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5-Amino-3-Bromo-2-Methoxypyridine

    • Product Name 5-Amino-3-Bromo-2-Methoxypyridine
    • Alias 5-Amino-3-bromo-2-methoxypyridine
    • Einecs 619-494-9
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    740873

    Name 5-Amino-3-Bromo-2-Methoxypyridine
    Cas Number 848133-35-5
    Molecular Formula C6H7BrN2O
    Molecular Weight 203.04 g/mol
    Appearance Off-white to light brown solid
    Melting Point 98-102°C
    Purity Typically ≥98%
    Solubility Soluble in DMSO and methanol
    Storage Temperature 2-8°C
    Smiles COC1=NC=C(C=C1Br)N
    Inchi InChI=1S/C6H7BrN2O/c1-10-6-4(7)2-5(8)3-9-6/h2-3H,8H2,1H3

    As an accredited 5-Amino-3-Bromo-2-Methoxypyridine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The 5-Amino-3-Bromo-2-Methoxypyridine is packaged in a 25g amber glass bottle with a tightly sealed screw cap for protection.
    Shipping 5-Amino-3-Bromo-2-Methoxypyridine is shipped securely in tightly sealed containers, compliant with chemical safety regulations. It is packaged to prevent moisture and light exposure, labeled with appropriate hazard information, and transported via approved carriers to ensure safe, prompt delivery. Shipping documentation and Safety Data Sheets (SDS) are provided with each shipment.
    Storage **5-Amino-3-Bromo-2-Methoxypyridine** should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from direct sunlight and moisture. Keep the chemical away from incompatible substances, such as strong oxidizers and acids. Use secondary containment to prevent spills and label the container clearly. Ensure proper personal protective equipment is used when handling.
    Application of 5-Amino-3-Bromo-2-Methoxypyridine

    Applications of 5-Amino-3-Bromo-2-Methoxypyridine in Industrial Manufacturing

    As a direct manufacturer of 5-Amino-3-Bromo-2-Methoxypyridine, we supply this intermediate to a focused range of high-value downstream sectors. These application segments rely on precise control of formulation, compliance with sector-specific regulations, and clearly defined roles for our material throughout the finished product lifecycle. Below, we detail the major industrial uses validated by real market demand and established manufacturing practices.

    1. Pharmaceutical Synthesis: Third-Generation Cephalosporin Side Chain Intermediate

    Pharmaceutical producers incorporate this compound as a key starting material when synthesizing modified side chains for advanced cephalosporin antibiotics, targeting enhanced β-lactamase resistance and pharmacokinetics. Its unique reactivity profile allows chemists to achieve regioselective couplings and functionalizations that are critical for next-generation β-lactam APIs. Finished products include both injectable and oral antibiotic forms for human health markets.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice Guidance for Active Pharmaceutical Ingredients
    • US FDA 21 CFR Part 211 (Current Good Manufacturing Practice for Finished Pharmaceuticals)
    • EU GMP Part II (APIs)
    • ChP, USP, EP monographs for cephalosporin antibiotics

    Typical usage ratio

    • Used at 0.2–0.6 molar equivalents per mole of cephalosporin core, optimized for specific side chain structures; adjusted according to target API synthesis yield and impurity control requirements

    Downstream process integration

    • Charged during early-stage acylation or amidation steps to construct the antibiotic side chain; introduced prior to isolation and purification stages of the API process

    Final product types

    • Sterile injectable antibiotics (powder for reconstitution, ready-to-use solutions)
    • Oral tablet and capsule cephalosporins (e.g., ceftibuten, cefixime derivatives)
    • API intermediate bulk, exported for final dose-form production

    2. Agrochemical Active Ingredient Intermediate: Pyridine-Based Herbicides

    In the agrochemical industry, the compound is utilized as a pyridine ring modifier in the synthesis of high-performance herbicides targeting selectivity and reduced residual activity. Its incorporation supports the development of active ingredients with improved environmental profiles, specifically in the production of heterocyclic pesticides that require precise control of substitution patterns for field performance and regulatory clearance.

    Industry compliance standards

    • ISO 9001:2015 Quality Management Systems in Agrochemical Production
    • FAO/WHO Specifications for Plant Protection Products
    • REACH (Registration, Evaluation, Authorisation and Restriction of Chemicals) pre-registration for European supply chains
    • China ICAMA (Institute for the Control of Agrochemicals, Ministry of Agriculture) licensing

    Typical usage ratio

    • Blended at 0.3–1.2 molar equivalents per target herbicide molecule, with adjustments for process yield and environmental metabolite formation requirements

    Downstream process integration

    • Introduced in core pyridine derivatization, usually following initial halogenation and prior to heterocycle coupling or ring-closure steps in technical material synthesis lines

    Final product types

    • Emulsifiable concentrate herbicides
    • Water-dispersible granules for weed management in cereals and specialty crops
    • Bulk technical active ingredient for overseas repacking/blending

    3. Development of Advanced Dye Intermediates for Electronic Displays

    Manufacturers of electronic display materials employ this pyridine derivative as a coupling unit for synthesizing tailored organic dyes and pigments, particularly those designed for OLED and LCD panel technologies requiring narrow emission bands and high stability. The fine-tuned electronic properties afforded by the bromo and methoxy functionalities support color purity and process stability, critical for downstream patterning and encapsulation.

    Industry compliance standards

    • RoHS (Restriction of Hazardous Substances Directive) for electronic componentry
    • IEC 61249-2-21 standards for halogen-free electronic materials
    • ISO 14001 Environmental Management in display manufacturing
    • TÜV SÜD chemical analysis protocols

    Typical usage ratio

    • Typically 0.1–0.5 molar equivalents per colorant synthesis batch, modulated by targeted emission wavelength and final dye composition

    Downstream process integration

    • Reacted in early-stage heterocycle assembly or introduced during final azo or Schiff base formation, prior to pigment purification and dye crystallization

    Final product types

    • OLED emitter and transport layer dyes
    • LCD color filter pigment dispersions
    • Photoresist pigments for advanced photolithography

    4. Synthesis of Veterinary Drug Intermediates: Antibacterial and Antiparasitic APIs

    Veterinary pharmaceutical producers select this compound as a controlled intermediate during the construction of potent pyridine-based antibacterial and antiparasitic active substances. Rigid process protocols benefit from the compound’s defined substitution pattern, supporting consistent batch yields and impurity profiles required for regulatory filings and large-scale animal health production.

    Industry compliance standards

    • VICH GL2 (Good Manufacturing Practices for Veterinary Products)
    • China Veterinary Pharmacopoeia
    • EDQM Active Substance Master File (ASMF) for veterinary APIs
    • GMP certification from local agricultural authorities

    Typical usage ratio

    • Applied at 0.25–0.8 equivalents depending on the targeted veterinary compound and reactive group conversion rate, recalibrated by impurity control requirements

    Downstream process integration

    • Incorporated during side chain acylation, halogen exchange, or aromatic amination stages of veterinary API synthesis flows

    Final product types

    • Injectables for livestock infection control
    • Oral API powder blends for feed additives
    • Compounded antiparasitic medications for aquaculture and poultry
    Free Quote

    Competitive 5-Amino-3-Bromo-2-Methoxypyridine prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    5-Amino-3-Bromo-2-Methoxypyridine: A Closer Look from the Manufacturer’s Perspective

    Building Practical Chemistry for Today’s Market

    Every day inside our production halls, we handle a wide catalog of pyridine derivatives, but there’s a reason 5-Amino-3-Bromo-2-Methoxypyridine stands apart among heterocyclic building blocks. Sourcing high-quality reagents is only half the recipe for success—what matters most is a well-developed manufacturing process rooted in years of running reactions, optimizing yields, and maintaining batch purity. True reliability comes from the factory floor, not from datasheets found on the web.

    Over the years, chemists pushing boundaries in both research and industry have asked more from their starting materials. With demands for efficiency in pharmaceutical synthesis and custom agrochemical projects rising, molecules like 5-Amino-3-Bromo-2-Methoxypyridine aren’t simply chemicals—they’re working tools. From our perspective as a direct producer, this fine-tuned intermediate reflects both the discipline and creativity involved in real-world chemical manufacturing.

    Our Process, Our Standards

    Manufacturing 5-Amino-3-Bromo-2-Methoxypyridine means more than keeping a clean reactor. Precise selection of precursors, temperature profiles, and solvent conditions dictate final product outcome. Over the years, our synthetic pathway has evolved to meet the strain of rising purity requirements while reducing impurity profiles that matter most for downstream chemistry. Our team remembers what happens in every single vessel—our managers and technicians recognize subtle color changes, scent notes, and product flows. Machines help, but judgment and experience cannot be replaced.

    The final product emerges as a pale yellow to off-white crystalline powder, easily handled and suitable for fine-scale dosing. By consistently controlling moisture content and limiting exposure during post-production, we help customers avoid variability at critical steps. Each shipment comes with honest data gathered directly in our QC labs. It’s easy to talk up 99% purity, but only actual batch analysis reveals the story, and we take pride in doing this work properly—calibrating each instrument, double-checking each run, and rejecting batches that don’t meet internal benchmarks.

    We value traceability over shortcuts. Our team records every step from raw material sourcing to final packaging. The results? Less unexplained byproduct and less downtime for chemists depending on the reliability of their starting material.

    Real-World Applications That Matter

    Few compounds in the category of substituted pyridines have found as much straightforward utility as 5-Amino-3-Bromo-2-Methoxypyridine. Chemists reach for this molecule most often when designing active pharmaceutical ingredients (API), especially in projects where the introduction of amino, bromo, and methoxy groups on the ring allows for broadening SAR studies or fine-tuning bioactivity. We’ve seen this compound play a quiet yet foundational part in the assembly of kinase inhibitors, anti-cancer drug candidates, and even advanced materials.

    Unlike generic intermediates, this compound’s combination of amino and bromo substituents opens doors for selective cross-coupling and further modification via Suzuki or Buchwald-Hartwig reactions. In the lab, fewer purification cycles mean more headroom for innovation and less time troubleshooting column runs. Over the years, process chemists and bench scientists have let us know that with our product, they waste less starting material and spend more time moving projects forward.

    Quality Over Quantity—What Sets Our Product Apart

    It’s easy to focus on numbers, but real differences show up when comparing manufacturing sources side by side. We have run competitive analyses and seen plenty of imported or resold material that looks similar but produces different results in scaled reactions. Sometimes the difference lies in an extra tenth of a percent moisture, slight over-bromination, or trace byproducts invisible to basic chromatography but revealed in more discerning HPLC or NMR tests. End-users notice these differences when yield drops unexpectedly or when reactions stall beyond typical timeframes.

    We don’t aim for minimum specs; we work toward process consistency. Each batch starts with independently sourced raw materials and rigorous lot screening. Over time, this approach has allowed us to reduce customer complaints linked to batch variation and lost time on rework. By integrating feedback from long-term partners in pharma and agrochemical sectors, we can pinpoint common failures and avoid them entirely.

    This isn’t a matter of chasing trends or headline-grabbing new chemistry; it's about planning, patience, and attention to detail for chemists who can’t afford missteps. Our staff watches grain size distribution, residual solvents, and contaminant profiles. We calibrate and validate processes based on feedback from those who use the product most—experts at the bench and in process scale-up.

    Supporting Research and Scale-Up

    For research labs pushing out dozens of analogues a week, reagent reliability makes the difference between fast progress and stalled projects. On the manufacturing side, contract organizations and production chemists need assurance that their kilo-scale reactions won’t be thrown off by lost conversion rates or unexpected precipitation. Our batches of 5-Amino-3-Bromo-2-Methoxypyridine go out with targeted reports because we know the value of transparency and clear communication. If issues arise, you're speaking directly to the team that made the material, not to an anonymous broker who guesses at upstream conditions.

    Some years ago, a partner developing novel oncology compounds came to us after their in-house scale-up failed with resold materials from an unknown origin. Analysis revealed that off-spec byproducts interfered with subsequent coupling steps. By switching to our material and adopting a direct feedback loop with our process chemists, they recovered project timelines and hit their milestones. This kind of partnership-driven troubleshooting shapes how we refine operations.

    Environmental Responsibility in Manufacturing

    Chemical makers today hold responsibility beyond the walls of the factory. We’ve taken meaningful steps to streamline processes, cut solvent usage, and implement recycling where feasible. By running root-cause analyses on waste generation and energy consumption, we have identified steps to minimize environmental footprint while protecting both worker safety and end-user purity. This goes hand in hand with trustworthy material. If the route makes use of more benign reagents or simplifies purification, costs and exposure risks drop substantially.

    Our team stays current with both local compliance and industry-wide best practices. We collaborate with clients who scrutinize supply chain transparency and ethical sourcing. Changes in regulation concerning halogenated intermediates continue to challenge the field, and we respond by sharing real-time updates about sustainability efforts and supply reliability. The customers who choose us expect more than mere legal compliance—they demand demonstration of responsible action at every step.

    Improve Every Batch, Listen to Every User

    Innovation in specialty intermediates isn’t driven by white papers or brochures, but by understanding what works in the real world. Open feedback from customers—whether they’re in academic drug discovery, contract synthesis, or applied research—tells us where improvements genuinely matter. Sometimes it involves removing residual halide traces; other times, it involves adjusting drying times or modifying packaging to fit unique storage conditions. Our approach relies on ongoing dialogue, because nobody understands day-to-day experimental challenges better than the chemists themselves.

    For buyers looking for assurance, we encourage questions. We offer in-depth documentation, detailed batch history, and raw analytical spectra when needed. Mistakes are rare but not impossible, and we always address them directly. Our process has grown with each new problem encountered, every odd analytical result, or chemist’s request for a tweak in formulation.

    Direct Support, Real Accountability

    Working with a direct manufacturer means getting clear answers, not scripted responses. Our production engineers and QC specialists are available to troubleshoot, provide guidance, or discuss reactivity questions. If a customer runs into solubility challenges or scaling difficulties, we have encountered similar obstacles in our own work and can suggest techniques drawn from hands-on experience.

    This directness builds trust. Clients are never left figuring things out alone, and every piece of feedback is used to improve the product for the next batch. In a landscape where too many links separate makers from end-users, standing behind the product is not optional.

    Comparing to Other Intermediates

    Some might ask how 5-Amino-3-Bromo-2-Methoxypyridine compares to related compounds on the market. While other bromo-aminopyridines or methoxy-pyridine derivatives exist, the particular positioning of these groups on the pyridine core sets this molecule apart. The ortho relationship between the methoxy and amino groups, coupled with the meta bromo substitution, unlocks unique reactivity. This delivers differentiation in cross-coupling strategies, regioselective functionalizations, and scaffold expansions.

    We’ve seen projects where switching away from similar analogues improved selectivity and conversion, thanks to reduced competing pathways and better compatibility with chosen catalysts. Feedback from medicinal chemistry groups indicates that using this compound streamlines both hit-to-lead and lead optimization steps, helping projects cross crucial go/no-go points more quickly.

    Conclusion: Built for Practitioners, Backed by Experience

    If our team seems passionate about this molecule, it’s because every kilogram represents years of development, daily focus, and constant learning. Rather than chasing commodity pricing or fleeting demand spikes, we continue to refine our offering based on what practitioners need in the field. Succeeding as a chemical manufacturer means more than filling orders. It requires ongoing investment in processes, infrastructure, and above all, relationships with those who turn our intermediates into tomorrow’s breakthroughs.

    We don’t take “good enough” as the answer. Every batch of 5-Amino-3-Bromo-2-Methoxypyridine stands as a testament to hard-won expertise, real-world troubleshooting, and the simple knowledge that what leaves our doors carries our reputation with it. Whether crafting new molecules in drug discovery, supporting manufacturing scale-up, or hunting for an intermediate that delivers on both performance and consistency, customers demand reliability—and that is what we set out to offer, every single day.