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Product Line: Pharmaceutical Chemicals

2,4-Diamino-6-nonyl-1,3,5-triazine

CAS 5921-65-3

Molecular structure of 2,4-Diamino-6-nonyl-1,3,5-triazine

CAS · 5921-65-3

01

Product Overview

2,4-Diamino-6-nonyl-1,3,5-triazine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance: White to off-white powder
Purity (NMR): 96% min
Nitrogen: 27.2% - 31.9%
Loss on drying: 1.0% max
03

Applications

This alkyl‑substituted 1,3,5‑triazine is principally used as a synthetic intermediate and functional additive in specialty chemical, materials and agrochemical sectors. Typical applications include conversion to cationic surfactants and fabric‑conditioning agents (the long nonyl chain gives surfactant/adsorption character), incorporation into corrosion‑inhibiting and biocidal formulations, and use as a building block for triazine‑based crosslinkers and resins. In agrochemical research the triazine core is a common scaffold for designing herbicidal and fungicidal candidates, and alkyl‑substituted derivatives are useful for tuning lipophilicity and soil/bioavailability. It is also employed in polymer and coatings chemistry as a hydrophobic modifier or compatibilizer, and in ligand/chelating‑agent design where the triazine ring coordinates or anchors functional groups for downstream transformations.

04

Benefits

The molecule combines the chemical robustness of the triazine ring with a hydrophobic nonyl tail, giving useful performance advantages. The triazine nucleus is thermally and chemically stable and tolerates many functional‑group transformations, so it can be elaborated into varied derivatives with predictable reactivity. The long alkyl chain imparts surface activity, improved substrate adsorption, and enhanced incorporation into polymer matrices or coatings; this improves durability, water‑resistance and interaction with organic phases. When converted into cationic or functionalized derivatives it can deliver antimicrobial or corrosion‑inhibiting properties and better partitioning into hydrophobic target environments. From a process perspective, the compound is relatively straightforward to derivatize, enabling tunable solubility and physical properties to match formulation needs.

05

Conclusion

2,4‑Diamino‑6‑nonyl‑1,3,5‑triazine is a versatile, value‑adding intermediate for formulators and synthetic chemists who need a stable triazine core with an appended hydrophobic handle. Its balance of synthetic flexibility, thermal/chemical stability and surface‑active character makes it useful across surfactants, coatings, polymer additives, and agrochemical development. When selecting or designing products that use this scaffold, attention to regulatory and environmental profiles of alkyl‑triazine derivatives is important; appropriate safety, biodegradability and application testing will ensure performance while meeting compliance and sustainability goals.

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