl halide, resulting in the formation of an alkene or alkyne. The mechanism of elimination can be either E1 (unimolecular) or E2 (bimolecular), depending on the structure of the substrate and the nature of the base. Elimination can be used to synthesize various unsaturated organic compounds with different degrees of substitution and stereochemistry.

Addition is a reaction where two molecules combine to form one larger molecule with no loss of atoms. Halogens can undergo addition reactions with alkenes and alkynes to form vicinal dihalides (two adjacent halogens on the same carbon chain). The mechanism of addition can be either electrophilic (halogens act as electrophiles) or radical (halogens act as radicals). Addition can be used to synthesize various saturated organic compounds with different regioselectivity and stereoselectivity.

Halogen derivatives are versatile reagents for chemical synthesis because they offer many possibilities for introducing different functional groups into organic molecules through various reactions. They also have important applications in pharmaceuticals, agrochemicals, polymers and materials science.

In stock
Molport-051-719-467

Molport-051-719-467

Buy Now
In stock
Molport-051-719-470

Molport-051-719-470

Buy Now
In stock
Molport-051-719-474

Molport-051-719-474

Buy Now
In stock
Molport-051-719-476

Molport-051-719-476

Buy Now
In stock
Molport-051-719-477

Molport-051-719-477

Buy Now
In stock
Molport-051-719-481

Molport-051-719-481

Buy Now
In stock
Molport-051-719-482

Molport-051-719-482

Buy Now
In stock
Molport-051-719-485

Molport-051-719-485

Buy Now
In stock
Molport-051-719-486

Molport-051-719-486

Buy Now
In stock
Molport-051-719-491

Molport-051-719-491

Buy Now
In stock
Molport-051-719-492

Molport-051-719-492

Buy Now
In stock
Molport-051-719-493

Molport-051-719-493

Buy Now
In stock
Molport-051-719-500

Molport-051-719-500

Buy Now
In stock
Molport-051-719-505

Molport-051-719-505

Buy Now
In stock
Molport-051-719-506

Molport-051-719-506

Buy Now
In stock
Molport-051-719-508

Molport-051-719-508

Buy Now
In stock
Molport-051-719-519

Molport-051-719-519

Buy Now
In stock
Molport-051-719-520

Molport-051-719-520

Buy Now
In stock
Molport-051-719-522

Molport-051-719-522

Buy Now
In stock
Molport-051-719-525

Molport-051-719-525

Buy Now
In stock
Molport-051-719-527

Molport-051-719-527

Buy Now
In stock
Molport-051-719-529

Molport-051-719-529

Buy Now
In stock
Molport-051-719-536

Molport-051-719-536

Buy Now
In stock
Molport-051-719-537

Molport-051-719-537

Buy Now
In stock
Molport-051-719-539

Molport-051-719-539

Buy Now
In stock
Molport-051-719-540

Molport-051-719-540

Buy Now
In stock
Molport-051-719-541

Molport-051-719-541

Buy Now
In stock
Molport-051-719-556

Molport-051-719-556

Buy Now
In stock
Molport-051-719-567

Molport-051-719-567

Buy Now
In stock
Molport-051-719-569

Molport-051-719-569

Buy Now
In stock
Molport-051-719-571

Molport-051-719-571

Buy Now
In stock
Molport-051-719-574

Molport-051-719-574

Buy Now
In stock
Molport-051-719-579

Molport-051-719-579

Buy Now
In stock
Molport-051-719-580

Molport-051-719-580

Buy Now
In stock
Molport-051-719-581

Molport-051-719-581

Buy Now
In stock
Molport-051-719-582

Molport-051-719-582

Buy Now
In stock
Molport-051-719-586

Molport-051-719-586

Buy Now
In stock
Molport-051-719-591

Molport-051-719-591

Buy Now
In stock
Molport-051-719-592

Molport-051-719-592

Buy Now

We use cookies to improve your experience on our websites and for advertising. By clicking "Accept All", you consent to our use of cookies.