Explore our top-tier catalog of triazine derivatives, organic acids, surfactants, and specialty cosmetic active raw materials direct from our Jinan manufacturing base.
S-Triazine (1,3,5-triazine) derivatives represent one of the most chemically versatile heterocycle core structures in modern industrial chemistry, driving innovations across metalworking fluids, UV filters, polymer crosslinking agents, and agricultural chemicals.
Symmetrical triazines, structurally recognized as 1,3,5-triazines, possess a planar six-membered aromatic ring containing three nitrogen atoms alternating with carbon atoms. The global chemical manufacturing landscape has experienced a pivotal structural shift over the past two decades, with China emerging as the premier manufacturing hub for high-purity S-triazine precursors and synthesized derivatives. This position is supported by robust upstream backward-integration into hydrogen cyanide, cyanogen chloride, and cyanuric chloride synthesis pathways.
As international regulatory frameworks enforce stringent environmental standards and demand zero-discharge operational metrics, Tier-1 Chinese suppliers such as JIMPOCHEM CO., LTD have pioneered advanced green catalytic synthesis routes. Utilizing modern continuous flow microreactors and digital process monitoring, Chinese manufacturing facilities consistently deliver high-yield s-triazine derivatives (such as 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine CAS 80584-91-4, known as TC-50) with purity metrics surpassing 99.0% by HPLC evaluation.
For procurement officers, chemical engineers, and industrial formulators searching for reliable China S-triazine suppliers and factories, identifying strategic manufacturing partners requires analyzing molecular precision, batch-to-batch analytical traceability, REACH compliance, and global logistical continuity.
Understanding the nucleophilic substitution kinetics of cyanuric chloride enables precision engineering of functionalized s-triazines for specialized industrial applications.
Cyanuric chloride (2,4,6-trichloro-1,3,5-triazine) serves as the core intermediate. Due to the electron-withdrawing nature of the triazine ring, the three chlorine atoms undergo sequential temperature-controlled nucleophilic aromatic substitutions at ~0°C, 30–50°C, and 80–100°C respectively, enabling asymmetric derivative functionalization.
Reaction of cyanuric chloride with three equivalents of 6-aminocaproic acid yields 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine (CAS 80584-91-4). This water-soluble carboxylic acid adduct acts as an ashless corrosion inhibitor, forming a microscopic hydrophobic protective film on ferrous metal surfaces.
Attaching resorcinol or phenolic chromophores to the s-triazine core produces high-extinction UV filters like Bemotrizinol (CAS 187393-00-6). The symmetrical ring provides exceptional photostability and excited-state intramolecular proton transfer (ESIPT) mechanisms to dissipate UV radiation rapidly into harmless thermal energy.
| Chemical Name / Derivative | CAS Registry No. | Assay / Purity | Primary Industrial Function | Solubility Profile |
|---|---|---|---|---|
| 2,4,6-Tri-(6-aminocaproic acid)-1,3,5-triazine (TC-50) | 80584-91-4 | ≥ 99.0% (HPLC) | Ferrous Metal Corrosion Inhibitor / Water Treatment | Water (Neutralized), Glycols, Alkanolamines |
| Bemotrizinol (Tinosorb S Grade) | 187393-00-6 | ≥ 98.5% (HPLC) | Broad-Spectrum UV-A & UV-B Filter for Cosmetics | Lipids, Cosmetic Oils, Organic Solvents |
| Hexahydro-1,3,5-tris(hydroxyethyl)-s-triazine | 4719-04-4 | 78.0%–80.0% Aqueous | Non-Formaldehyde Releasing Industrial Biocide | Miscible in Water & Polar Solvents |
| Melamine (2,4,6-Triamino-1,3,5-triazine) | 108-78-1 | ≥ 99.8% (GC) | Thermosetting Resins, Laminates, Flame Retardants | Slightly soluble in Water, Soluble in Glycol |
| 2,4-Dichloro-6-phenyl-1,3,5-triazine | 1700-02-3 | ≥ 98.0% (GC) | Pharmaceutical & Agrochemical Intermediate | Organic Solvents (Toluene, THF, DCM) |
How S-triazine chemistry powers modern industrial infrastructure, metalworking fluids, environmental protection, and cosmetic formulations across international markets.
In water-soluble semi-synthetic and fully synthetic metalworking fluids (MWFs), triazine carboxylic acids like CAS 80584-91-4 deliver exceptional ferrous corrosion protection without generating nitrosamines. They prevent cobalt leaching in carbide grinding and provide superior hard-water stability compared to traditional dicarboxylic acids.
Substituted s-triazines provide unmatched UV filter photostability. Chemical additives such as Bemotrizinol (CAS 187393-00-6) absorb both UV-A and UV-B spectra, stabilizing less durable filters like Avobenzone while fulfilling demanding water-resistant sun care criteria across European, Asian, and Latin American cosmetics markets.
Triazine-based liquid scavengers (e.g., Monoethanolamine-triazine) play a critical role in offshore crude oil processing and natural gas treatment plants. They selectively react with hydrogen sulfide (H2S) to form stable, non-corrosive dithiazine compounds, mitigating infrastructure corrosion and fulfilling environmental safety thresholds.
Melamine cyanurate and triazine-containing polyphosphonates serve as halogen-free flame retardants (HFFRs) for engineering plastics like Polyamides (PA6, PA66) and Epoxy resins. During thermal decomposition, the triazine ring releases inert nitrogen gas, creating an insulating char barrier that halts flame propagation.
Chlorinated and alkylamino-substituted triazines remain core building blocks for systemic selective herbicides. Advanced manufacturing pathways engineered in China optimize atom economy to produce high-purity triazine intermediates required for global agricultural formulations.
Triazine-functionalized polymers serve as chelating agents for heavy metal precipitation in industrial wastewater treatment. They isolate copper, nickel, and mercury ions from complexed electroplating rinse water, ensuring compliance with strict environmental discharge limits.
Established in 2010 in Jinan City, Shandong Province, JIMPOCHEM is a global chemical enterprise combining scientific R&D, automated synthesis, and supply chain control.
JIMPOCHEM CO., LTD operates out of the State-Level Chemical Industry Park in Jinan City, Shandong Province. Spanning over 500 acres, our digitalized synthesis facility is equipped with automated glass-lined reactors, continuous flow reaction units, and automated fractional distillation columns.
Our core engineering team comprises chemical PhDs and technical specialists with over 10 years of focused experience in heterocyclic synthesis. This expertise empowers us to deliver custom formulation optimization, supply chain resilience, and global technical service to more than 5,000 international business partners across 200+ countries.
Certifications & Quality Governance:
• ISO 9001:2015 Quality Management Systems
• ISO 14001:2015 Environmental Management Systems
• EU REACH Full Registration Compliance for Primary Export Products
• Authoritative Third-Party Testing (SGS, Intertek, TÜV SÜD)








We minimize international procurement risk through strict regulatory adherence, transparent lot-traceability, and optimized multimodal logistics solutions.
We provide fully compliant Safety Data Sheets (GHS SDS compliant in 12 languages), COA documentation per shipment, REACH registration compliance for Europe, TSCA inventory status for the USA, and K-REACH filings for South Korean buyers.
Flexible options catered to industrial handling needs: 25kg UN-approved fiber drums with double PE inner bags, 200L plastic drums, 1000L IBC totes, and dedicated ISO tanks for bulk liquid triazine derivatives.
Strategic proximity to Qingdao Port and Tianjin Port enables rapid ocean transit. We offer FOB, CIF, CFR, and DDP (Delivered Duty Paid) door-to-door delivery with real-time GPS tracking and customs clearance assistance.
As downstream industries transition toward carbon-neutral chemistry and bio-based inputs, JIMPOCHEM's R&D division is focusing on three key technology pillars:
Developing carboxylated and hydroxylated triazines that operate efficiently in VOC-restricted, water-based industrial coatings and metalworking fluids without VOC off-gassing.
Replacing traditional alkaline liquid bases with recyclable heterogeneous solid catalysts in substitution reactions to minimize wastewater salt load by up to 60%.
Engineering triazine-based acrylate oligomers with high refractive index (>1.65) and thermal resistance for micro-optical components and advanced semiconductor encapsulation.
Answers to common chemical engineering, formulation, and commercial questions regarding S-triazine products and factory capabilities.
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