Home Chemistry Heterocyclic Building Blocks Triazines N2,N4,N6-Triphenyl-1,3,5-Triazine-2,4,6-Triamine
Condensation Polymerization: Melamine can undergo condensation polymerization reactions with formaldehyde to produce melamine-formaldehyde resins, which are widely used in the production of laminates, adhesives, coatings, and flame-resistant materials.
Alkylation: Melamine can be alkylated using alkyl halides to introduce alkyl groups. This reaction can produce derivatives of melamine with different properties and solubilities.
Acylation: Melamine can be acylated using acyl halides or anhydrides to introduce acyl groups. This reaction can also lead to derivatives with altered properties.
Oxidation: Melamine can be oxidized under certain conditions to produce different compounds. For example, it can be oxidized to cyanuric acid, which is a common byproduct in the production of melamine.
Nitration: Melamine can undergo nitration reactions with nitric acid to introduce nitro groups. This can lead to the formation of 2,4,6-triamino-1,3,5-trinitrobenzene, commonly known as TATB, which is an explosive compound.
Halogenation: Melamine can be halogenated with halogenating agents such as chlorine or bromine, resulting in the introduction of halogen atoms into the molecule.
Complex Formation: Melamine can form complexes with various metal ions, which can have applications in analytical chemistry and as catalysts.
Hydrolysis: Melamine can undergo hydrolysis reactions under acidic or alkaline conditions, leading to the cleavage of its amine groups and the formation of different products.
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N2,N4,N6-tri-m-tolyl-1,3,5-Triazine-2,4,6-triamine
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3,3',3''-((1,3,5-Triazine-2,4,6-triyl)tris(azanediyl))tribenzoic acid
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4,4',4''-((1,3,5-Triazine-2,4,6-triyl)tris(azanediyl))tribenzoic acid
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