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HS Code |
397666 |
| Chemical Name | 2-Amino-6-Bromopyridine |
| Cas Number | 19798-80-0 |
| Molecular Formula | C5H5BrN2 |
| Molecular Weight | 173.01 g/mol |
| Appearance | White to off-white solid |
| Melting Point | 117-121°C |
| Boiling Point | N/A (decomposes) |
| Solubility In Water | Slightly soluble |
| Purity | Typically ≥98% |
| Synonyms | 6-Bromo-2-aminopyridine |
| Density | 1.77 g/cm³ (estimated) |
| Storage Conditions | Store at room temperature, tightly sealed |
| Smiles | C1=CC(=NC(=C1)Br)N |
| Inchi | InChI=1S/C5H5BrN2/c6-4-2-1-3-8-5(4)7/h1-3H,(H2,7,8) |
| Ec Number | 243-415-9 |
As an accredited 2-Amino-6-Bromopyridine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 100g of 2-Amino-6-Bromopyridine is packaged in a sealed amber glass bottle with a printed safety label and hazard markings. |
| Shipping | 2-Amino-6-Bromopyridine is shipped in tightly sealed containers, compliant with chemical safety regulations. The package is labeled with hazard information and handled as a potentially harmful substance. It is stored and transported under cool, dry conditions to prevent degradation, following all applicable local and international shipping guidelines for hazardous chemicals. |
| Storage | 2-Amino-6-bromopyridine should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from sources of ignition. Protect from light, moisture, and incompatible substances such as strong oxidizing agents. Label the container clearly and keep it in a designated chemical storage cabinet. Always follow appropriate safety and handling guidelines. |
Applications of 2-Amino-6-Bromopyridine in Industrial ManufacturingOur production of 2-Amino-6-Bromopyridine supports a well-defined set of downstream sectors that demand high chemical selectivity and quality consistency. Below are core industrial application areas, based on established usage in chemical, pharmaceutical, and agrochemical synthesis, with detailed technical specifics regarding standards, formulation usage, process stages, and finished product categories. 1. Pharmaceutical Intermediate for Antiviral API SynthesisMajor pharmaceutical manufacturers employ 2-Amino-6-Bromopyridine as a critical building block in the synthesis of antiviral active pharmaceutical ingredients, where its brominated pyridine framework supports efficient construction of heterocyclic moieties. Its inclusion typically facilitates N-arylation or condensation reactions, forming key intermediates under controlled conditions. Integrating this compound addresses strict requirements for impurity control, traceability, and compliance with regulated drug development protocols. Industry compliance standards
Typical usage ratio
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2. Agrochemical Synthesis – Herbicide and Fungicide Active Ingredients2-Amino-6-Bromopyridine serves as a specialized intermediate in the production of crop protection agents, predominantly targeting synthesis of heterocyclic herbicide and fungicide actives. Its chemical structure enables selective modifications supportive of high-performance pyridine-based agrochemicals. Formulators value its reactivity in pathways such as Suzuki-Miyaura coupling and in amination sequences, supporting stringent controls required for field application substances. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Synthesis of Specialty Dyes and Electronic MaterialsR&D and industrial producers incorporate 2-Amino-6-Bromopyridine in the curated synthesis of select dyes and functional materials for electronic and photonic applications, leveraging its high functional handle for directed coupling reactions in dye precursors and hole-transport layer components. Its precise reactivity profile benefits production of materials requiring exact molecular orientation and purity, particularly for organic semiconductors and photovoltaic cell components. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Fine Chemicals – Synthesis of Research and Diagnostic Reagents2-Amino-6-Bromopyridine underpins the development of custom pyridine-based ligands and small-molecule probes, essential for research laboratories and in vitro diagnostic kit manufacturers. Its selective reactivity and halogen content promote step-efficient synthesis routes where controlled ring substitution or cross-coupling is needed. QC teams value its defined impurity profile and robust traceability data for applications requiring stringent batch documentation. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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Walking into any production hall, you notice the importance of strict parameters. Consistency matters most with intermediates, and through years of hands-on synthesis, 2-Amino-6-Bromopyridine commands respect among our team. Our familiarity comes from long runs, not just from theoretical knowledge. On the production line we’ve fine-tuned synthesis for high purity and repeatability. The white to pale beige crystalline powder produced in our reactors always meets strict standards, something you appreciate fully once you have tested every batch year after year.
This exact compound, bearing the chemical formula C5H5BrN2, bridges two critical functionalities. The bromo- and amino- groups donate versatility—allowing this molecule to serve as a pivotal building block for pharmaceuticals, agrochemicals, and advanced materials. The molecular weight comes in at 173.01 g/mol, with a melting point that reliably sits near 146–149°C across different lots, which stands out as a marker of both purity and process stability.
Over time, we have learned that minor variances in input reactants or subtle differences in temperature ramps during synthesis can influence crystal size and, by extension, flow behavior during formulation. Bringing the right lot-to-lot consistency takes hands-on adjustments, close monitoring, and a willingness to rethink even mature protocols as new process technology emerges.
Out in the market, the focus on 2-Amino-6-Bromopyridine falls on its unique position as a multifunctional intermediate. Several large-scale pharmaceutical syntheses rely on this backbone, and we have seen its value first-hand when our partners’ R&D teams discuss route optimization challenges. The amino group at the 2-position opens it up for pairing with multiple coupling agents. Seasonal demand trends reflect its broad application: for example, we regularly receive upticks in inquiries as certain pharmaceutical patent cliffs approach expiry, and generic API producers look to streamline their own synthetic routes using this pyridine core.
Beyond pharma, the compound serves as a foundation in the development of agrochemical active ingredients. Agricultural labs often reach out for custom-purity grades or tailored crystal sizes for improved downstream blending and flow in their formulations. Over time, we have been asked to deliver lots with tighter chlorides or controlled water content—because no two downstream process setups look exactly alike.
Some of our earliest experiences with niche markets came from electronics applications. Research teams requested high-purity, low-metal versions of 2-Amino-6-Bromopyridine for small molecule semiconductors and specialty coatings. The adaptability of this chemical, particularly the secure position of the bromine on the ring, gives synthetic chemists the flexibility to pursue halogen-based cross-coupling reactions—a route that many older intermediates cannot offer as reliably.
Interacting directly with users over the years, clear feedback emerges: shelf stability, minimal residual solvents, and tight impurity profiling matter as much as cost efficiency. The choices we make on the reactor floor directly impact whether researchers reach their activity targets or regulatory thresholds, especially in early-stage development.
Chemists will often line up 2-Amino-6-Bromopyridine beside other substituted pyridines and ask why choose this one? Our production staff hear these comparisons weekly. Take 2-Aminopyridine, for instance—it lacks the bromine moiety and, though widely used, does not enable the same set of halogen-directed synthetic transformations. On the other hand, simple bromopyridines don’t provide the reactivity of an amino group, so they miss opportunities for downstream toolkits in medicinal chemistry or agrochemical active design.
From hands-on synthesis, we see the real-world difference in yield and side product profiles when our customers swap in 2-Amino-6-Bromopyridine for step-economy purposes. In many cases, introducing both a nucleophilic site (the -NH2) and a halide (the -Br) offers an orthogonal set of reactions, opening up biaryl extension or late-stage amide formation without extra protecting groups. This approach cuts reaction steps, which matters both for cost and occupational safety by reducing handling of aggressive reagents.
Other pyridine intermediates struggle to match this efficiency. If a downstream route requires both C–N and C–C coupling steps, chemists save time using this building block. In contrast, if the substrate provides only a single functionality, more time and effort go into installing additional reactive handles, resulting in extra workup cycles and purification headaches. Through dozens of process train case studies internally and externally, this efficiency becomes tangible—half as many solvent swaps, far less column time, and a lessened likelihood of cross-contamination.
We have handled requests for both 2- and 3-substituted aminopyridines, as well as their methyl, chloro, or nitro analogs. Each has its role, but the 2-amino-6-bromo arrangement balances reactivity and selectivity in most approaches to advanced intermediates. Customers working on complex heterocycles or stepwise additions favor this core because it allows two points of controlled reactivity on the same small ring, expanding the toolkit for medicinal chemistry optimization.
Over years of making 2-Amino-6-Bromopyridine, the manufacturing team collects a library of data on process optimization. The critical factor is always purity. Actual purity levels in commercial batches routinely reach 98% HPLC and above, with minor residuals stemming from starting material traces or side reactions. Our quality staff rarely rest until common impurities—unreacted starting pyridines, dibromo byproducts, or trace hydrolysis species—have been tracked below actionable thresholds.
We continue to refine our protocols based on stability studies and customer feedback around solvent residue, water content, and lot consistency. Techniques like vacuum crystallization, repeated solvent reflux, and tailored drying procedures stabilize the finished powder. Regular conversations with downstream process engineers inform our decision about what thresholds really matter—some applications shrink in the presence of less than 0.1% water, while others tolerate more but push for lower organic solvent residues.
Investing in process controls pays dividends for both safety and reliability. Mid-scale reactors and continuous flow setups, along with digital tracking of temperature and pH variation, shrink batch-to-batch differences and shorten troubleshooting cycles. Rather than only relying on end-product testing, in-process sampling allows early detection of anomalies, which has cut waste and improved first-pass yields on many multi-ton campaigns. We document all operational specifics, traceable to each shipment, because trust comes from transparency as much as from purity certificates.
Finished lots always undergo comprehensive testing: melting point checks at multiple cooling rates, TLC and HPLC profiles, Karl Fischer titration where low water activity matters, and residual solvent analyses by headspace GC. These are not just regulatory box-ticks but data points for continuous process improvement. Teams involved in downstream drug synthesis rely on our tight spec compliance to minimize requalification work at their sites.
It’s easy to overlook day-to-day safety with a relatively stable compound, but manufacturing and packing experience always shapes protocols. 2-Amino-6-Bromopyridine handles as a low-dust, low-odor powder, but no one lets their guard down. Staff always wear fitted gloves, goggles, and filtration masks when charging or weighing in areas with fine particulates. The compound’s moderate toxicity pushes us to design closed material transfer lines, minimizing inhalation risk.
Older processes that relied on open charging or manual bag dumping have been phased out over the years; improvements make the factory a safer place for all. Proper air extraction and PPE minimize dust, but repeated exposure controls come from well-sealed packaging lines and robust labeling. Delivery in fiber drums or thick-wall HDPE containers protects contents during storage and shipping while reducing moisture uptake. These might seem like small steps, but frequent audits, accident reviews, and feedback from packing teams drive us to improve operational safety each season.
Every shipping campaign brings new transportation and storage demands. Moisture pick-up or temperature swings in transit can affect the compound over time, so we invest in packaging and logistics partners that understand the specific challenges of fine chemicals. The knowledge that customers depend on us for their process yields pushes strict adherence to storage instructions and tight paperwork on every drum that leaves the warehouse.
Manufacturers face ongoing scrutiny—not just for product quality but also sustainability and compliance. We manage waste minimization in every step, from efficient reagent dosing to solvent reclamation and recovery. Solvent streams undergo recycling and purification, which not only shrinks environmental footprint but also lowers costs for long production campaigns.
For a compound like 2-Amino-6-Bromopyridine, regular monitoring of effluents and solid waste streams matters. The brominated nature means any escaped material requires managed disposal under supervised environmental protocols. Frequent reviews, both internal and from external agencies, keep disposal methods up to date. Our familiarity with regulatory changes, especially in major chemical markets, ensures compliance with both export and local audit requirements. Auditors appreciate clarity, and seamless paperwork comes from years of following the process—rather than patching gaps when inspections approach.
Green chemistry principles play a larger part today than during our early days. Teams continually review upstream and downstream processes for risk reduction and process intensification. Lab-scale work quickly transitions to pilot trials, looking for reductions in hazardous intermediates and unnecessary solvent use. Now, many of our recipes use alternative solvents or catalytic approaches, cutting down on waste and energy use. Customers have responded positively to these changes, and several select our material specifically for greener supply chains.
Working as a direct manufacturer of 2-Amino-6-Bromopyridine places us in constant dialogue with end users and development partners. Many researchers approach us looking for custom grades, alternative particle sizes, or co-crystallization options for unique applications. Our technical support teams, most of whom have worked on the production floor, talk through each request and frequently suggest process tweaks grounded in practical experience.
These relationships improve our product. Customer labs in the pharmaceutical and fine chemical space request lot samples for process qualification, and feedback from actual bench trials informs each production run. Over the years, we have adjusted drying parameters, run alternate crystallizations, and tried modified filtration setups in response to real-world bottlenecks faced by our partners. This collaborative approach reduces failed batches and imparts mutual trust—something not easily won through catalog sales alone.
For certain demanding projects, we have scaled specialty runs involving isotopically labeled precursors or custom impurity profiles. While the standard commercial product fulfills most needs, having this adaptability in production strengthens our reliability in a competitive market. The hands-on connection with users sharpens our manufacturing acumen, as we get early looks at new applications and help customers troubleshoot unexpected challenges.
Market interest in heterocyclic intermediates grows every year as new therapeutic areas and material sciences advance. Our production logs show a steady increase in inquiries for multi-functional pyridines, especially those offering dual substitution like 2-Amino-6-Bromopyridine. While bulk pharmaceutical production drives the largest volumes, smaller specialty chemistry and R&D labs consistently approach us for rapid prototyping compounds and advanced synthetic building blocks.
Nobody can predict every future application, but ongoing trends in oncology, antimicrobial research, and sustainable agrochemicals all point to an increasing need for stable, versatile chemical intermediates. This compound’s dual reactivity often makes it a significant building block in the discovery phase, where chemists value flexibility in diversifying compound libraries. Our close relationship with the research sector gives us insight into emerging methodologies—such as photoredox catalysis and green halogenation routes—which depend on reliable starting materials.
Occasionally, we field questions about alternative ring systems or multi-step analogs. Feedback from the field constantly pulls us to investigate new synthetic approaches or side-chain modulations that may offer customers competitive advantage. Keeping our focus on quality, adaptability, and transparent supply ensures 2-Amino-6-Bromopyridine remains a dependable foundation for next-generation chemical innovation.
Experience remains the sharpest tool in a manufacturer’s kit. Decades of practical problem-solving, from start-up synthesis to kilo-lab expansion and automated line runs, separate a trusted supplier from an untested source. Every gram produced teaches us something: about scale-up risks, transportation pitfalls, and user feedback that shapes future runs.
Not every lot is perfect, and our openness in discussing any anomalies helps partners adjust accordingly. If a shipment arrives outside spec, our technical teams work in real time to analyze causes and offer replacement or remedial action, rather than shying away from difficult conversations. From our end, each success story and setback leaves visible lessons, embedded in improved process design and better batch reporting.
In this trade, trust arrives slowly—shipment by shipment, coordinated by real people working at the intersection of chemistry and industry. The attention given every drum of 2-Amino-6-Bromopyridine reflects years of real-world experience, constant engagement with research and production partners, and a commitment to making each batch a little better than the last.