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HS Code |
329400 |
| Productname | 3-Amino-6-Chloro-2-Picoline |
| Casnumber | 63581-67-7 |
| Molecularformula | C6H7ClN2 |
| Molecularweight | 142.59 g/mol |
| Synonyms | 6-Chloro-2-methyl-3-pyridinamine |
| Appearance | Off-white to light brown solid |
| Meltingpoint | 65-70°C |
| Solubility | Slightly soluble in water; soluble in organic solvents |
| Purity | Typically ≥98% |
| Storageconditions | Store in a cool, dry, and well-ventilated place |
| Smiles | Cc1nc(N)ccc1Cl |
As an accredited 3-Amino-6-Chloro-2-Picoline factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The chemical, 3-Amino-6-Chloro-2-Picoline, is packaged in a 100g amber glass bottle with a secure, tamper-evident cap. |
| Shipping | 3-Amino-6-Chloro-2-Picoline is shipped in tightly sealed containers, compliant with chemical safety regulations. It should be kept in a cool, dry place, away from incompatible substances. All packages must be clearly labeled, and handled with gloves and eye protection to ensure safety during transport. Shipping follows applicable hazardous materials guidelines. |
| Storage | 3-Amino-6-Chloro-2-Picoline should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as strong oxidizing agents. Keep the container tightly closed when not in use. Protect from light and moisture. Store at room temperature and ensure proper labeling to avoid accidental misuse or exposure. |
Applications of 3-Amino-6-Chloro-2-Picoline in Industrial ManufacturingAs a direct manufacturer, we support global production by supplying high-purity 3-Amino-6-Chloro-2-Picoline for critical use in chemical synthesis. Our expertise covers its integration into multiple downstream processes where consistency, compliance, and application know-how are essential. Below, we outline its established industrial roles using scenario-specific detail for technical teams and procurement. 1. Pharmaceutical Intermediate for Imidazo[1,2-a]pyridine SynthesisPharmaceutical manufacturers rely on 3-Amino-6-Chloro-2-Picoline as a key building block in multi-step routes to imidazo[1,2-a]pyridines, used for the synthesis of CNS-active molecules. Our material is introduced post-nitration as a nucleophilic amination reagent, delivering closely controlled impurity profiles and complying with route-specific required purities. Its controlled use at this stage determines the final heterocycle’s yield and regulatory readiness. Industry compliance standards
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2. Agrochemical Intermediate for Pyridine-based HerbicidesMajor crop protection companies incorporate our material as a precursor during scalable synthesis of pyridine ring herbicides, especially for selective weed control in cereal and corn production. The compound serves as a chloro-methylated aromatic amine feedstock, entering the pathway for functionalized herbicidal actives sensitive to input purity and process moisture. Controlled handling restricts byproduct formation critical under industrial batch synthesis conditions. Industry compliance standards
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3. Fine Chemical Synthesis for Specialty PigmentsSpecialty pigment manufacturers leverage 3-Amino-6-Chloro-2-Picoline as an aromatic amine donor during ring modification for high-performance pigment molecules. The compound offers highly consistent chromophore-functionalizing properties necessary for color tuning and stability in demanding coatings applications, requiring precise batch-to-batch quality documentation and transparency. Industry compliance standards
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4. Electronic Chemical Synthesis for OLED MaterialsProducers of advanced OLED materials draw on 3-Amino-6-Chloro-2-Picoline’s electron-donating functional group during the creation of conjugated heterocyclic ligands. Batch-controlled addition impacts device layer purity and function, specifically regarding charge transport layer construction for active-matrix displays. Raw material compliance and traceability are traceable from our manufacturing batch records. Industry compliance standards
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5. Veterinary Drug Intermediate in Antiparasitic FormulationsVeterinary pharmaceutical producers employ 3-Amino-6-Chloro-2-Picoline for the synthesis of active intermediates in endoparasiticide and ectoparasiticide agents for livestock. Its reactivity in heterocyclic transformations enables control over residue limits and batch traceability standards needed in regulated veterinary supply chains, supporting consistent veterinary formulation performance. Industry compliance standards
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Competitive 3-Amino-6-Chloro-2-Picoline prices that fit your budget—flexible terms and customized quotes for every order.
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Producing specialty chemicals like 3-Amino-6-Chloro-2-Picoline (commonly known as 6-Chloro-3-aminopicoline) has taught us that the value of a chemical comes from more than purity percentages and analytical graphs. For us, this compound stands as a key intermediate for many downstream applications. In our facility, we control the entire journey: from precursor selection, through precision chlorination and amination, all the way to the last filtration step. This honest, hands-on approach gives us deep insight into what matters for users in pharmaceuticals, agrochemicals, and dyestuff synthesis.
Every experienced hand in a process lab recognizes that a methyl group and a chlorine atom at the right positions on a pyridine ring make a world of difference in reactivity. 3-Amino-6-Chloro-2-Picoline offers exactly that: a fine balance of activation and selectivity. Its amine at the 3-position and chlorine at 6 open a rare doorway to substitutions, couplings, and cyclizations without complex protective strategies or repeated isolations. Pharmaceutical synthesis benefits from this kind of efficiency. In our work with development teams, we’ve seen this molecule significantly increase yield on target APIs, especially heterocyclic frameworks where regioselectivity matters. Agrochemical partners count on it to build new actives with better profiles.
We manufacture 3-Amino-6-Chloro-2-Picoline to specifications that reflect actual process requirements, not generic numbers from reference literature. Chemists often ask for colorless or off-white crystalline material, with purity no lower than 98%. We regularly analyze for 6-Chloro-2-Picoline, 2-Picolinic acid, and other typical side products that can creep in during batchwork. Moisture by Karl Fisher, melting point, and GC-MS profiles receive direct attention, batch by batch. For scale-up lots, stability in drums becomes a practical concern, as does the particle size for automated feeders. We invest in fine-tuning these aspects, not because a data sheet demands it but because we know someone downstream will have to resolve a stuck transfer line or troubleshoot a color impurity in a final active.
Over years of production, we’ve learned that sourcing high-purity 2-picoline, controlling reaction temperatures, maintaining nitrogen blanketing, and working with precise stoichiometry set the stage for consistent yields. We never downplay the trouble that even a small increase in residual 6-chloropicoline content can cause in the next reaction step. Even vacuum drying time and the solvent wash at the final stage shape the final product’s quality and handling characteristics. These realities shape our current operating standards.
Packaging for shipment addresses both chemical and practical concerns: using sealed, lined HDPE drums prevents moisture pickup and off-odors. We monitor drum weights and sample from every lot rather than relying on statistical QC fixes. It’s a discipline that does take time, but it means customers receive what was promised and rarely call back with issues. We’ve learned that transparent communication around these operational realities creates more trust than a perfect table in a brochure.
Buyers often ask us how our 3-Amino-6-Chloro-2-Picoline differs from what appears in listings or aggregated catalogues. A chemical formula by itself rarely tells the full story. In practice, lab-made samples often show decent purity on first inspection, but on larger batches, color bodies, residual solvents, and stuck isomer peaks begin to show up. We address these by using high-quality brominating and chlorinating agents, rather than recycled or semi-purified reagents. We typically rely on in-line analytics to clear up persistent trace impurities—a step many small-scale or trader-procured batches leave for the end user to solve.
One difference our team makes is in repeatability: receiving the same product week after week, with only minor batch-to-batch variations. Our technical support sees many requests from customers who tried lower-priced materials, only to encounter inconsistent crystallinity or shifting chromatograms. Those issues disrupt multi-kilo processes, halt API filings, and create unnecessary cost. Our perspective is that consistency delivers more value than flashy, unpublished specifications.
Global demand for 3-Amino-6-Chloro-2-Picoline is fueled by new pharmaceutical candidates and a growing crop protection market. More regulatory scrutiny now targets not only the final application, but also intermediate materials for their impurity profiles and trace contaminants. We stay in step with these changes through regular method validation, documenting analytical test results and process changes so end users have full traceability for audits and quality filings. This approach doesn’t just satisfy paperwork; it reduces problems when authorities review documentation, sparing both parties from costly delays.
For customers outside our region, we take the extra step of supporting regulatory/technical queries directly—from stability data to impurity clearance. Pharmacopeial compliance and certificate of analysis formats reflect evolving global expectations. By engaging with regulatory teams early, rather than treating these requests as afterthoughts, we help customers make smoother project progress.
The main use case for our 3-Amino-6-Chloro-2-Picoline remains as a building block for pharmaceutical intermediates. This compound’s structure encourages targeted derivatization steps, such as nucleophilic aromatic substitution at the ring’s activated positions. Many experienced process chemists recognize its value in facilitating heterocyclic closure steps—critical paths in blockbuster drugs and novel agricultural actives alike.
We’ve witnessed an uptick in dye chemistry users shifting from less selective aminopicoline analogues to our product, citing a marked drop in off-target color throws and byproduct formation. Process improvements based directly on replacing generic aminopicoline variants with high-purity, lot-consistent material translate into lower rework rates and improved batch reproducibility.
Farm teams involved in research on new insecticidal and fungicidal actives often turn to us to address off-odor issues or chromatogram “ghost peaks” that slow down registration efforts. Unlike simple off-the-shelf grades, our intermediate brings proven value in both purity and analytical transparency.
Operating a specialty chemical plant in today’s world means balancing safety, environmental care, and tight controls on waste streams. We operate with closed-loop systems and invest in solvent recycling and emission reduction at each synthesis step. While many intermediates create headaches for compliance, we’ve developed handling guidelines and hazard communication based on decades of practical plant experience. No one on our floor asks for a bureaucratic “checklist” safety culture; instead, they live it by tracking pump leaks, maintaining good workflow zoning, and investigating anomalies with a trained eye.
Choice of raw materials and in-plant waste management not only protect team health, but help downstream users avoid unnecessary regulatory surprises. We encourage clients to ask questions about our practices—openness on these topics matches the realities of the modern chemical supply chain.
We do not chase buzzwords around green chemistry trends, but our teams are always looking for practical improvements—reducing solvent use, optimizing reaction pathways, or adopting safer intermediates when cross-validated by our labs. We developed our current 3-Amino-6-Chloro-2-Picoline process through dialogue with users who pointed out batch bottlenecks and unreasonable CCP tolerances found in older protocols. Instead of layering on complex process steps, we worked stepwise through organometallic work-ups, improved reactor cleaning procedures, and fine-tuned our temperature ramping techniques. These aren’t stories for a glossy presentation—they’re lessons learned through repeated pilot campaigns and open discussion with those who depend on our chemicals for critical syntheses.
Years ago, a customer looking to simplify a pyridine-based active ingredient faced scale-up losses traced to inconsistent aminopicoline batches. Working together, we revised the purification protocol and shaped the campaign timeline to ensure stable supply. Not only did this yield a higher-quality product, but it opened the door to further improvements in their overall process. This type of cooperative problem-solving underscores why we remain focused on direct, transparent relations with our end users rather than outsourcing production or relying on brokers.
With the pharmaceutical and agrochemical sectors investing in high-value, low-volume actives, the demand for specialty intermediates like 3-Amino-6-Chloro-2-Picoline keeps rising. Rather than broad-strokes marketing, we prioritize close, technical engagement with research teams. From small pilot lots to multi-ton annual contracts, our production adapts to project stage, never losing sight of quality and on-time shipment. For each shipment, we provide full batch traceability and open access to analytical data—chromatograms, impurity profiles, and observed stability—instead of keeping customers in the dark behind a generic certificate.
It’s become clear to us that the days of “good enough” intermediates are over. The complexity of route scouting, the cost of multi-step reactions, and the mounting regulatory compliance load mean a stable, reliable supply partner makes a measurable difference. If a customer encounters an unreported chromatographic impurity or a variable melting point, we know that the downstream impact multiplies, potentially affecting regulatory filings or production runs worth millions. Our role, as we see it, centers on taking ownership of those details before the product ever leaves our gates.
Customers often share with us their frustration around unpredictable lead times or unresponsive support. Since we control our own production, we provide firm lead times, schedule transparency, and honest updates throughout the campaign. Supply constraints, if they arise, prompt immediate proactive outreach; we don’t hide behind vague notices or blame third parties. We regard every ton of 3-Amino-6-Chloro-2-Picoline we ship as an extension of our reputation, not just an entry on a dispatch log.
Shipment comes, not only with documents and material, but with a commitment: follow-up sales and technical teams intervene in case of concerns about handling, color, or downstream use. We frequently support clients directly with guidance on storage, repacking, or in-process analytics. With experience producing and handling thousands of kilograms through summer humidity and winter cold alike, we understand challenges grow with scale. Our plant teams prepare for those realities before barrels leave the gate.
We see market trends shifting toward more demanding product profiles: higher purities, lower acceptable impurity thresholds, and greater regulatory scrutiny at every stage. Users expect supply partners to respond directly and transparently to these realities. To us, 3-Amino-6-Chloro-2-Picoline is not just another code in a chemicals index; it serves as a test case for our ability to adapt quickly and provide unwavering support for process development, regulatory needs, and on-time delivery.
Innovations in synthetic chemistry will open new opportunities for functional aminopicoline derivatives. Reliable supply of core intermediates underpins that success. Our commitment is to continue supporting customers—not just by shipping a product, but by sharing our practical expertise, production experience, and honest feedback. Working together, we find better ways forward, one batch at a time.