Triazine Ring CAS 290879 China Suppliers and Factory Manufacturer

Triazine Ring CAS 290879 China Suppliers and Factory Manufacturer


Leading China factory and suppliers of high-purity Triazine Ring CAS 290-87-9. A vital six-membered aromatic heterocyclic compound used in herbicides, resins, and pharmaceutical synthesis for global industrial applications.

The Triazine Ring (CAS No.: 290-87-9) serves as a high-performance, versatile molecular core essential for advanced chemical synthesis. Characterized by its aromaticity and electron-deficient scaffold, this heterocyclic structure provides an ideal platform for creating high-stability compounds across the agrochemical, polymer, and pharmaceutical industries.

Engineered for precision and reactivity, the triazine ring allows for extensive molecular modification and functionalization. Its unique ability to act as a ligand in metal-organic frameworks (MOFs) and its stability in harsh environments make it an indispensable building block for developing the next generation of specialty resins, antiviral agents, and energy-efficient electronic materials.

Detailed Parameters

Chemical NameTriazine Ring / Triazine DerivativesCAS Number290-87-9
Core StructureHeterocyclic Aromatic RingElectronic NatureElectron-Deficient Scaffold
Primary ReactivityNucleophilic SubstitutionChemical StabilityHigh Thermal & Environmental Stability
Main ApplicationsAgrochemicals, Pharmaceuticals, PolymersMaterial RoleCrosslinker / Ligand / Intermediate
Key DerivativesAtrazine, SimazineFunctional UseUV Stabilizers & Catalysts

Key Advantages

Exceptional Stability

Offers superior environmental stability and chemical resistance, ensuring long-term durability in specialty coatings and resins.

Synthetic Versatility

A flexible platform for functionalization via nucleophilic substitution, accelerating drug discovery and material design.

Biomedical Potency

Highly effective in creating antiviral, anticancer, and antimicrobial agents due to precise biological target interaction.

Electronic Tuning

Tunable electronic properties enable the development of advanced semiconductors and solar cell components.

Optical Optimization

Crucial for the synthesis of high-performance UV stabilizers and advanced dyes with precise light absorption.

Advanced Catalysis

Acts as an efficient ligand in MOFs, opening new frontiers in gas storage technologies and industrial catalysis.

Product Gallery

Management Platforms

API Quality Control

Strict adherence to pharmaceutical standards for all intermediate building blocks.

Polyurethane Optimization

Precision tuning for flexible and rigid foam catalysts using triazine structures.

Regulatory Compliance

Full documentation and safety data sheets for international chemical shipping.

R&D Innovation

Continuous development of novel triazine derivatives for material science.

Supply Chain Logistics

Optimized delivery systems for specialty chemical reagents and additives.

Custom Synthesis

Tailored molecular modification services to meet specific industrial requirements.

Investment Return Comparison

Performance MetricStandard CoreTriazine Ring Core
Chemical StabilityModerateExceptional
Synthetic FlexibilityLimitedHigh (Multifunctional)
Thermal ResistanceStandardSuperior
Biological ActivityGeneralHighly Selective
Development SpeedSlowRapid (Modular)

Frequently Asked Questions

Q: What are the primary industrial applications of Triazine Ring derivatives?

They are widely used as selective herbicides in agrochemicals, crosslinkers in polymer chemistry for resins/coatings, and active scaffolds in pharmaceutical antiviral and anticancer drugs.

Q: Why is the triazine ring preferred for material science applications?

Its electron-deficient nature and symmetric structure allow for precise tuning of conductivity, thermal resistance, and light absorption, making it ideal for semiconductors and solar cells.

Q: How does the triazine ring contribute to drug discovery?

The ring system provides high stability and synthetic accessibility, allowing researchers to easily modify the molecule to interact with various biological targets.

Q: Can Triazine Ring structures be used in catalysis?

Yes, they can serve as effective ligands in metal-organic frameworks (MOFs), which are used for advanced catalysis and high-efficiency gas storage technologies.

Q: What is the chemical reactivity profile of the triazine ring?

The triazine ring exhibits aromaticity and is highly susceptible to nucleophilic substitution reactions, providing a flexible platform for various functionalizations.

Q: Is the Triazine Ring stable for outdoor industrial coatings?

Absolutely. Due to its inherent stability and its use in developing UV stabilizers, triazine-based compounds significantly enhance the durability of outdoor resins and coatings.

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