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5-Bromo-2-Methoxy-Nicotinic Acid

    • Product Name 5-Bromo-2-Methoxy-Nicotinic Acid
    • Alias 5-Bromo-2-methoxynicotinic acid
    • Einecs 871-293-6
    • 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
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    Specifications

    HS Code

    814647

    Chemical Name 5-Bromo-2-Methoxy-Nicotinic Acid
    Cas Number 79548-74-4
    Molecular Formula C7H6BrNO3
    Molecular Weight 232.03
    Appearance White to off-white solid
    Melting Point 177-181°C
    Solubility Soluble in DMSO, Methanol
    Purity Typically ≥98%
    Storage Conditions Store at room temperature, protected from light and moisture
    Synonyms 5-Bromo-2-methoxypyridine-3-carboxylic acid
    Inchi Key IYOYHDSUWPVKNZ-UHFFFAOYSA-N
    Smiles COC1=NC=C(C=C1Br)C(=O)O

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

    Packing & Storage
    Packing 5-Bromo-2-Methoxy-Nicotinic Acid, 10g, is sealed in an amber glass bottle with a tamper-evident cap and hazard labeling.
    Shipping 5-Bromo-2-Methoxy-Nicotinic Acid is shipped in secure, chemical-resistant containers to prevent leaks or contamination. Packaging complies with international hazardous materials regulations. Material Safety Data Sheet (MSDS) accompanies the shipment. Transport is carried out by licensed carriers, with clear labeling indicating chemical identity and hazard class, ensuring safe and compliant delivery.
    Storage 5-Bromo-2-Methoxy-Nicotinic Acid should be stored in a tightly sealed container, away from direct sunlight, moisture, and sources of ignition. Keep the chemical in a cool, dry, and well-ventilated area, ideally at room temperature (15–25°C). Clearly label the container and store separately from incompatible substances, such as strong oxidizers, acids, or bases. Use secondary containment to prevent spills.
    Application of 5-Bromo-2-Methoxy-Nicotinic Acid

    Applications of 5-Bromo-2-Methoxy-Nicotinic Acid in Industrial Manufacturing

    Our factory supplies 5-Bromo-2-Methoxy-Nicotinic Acid to diverse sectors, with each use case reflecting specific regulatory, processing, and formulation needs. The following sections outline primary industrial application routes with operational details for quality-driven manufacturing environments.

    1. Active Pharmaceutical Ingredient Synthesis (Pyridine-Based Drugs)

    Downstream pharmaceutical companies use 5-Bromo-2-Methoxy-Nicotinic Acid as a building block in the synthesis of various nicotinic acid derivatives, particularly for pyridine-based APIs including anti-inflammatory and central nervous system agents. The compound enters processes as a halogenated precursor to facilitate regioselective modifications under controlled reaction conditions. Full GMP and traceability systems guide each production stage, from initial reaction vessel loading through purification steps and release for final formulation.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients
    • USP/NF Monograph Requirements (Reference for structural intermediates)
    • European Pharmacopoeia General Chapters
    • 21 CFR 210/211 (where used in US-regulated manufacturing enviroments)

    Typical usage ratio

    • 30–60 mol% relative to target pyridine core, optimized by stoichiometric calculations for each API synthesis route
    • Adjusted based on process yield and impurity profile monitoring

    Downstream process integration

    • Introduced at chlorination/halogenation or stepwise coupling reaction for side chain elaboration
    • Processed in jacketed reactors under inert atmosphere, followed by HPLC-based purification

    Final product types

    • Pyridine-based finished APIs such as anti-diabetic agents
    • Anti-tuberculosis drug intermediates
    • Anti-inflammatory pharmaceutical actives
    • Oral solid dosage forms (tablets/capsules) after further synthesis

    2. Agrochemical Intermediate for Pyridine-Containing Crop Protection Agents

    Major agrochemical manufacturers employ this compound for selective bromination during the synthesis of advanced herbicide and fungicide active molecules. The bromo-methoxy-pyridine structure is essential for constructing chemical scaffolds with improved field stability and target specificity. Downstream processing integrates this raw material directly before cyclization and functionalization stages in multi-step synthetic routes.

    Industry compliance standards

    • FAO/WHO Technical Specifications for Pesticide Ingredients
    • ISO 9001:2015 Quality Management Systems
    • REACH (Registration, Evaluation, Authorization and Restriction of Chemicals)
    • National Hazardous Chemicals Inventory for China, and EPA guidelines for exports to North America

    Typical usage ratio

    • 20–45 wt% in batch-based synthesis of advanced intermediates
    • Adjusted per crop protection molecule and process efficiency requirements

    Downstream process integration

    • Charged during early intermediate stage, prior to amide formation or heterocycle closure
    • Isolated by crystallization with mother liquor recycling to minimize waste

    Final product types

    • Raw herbicide actives (e.g., nicotinic acid-derived broadleaf herbicides)
    • Advanced fungicide technical concentrates
    • Formulated crop protection granules or EC/SC liquid products
    • Seed treatment agents for high-value cropland

    3. Custom Synthesis of Electronic Chemicals (Organic Semiconductors & Photoinitiators)

    Leading electronic chemical firms incorporate 5-Bromo-2-Methoxy-Nicotinic Acid in the synthesis of pyridine-based organic semiconductors and specialized photoinitiators. The molecule’s substituent pattern supports further derivatization into structures enhancing charge carrier mobility and UV-absorption profiles. Critical for companies fabricating display and circuit board materials, our technical-grade supply supports demanding purity level controls at every step.

    Industry compliance standards

    • RoHS (Restriction of Hazardous Substances Directive) for electronics applications
    • ISO 14001:2015 Environmental Management Systems
    • Industrial Clean Room and Particle Control Standards (ISO Class 7–8)
    • Company-specific QC algorithms for trace ion and metal residues

    Typical usage ratio

    • 10–35 mmol% relative to final oligomer/monomer feed, dependent on device design spec
    • Adjusted for molecular weight targets and optical/electrical property optimization

    Downstream process integration

    • Added during pre-polymerization or aryl coupling step in organic electronic material production
    • Purified via preparative chromatography or recrystallization for high-conductivity grade

    Final product types

    • Organic semiconductor chips for display/lighting applications
    • Photoresist materials for PCB manufacturing
    • Photoinitiator molecules for UV-cured inks and coatings
    • Smart card and RFID material components

    4. Advanced Dye and Pigment Intermediate for Specialty Colorants

    Manufacturers producing high-value dyes use 5-Bromo-2-Methoxy-Nicotinic Acid as a functional intermediate. Its electron-rich and halogen-functionalized backbone is essential for stepwise couplings that achieve intense and lightfast colors. Integration into the dye synthesis step enables production of pigments with defined absorption/emission characteristics for textile, inkjet, and industrial coatings applications.

    Industry compliance standards

    • OEKO-TEX® Standard 100 for textile chemical safety
    • EN 71-3: Toy Safety—Migration of Certain Elements (for dyes in children’s products)
    • AP(89)1 Council of Europe Resolution on food-contact materials—if colorant is intended for indirect contact
    • ZDHC MRSL for chemical inputs in manufacturing restricted substances

    Typical usage ratio

    • 5–20 mol% in the core chromophore-forming step
    • Adjusted according to targeted color strength and lightfastness in final pigment or dye

    Downstream process integration

    • Charged at diazotization or coupling reaction for direct pigment scaffold assembly
    • Purified through aqueous and solvent phase extraction with downstream drying and milling

    Final product types

    • Specialty azo and anthraquinone dyes for technical textiles
    • Premium inkjet ink pigment dispersions
    • Coating pigments for plastics, rubber, and synthetic leathers
    • Photoactive dyes for analytical and diagnostic reagent uses

    5. Fine Chemical Intermediate for Research and Laboratory Reagents

    Commercial laboratory and catalog chemical suppliers engage our plant for multi-kilogram lots of 5-Bromo-2-Methoxy-Nicotinic Acid tailored for custom synthesis and reagent-grade specifications. Research groups use this compound in medicinal chemistry, material science prototyping, and structure–activity relationship studies due to the reactive bromide and substituent versatility. We ensure high-batch consistency with full COA and spectral documentation tailored to specialist laboratories.

    Industry compliance standards

    • ISO 9001:2015 and ISO/IEC 17025:2017 for production and analytical testing
    • GLP guidelines (if supplied to regulated preclinical research organizations)
    • UN Globally Harmonized System (GHS) for SDS and labeling
    • National Poison Centre notification for chemical supply compliance

    Typical usage ratio

    • Synthesized or supplied as neat substance; researcher-adjusted dosing as required for screening or catalyst protocols
    • Bench-scale reactions typically utilize 0.5–5 mmol per experimental run

    Downstream process integration

    • Delivered for direct weighing and dissolution in organic solvents for bench chemistry
    • Filtered, packed, and transported in amber vials under inert gas for sensitive applications

    Final product types

    • SAR/medchem probe compounds in academic or pharma R&D
    • Reference standards for chromatographic calibration
    • Analytical-grade intermediates for specialty reactions
    • Custom functionalized building blocks for library synthesis
    Free Quote

    Competitive 5-Bromo-2-Methoxy-Nicotinic Acid prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

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    Certification & Compliance
    More Introduction

    5-Bromo-2-Methoxy-Nicotinic Acid: A Chemist’s Perspective from the Factory Floor

    Introduction to Our Craft

    Stepping into our chemical manufacturing halls, daily routines revolve around precision, consistency, and a constant drive for improvement. Our focus has always remained on the molecules themselves, the people who use them, and the way each detail shapes the broader world of research, pharmaceuticals, and industrial applications. One product that often stirs particular anticipation among our team is 5-Bromo-2-Methoxy-Nicotinic Acid. This compound holds a place close to our operations and expertise, and the journey from conceptual demand to finished product reflects the hard-won value of experience.

    An Everyday Profile of 5-Bromo-2-Methoxy-Nicotinic Acid

    Producing 5-Bromo-2-Methoxy-Nicotinic Acid means working with a substance that presents itself as an off-white to light beige powder, sometimes with a crystalline texture seen under the microscope. Its molecular formula, C7H6BrNO3, seems simple on paper. The real challenge lies in achieving a batch where every grain carries the same standard, batch after batch. Even slight differences in purity or moisture content can alter its behavior in chemical synthesis downstream, based on feedback from our collaborators and in-house quality control team.

    Purity defines much of our working day. The product leaves our facility typically with a purity exceeding 98%, confirmed through both HPLC and titration methods. The arrangement of the bromine at the 5-position and the methoxy group at the 2-position on the nicotinic acid backbone gives this acid its defining personality: greater reactivity at the pyridine ring compared to its unsubstituted peers. We routinely check melting points, solubility in various solvents, and monitor for residual chloride and sulfate ions because these little details make all the difference during later reactions.

    Manufacturing Realities: Consistency in Scale and Detail

    While many envision chemical production as nothing more than pouring powders into large vessels, the truth stretches much further. Sourcing raw materials with secure supply lines, maintaining a reaction environment free from trace contaminants, and scaling up from various kilogram batches to hundreds of kilograms all pose unique challenges. Operators on our floor monitor not only temperatures and reflux times but stay alert to odd color changes or precipitation that hint at side reactions. Waste disposal, solvent recovery, and safe handling of brominated intermediates receive equal attention, as each aspect builds into repeatability, both for us and our long-term partners.

    Dryness, particle size, and free-flowing texture do not often enter laboratory conversations, yet remain priorities at the actual manufacturing stage. Moisture content has a reputation for shifting reaction outcomes; it can shorten product shelf life and change the way powders disperse in automated dispensing equipment further down the chain. We invest in controlled drying ovens, sealed storage, and vacuum transfer to push moisture content well below 0.5%. Customers notice the difference: smooth powder with no clumping, easier transfers, no unexplained variations in batch performance.

    The Value in Differentiation

    Comparing 5-Bromo-2-Methoxy-Nicotinic Acid with related compounds such as 5-Bromo-2-Hydroxy-Nicotinic Acid or 2-Methoxy-Nicotinic Acid, the subtle art of substitution becomes clear. The bromine acts as an activating group, while methoxy stabilizes the ring system and opens new paths for further derivatization. This particular arrangement makes the compound appealing for pharmaceutical intermediates, especially in building blocks for heterocyclic scaffolds destined for drug candidates.

    Colleagues in research often highlight that the bromine offers entry points for subsequent Suzuki or Sonogashira coupling reactions. Methoxy groups modify electronic character, affecting selectivity in aromatic substitution. The acid group itself marks an anchor for linkage chemistry, enabling amide formation or further esterification. We have handled dozens of analogs on the production line, each revealing a unique balance between reactivity, solubility, and shelf life, but few match this compound’s versatility in medicinal chemistry.

    Usage and Application: Downstream Insights

    Most inquiries we receive about this product originate from pharmaceutical labs or contract research organizations aiming to build larger, complex molecules. The compound often features as a starting point for synthesizing bioactive heterocycles or for introducing halogenated frameworks that affect molecular binding, metabolism, or transport. Preparation of API intermediates frequently relies on predictable turnover from the bromine atom, and we receive regular confirmation from partners on the value that tight control of impurities brings to those multi-step synthesis pathways.

    Some industrial users adapt our product for agricultural research or specialty pigment development. Both fields place heavy demands on structural fidelity: the type, position, and purity of each substituent dictate interactions at the molecular level, influencing color stability, efficacy against plant pathogens, or even polymer compatibility. These applications require a far more nuanced product than “pure enough”; a single exogenous contaminant can throw off a whole run of high-value material.

    What Sets Factory Production Apart

    Many newcomers to the world of chemical supply struggle to appreciate how work at the manufacturer’s end transforms the final result. We have hosted visiting scientists and end users, accustomed to buying from distributors or academic storage, who walk the line with us and see batch testing up close. They observe workers manually sampling at each reactor stage, monitoring off-gas and side products, and running quick TLC checks long before the analytical lab gives a green light.

    Our investment in repeated quality checks, process optimization, and long-term staff training adds visible value. A refinement here—a deeper filtration, a longer vacuum-drying cycle, or purging the finished powder with inert gas before packaging—creates a noticeably better product for those downstream. Feedback loops from production to maintenance and back to analytical teams help us spot hidden issues and respond before they reach the market.

    Challenges in Manufacture and Supply Chain

    The journey from raw material to ready shipment often brings up issues that only experience can manage. Unforeseen climate shifts affect yield and process stability, and small flaws in upstream supply—such as variable halogen content or off-grade methoxy donors—cascade into delays and product inconsistency. Our procurement and QC staff stay attuned to these patterns, working closely with suppliers, traveling to vet new partners, and setting up buffer stocks to cushion market swings.

    Shipping regulations for brominated substances, customs variances for specialty chemicals, and evolving requirements for transport documentation shape daily workflow. We prepare detailed shipment dossiers, invest in tamper-evident drums, and select expedited routes where possible. Each decision reflects lessons learned through risk—delays, near-misses, or frank batch failures that prompted new procedures and training for our teams.

    Environmental Footprint and Responsibility

    Handling halogenated intermediates like 5-Bromo-2-Methoxy-Nicotinic Acid brings both promise and responsibility. Capturing byproducts, scrubbing gaseous emissions, and recycling solvents take up significant operational bandwidth. The team makes constant process tweaks to minimize energy usage and cut down on water consumption in purification steps. Waste streams undergo separation and treatment to recover usable material and to protect our environment and neighboring communities.

    Audits from regulatory bodies and multinational partners serve as strong reminders that every gram saved, or waste stream reduced, represents real environmental impact. Staff participate in regular drills, review incident reports, and share best practices learned from industry forums and conferences. By gradually increasing process yields and introducing smart monitoring, we’ve watched solvent consumption drop and product carbon footprint improve over the last five years.

    Supporting Research and Product Development

    Part of the real satisfaction behind manufacturing 5-Bromo-2-Methoxy-Nicotinic Acid comes from supporting a wider research community. Many new users reach out for technical support, asking about compatibility with specific reactants, storage advice, or tailored particle sizing for automated synthesis platforms. Our technical teams answer these questions, pulling on decades of accumulated knowledge and referencing both in-house studies and feedback from hundreds of real-world users.

    Occasionally, requests arrive that push us to rethink traditional approaches. A lab working on green synthetic methods may want a bespoke grade with lower residual solvents. A pilot plant might need pre-sealed ampoules for high-throughput screening. These queries keep our teams engaged and continually learning. Cross-department collaboration ensures that every solution meets not just the technical needs but the practical realities of shipping, handling, and regulatory compliance.

    Quality Control and Traceability

    Quality assurance at our facility walks a fine line between automation and hands-on attention. Automated LC analyzers and spectrometers log every batch, while experienced chemists physically monitor every production stage. The traceability journey for a single batch number reveals the attention granted at each step: from the original weighing of starting materials through purification, batch retention, and warehousing.

    Incidents where a batch fell outside our specifications led to the implementation of expanded analytical panels. We developed in-house reference standards, keeping archived samples of every production lot for years. Any customer inquiry into a past shipment can be met with a record of raw data and analytical results, supplying real evidence to supplement certifications. This open, factual approach builds trust and strengthens relationships with users confronted by regulatory scrutiny or troubleshooting in their own labs.

    Logistics: Packaging to Delivery

    Sending chemical products worldwide adds complexity often overlooked outside the factory. Each drum or vial receives custom labels, security seals, and traceable barcodes. Our packing operators understand that even minor leaks or temperature fluctuations can compromise sensitive acids. Blocked vents, condensation, and rough handling during transport are real-world problems, so our team selects packaging with care—double-bagging where needed and adding desiccants for sensitive grades.

    Regions with challenging climates or regulatory red tape often require tailored logistics planning. Working closely with freight experts, we adapt transport and storage conditions to guarantee integrity at the receiving end. Notifications accompany every shipment, not only with compliance documentation but with a readiness to respond should customers encounter handling or storage difficulties.

    Solutions to Industry Challenges

    We have faced many obstacles during scale-up and supply, yet each challenge brings opportunity. Advances in real-time analytics, improved catalyst recovery, and batch tracking software have driven faster response times and improved production yields. Periodic process reviews allow for input from workers and technicians who know the quirks of each step firsthand, leading to incremental but real gains in output quality and consistency.

    Our approach avoids chasing the lowest cost or fastest route, instead prioritizing relationships and reliability. Customers who have encountered variable quality or unreliable supply elsewhere return to us, valuing a partner who stands behind the product and continuously works to understand new need and evolving scientific requirements. Listening, improving, and maintaining tight loops between customer feedback and factory practice drives our entire philosophy.

    Practical Advice for End Users

    Users purchasing 5-Bromo-2-Methoxy-Nicotinic Acid benefit from clear storage and handling practices. Sealing containers tightly, storing away from light and heat, and minimizing exposure to air preserves the original quality for extended periods. Once opened, re-closure and silica pouches help guard against moisture pick-up. In our experience, minor lapses in storage often explain anomalies in performance or application, so we remain available to advise on best practices tailored to lab or plant settings.

    Waste disposal deserves equal attention, especially for halogenated acids. We encourage users to segregate waste, neutralize acids where possible, and follow appropriate handling for bromine-containing residues. Sharing handling recommendations and safety bulletins supports safe, compliant operations and avoids costly incidents or regulatory notices.

    Looking Forward: Innovation and Stewardship

    Chemical manufacturing rewards precision, diligence, and a willingness to evolve. Each advancement in our approach to producing 5-Bromo-2-Methoxy-Nicotinic Acid—whether tighter impurity controls, greener processes, or more robust supply chain safeguarding—reflects a long-term orientation. We have learned that the true value in this compound emerges not just from its application in synthesis, but from the care and expertise infused in every gram sent out.

    Decades in this line of work have shown us that attention to detail, open communication, and direct accountability underpin everything that sets one manufacturer apart from the next. Our product stands as a testament to the intersection between real-world problems and practical solutions, shaped by people who care about getting things right, batch after batch.

    Conclusion

    Our story with 5-Bromo-2-Methoxy-Nicotinic Acid continues to evolve alongside those who use it to break new ground. From bench chemists to industrial researchers, the needs of today's labs challenge us to keep learning, refining, and improving. The satisfaction comes not simply from meeting a spec, but from knowing that every effort, every improvement carries through to the world beyond our gates, shaping progress and safety for all.