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2-Bromo-5-Chlorobenzoic Acid

    • Product Name 2-Bromo-5-Chlorobenzoic Acid
    • Alias 2-Bromo-5-chlorobenzoic acid
    • Einecs 238-709-8
    • 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

    164805

    Productname 2-Bromo-5-Chlorobenzoic Acid
    Casnumber 30758-46-8
    Molecularformula C7H4BrClO2
    Molecularweight 235.46
    Appearance White to off-white solid
    Meltingpoint 194-197°C
    Solubility Slightly soluble in water; soluble in organic solvents
    Density 1.8 g/cm³ (approximate)
    Purity Typically ≥98%
    Smiles C1=CC(=C(C=C1Cl)Br)C(=O)O
    Inchi InChI=1S/C7H4BrClO2/c8-5-2-1-4(7(10)11)3-6(5)9/h1-3H,(H,10,11)
    Storagetemperature Store at 2-8°C
    Synonyms 2-Bromo-5-chlorobenzoic acid; Benzoic acid, 2-bromo-5-chloro-

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

    Packing & Storage
    Packing The 2-Bromo-5-Chlorobenzoic Acid is packaged in a sealed 25g amber glass bottle with a secure screw cap for safety.
    Shipping 2-Bromo-5-Chlorobenzoic Acid is shipped in tightly sealed containers, protected from moisture and light. Transport must comply with local and international chemical regulations. The substance should be handled with appropriate safety measures, including labeling as hazardous, and shipped by certified carriers with documentation to ensure safe and secure delivery.
    Storage 2-Bromo-5-chlorobenzoic acid should be stored in a tightly sealed container, away from light, heat, and moisture. Keep it in a cool, dry, well-ventilated area, and separate from incompatible substances such as strong oxidizers and bases. Label the container clearly and handle with appropriate personal protective equipment to prevent skin and eye contact.
    Application of 2-Bromo-5-Chlorobenzoic Acid

    Applications of 2-Bromo-5-Chlorobenzoic Acid in Industrial Manufacturing

    2-Bromo-5-Chlorobenzoic Acid serves as a core intermediate in multiple specialized industrial chemical syntheses. As an original manufacturer, we supply this raw material to downstream partners relying on its performance in focused production segments. Our expertise is based on active involvement in formulation optimization, strict compliance, and consistent quality assurance, ensuring results that integrate directly into demanding end-use processes.

    1. Synthesis of Agrochemical Active Ingredients

    Leading agrochemical formulators depend on this building block for the scalable synthesis of select herbicide and fungicide actives. 2-Bromo-5-Chlorobenzoic Acid is valued for its precise reactivity, enabling controlled halogenated substitutions and cyclization reactions essential in constructing key molecular scaffolds. Chemical manufacturers integrate this intermediate at defined steps to secure process yield and purity benchmarks, consistently meeting the molecular standards required for downstream formulation and field-testing of crop protection agents.

    Industry compliance standards

    • FAO/WHO JMPR specifications for active ingredient purity and residual limits
    • EU Regulation (EC) No 1107/2009 (Plant Protection Products)
    • ISO 9001:2015 for industrial quality management in agrochemical synthesis
    • REACH registration for raw material traceability and environmental management

    Typical usage ratio

    • Batch syntheses use 2–4 molar equivalents per cyclization or coupling step, frequently adjusted based on target molecule complexity and desired substitution efficiency

    Downstream process integration

    • Incorporated at intermediate or advanced condensation stages prior to final ring closure or halogenation, often under controlled temperatures and solvent conditions to maximize selectivity

    Final product types

    • Precursor and technical-grade active ingredients for herbicide and fungicide brands
    • Intermediate compounds for integration in multi-step pesticide synthesis flows

    2. Pharmaceutical Intermediate Production

    Producers in generic and original pharmaceutical sectors introduce 2-Bromo-5-Chlorobenzoic Acid within the assembly lines of select APIs, utilizing its structural motif during heterocyclic compound formation. The compound offers halogenated functionality for targeted derivatization and condensation, serving as a mandatory precursor in patented and off-patent drug synthesis protocols. Manufacturers rely on its high purity and traceable supply to meet stringent regulatory documentation and process validation commitments.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice (GMP) for active pharmaceutical substance manufacturers
    • US FDA 21 CFR Part 211 for finished pharmaceuticals
    • EU Guidelines for Good Manufacturing Practice for medicinal products
    • Certificate of Suitability (CEP) for European Pharmacopoeia substances when applicable

    Typical usage ratio

    • Used from 0.5 to 1.5 equivalents per step depending on downstream coupling or derivatization reactions; adjusted based on target API structure

    Downstream process integration

    • Enters production in early to mid-stage multistep organic syntheses—after initial aromatic halogenation, before key amide or esterification transformations, typically under inert atmosphere and pharmaceutical-grade solvent systems

    Final product types

    • Pharmaceutical intermediates for anti-inflammatory or central nervous system drugs
    • Key substrates in the production of branded and generic medicinal actives

    3. Fine Chemical Development for Dyes and Pigments

    Colorant and pigment producers include this halogenated acid as a selective coupling agent in synthesis schemes for azo dyes, high-performance pigments, and specialty color additives. Its position and reactivity in the aromatic ring support the controlled introduction of functional groups that define tint, solubility, and dispersibility in competitive pigment formulations. Process control and analytical monitoring during batch or continuous manufacturing depend on consistent raw material quality, impacting the chromatic stability and regulatory profile of the pigment output.

    Industry compliance standards

    • EN 71-3:2019 requirements for heavy metals in colorants used in toys and children’s products
    • OEKO-TEX® Standard 100 for textile dyes and auxiliaries
    • ISO 9001:2015 for pigment and dye batch consistency
    • Registration, Evaluation, Authorisation and Restriction of Chemicals (REACH) for pigment use in EEA zone

    Typical usage ratio

    • Formulators typically add at 1.8–2.5 equivalents per coupling reaction to control pigment structure, adjusted based on desired chromophore and process stoichiometry

    Downstream process integration

    • Added at the diazotization or acylation stage of pigment molecule assembly, often under staged heating and pH monitoring to control reaction rate and product profile

    Final product types

    • Specialty azo dyes for industrial textiles and plastics
    • Organic pigments for coatings, plastics, and specialty ink markets

    4. Synthesis of Electronic and Liquid Crystal Materials

    Manufacturers in the advanced materials sector employ this specialty acid to engineer complex aromatic cores for use in high-performance electronic, OLED, and liquid crystal materials. Its unique halogenation pattern facilitates cross-coupling reactions critical in tailoring transport properties and electro-optic characteristics. Precise process design and consistent intermediate quality underpin success in these tech-driven, innovation-sensitive applications, where trace contaminant levels and consistent substitution are strictly monitored for downstream device reliability.

    Industry compliance standards

    • IEC 61249-2-21 for halogenated substances in electronic laminates
    • IPC-4101B for base materials in printed wiring boards
    • RoHS Directive 2011/65/EU for restriction of hazardous substances
    • ISO 14001:2015 for environmental management in electronic material supply chains

    Typical usage ratio

    • Introduced at 0.8–1.3 equivalents per cross-coupling, modified according to targeted molecular weight and electronic performance profiles

    Downstream process integration

    • Participates in Suzuki-Miyaura or Buchwald-Hartwig coupling steps, typically after initial core ring formation, under anhydrous and controlled-atmosphere conditions

    Final product types

    • Intermediates for high-performance liquid crystal compounds
    • Molecular building blocks for OLED and organic semiconductor layer manufacturing

    5. Manufacture of Specialty Polymers and Resins

    Producers of engineered polymers incorporate this compound as a functional monomer or chain-modifying intermediate in selected specialty resin systems. The dual halogenation pattern offers sites for subsequent polymer-anchoring or molecular branching, impacting mechanical and chemical resistance in the final resin. The integration of this material requires precise stoichiometry and temperature regulation throughout the polymerization cycle, as impurity carryover or inconsistent feed ratios can alter downstream product performance in coatings or composite markets.

    Industry compliance standards

    • ASTM D2566 for chemical resistance specification in specialty resins
    • ISO 9001:2015 for quality management in polymer synthesis
    • UL 94 flammability certification for end-use plastics
    • REACH compliance for controlled substances in the EU polymer supply chain

    Typical usage ratio

    • Dosage set at 0.5–2.0 parts per hundred parts resin (phr) depending on target crosslink density and performance specification; level selected by downstream engineering requirement

    Downstream process integration

    • Charged during the pre-polymerization phase or as a co-monomer before final curing and blending steps, with in-process QC for monomer conversion

    Final product types

    • High-durability functional coatings for industrial machinery
    • Engineered composite resins for mobility components and specialty construction segments
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    Certification & Compliance
    More Introduction

    2-Bromo-5-Chlorobenzoic Acid: Supporting Chemical Innovation from the Factory Floor

    Real Production Meets Real-World Needs

    Producing 2-Bromo-5-Chlorobenzoic Acid starts with reliable access to pure feedstocks, a controlled reactor environment, and an active team that builds experience with every batch. This compound, C7H4BrClO2, stands out in the family of halogenated benzoic acids for its versatility in downstream synthesis, particularly in pharmaceuticals and agrochemicals. Its molecular weight, melting range, and purity speak only part of the story—smooth processability, manageable handling, and consistent delivery shape its practical value to chemists and formulators.

    As the actual manufacturer, every adjustment made in our process comes from hours with actual equipment—reactor jacket temperature, agitation speed, and feed timing all contribute to final impurity profiles and ease of isolation. The finished material presents as an off-white to light tan powder, stable enough for transit and storage, yet reactive enough for confident onward synthesis. Over the years, we have learned that even a fraction below target purity can set back experienced R&D teams or scale-up chemists, so strict sampling and real-time analytics anchor our quality standards.

    Role in Synthesis and Diverse Applications

    Lab benches and pilot plants count on reliable intermediates when designing evolving chemistries. 2-Bromo-5-Chlorobenzoic Acid helps provide that foundation, especially for custom syntheses involving Suzuki, Sonogashira, or Buchwald amination protocols. Organo-halide functions, positioned at the 2- and 5- sites, enable controlled substitution. This opens up preparation of complex APIs, as well as high-value crop protection actives. On factory tours, we hear from synthesis teams who depend on clean halogen substitution and carboxyl reactivity—without interference from excess residual reagents or byproducts.

    Feedback from formulation customers guides our investment in packaging options. Some need small lots for screening; others request bulk fiber drums with moisture barriers to keep their blending rooms operating efficiently. By remaining close to our customer’s evolving requirements, we design material flows that keep the supply chain steady through scaling up or unexpected pivots.

    Learning through Consistency and Traceability

    It’s easy to underestimate the challenges hidden in making a molecule over and over again at industrial scale. Raw material traceability, a focus on minimizing labile halide impurities, and accurate record-keeping all make a difference. It only takes one batch of time-delayed shipments or an impurity spike traced to a supplier’s off-spec solvent to shake confidence. Our equipment operators and QC analysts understand the impact—even minor deviations in pH during work-up can cascade downstream.

    We circulate regular updates and host technical exchanges with development chemists who work with our product. Data from our LC, GC, and KF moisture analysis give reassurance regarding the actual material going into their reactors. These conversations push us to keep balancing throughput with detailed in-process controls. Our entire team believes transparency and an always-learning mindset help customers maintain their competitive edge.

    How 2-Bromo-5-Chlorobenzoic Acid Differs from Related Compounds

    Halogenated benzoic acids vary greatly depending on substitution pattern and manufacturing method. In daily production, we see how movement from a para- to an ortho- halogen, or exchanging bromine with iodine or fluorine, changes not just reactivity but also isolation and purification needs. 2-Bromo-5-Chlorobenzoic Acid carries bromine and chlorine at distinct positions, opening two synthetic “handles” for palladium-catalyzed cross-coupling or nucleophilic substitution strategies unavailable with single-halide analogues.

    Manufacturers and research chemists sometimes consider using either the 2,4- or 4,5-bromo/chloro isomers. The 2,5-arrangement delivers unique steric and electronic properties, which make certain substitution reactions more feasible. We have learned through direct troubleshooting that this difference affects solubility profiles, byproduct formation, and overall yield in multistep syntheses. Choosing the right isomer can reduce workup time, lower costs in purification, and sometimes help avoid difficult protection-deprotection cycles.

    Direct feedback teaches us not to overlook secondary processing factors. For example, blends of 2-Bromo-5-Chlorobenzoic Acid with related acids behave differently during filtration, drying, and micronization. Packing density and flow rates through charge-handling equipment can shift depending on lattice structure and particle morphology—a detail that’s only obvious through repeated hands-on processing. Such differences play into downstream process reliability and the ability of end-users to maintain their own product quality specifications.

    Supporting Product Development and Regulatory Needs

    Working in a regulated industry means tracking changing requirements from health and safety agencies worldwide. 2-Bromo-5-Chlorobenzoic Acid is judged not just by its certificate of analysis but also by proof of GMP batch records, full traceability on all incoming and outgoing materials, and proper documentation for customs and technical review. Our regulatory team stays current on country-by-country import documentation, while operations teams manage sufficient batch size flexibility to avoid supply interruptions. We see requests for technical packages to support pharmaceutical and agricultural submissions. Submission-ready dossiers go far beyond a purity statement. They mean long-term stability, proper retention of retain samples, and source documentation through the full chain of custody. Fulfilling such requests requires real data, maintained over several years, and a robust digital record system.

    In one recent collaboration, a partner required specification narrowing around trace metal levels not historically monitored for this compound. We adapted our process parameters, built a new sampling loop for ICP-MS monitoring, and documented the changes so every partner could sign off. This led to a more robust control plan for future batches, reducing the learning curve for new projects.

    Pain Points in Manufacturing and Quality Assurance

    Running a chemical plant brings moments of both routine stability and unexpected challenge. It’s one thing to keep product on-spec; it’s another to respond in real time to a power cut, unexpected solvent phase or a clogged filter press. 2-Bromo-5-Chlorobenzoic Acid is robust enough that recovery from minor issues is possible, but years of experience prove the value of well-trained technicians, automated alarm systems, and a healthy stock of critical spare parts.

    Maintaining consistency starts before the first charge into the reactor. We work with suppliers who share analytical data before shipment, and verify identity and purity on-site. Technical teams cross-train on both process control and analytical methods. If a lot fails a key test—chloro content, moisture assay, or visual color—the lot never leaves our warehouse. By maintaining strong QA discipline, batch records, and a culture that does not cut corners, the value of our product extends to our customer’s end-product quality.

    Process improvement remains an ongoing effort. Early batches revealed that small impurities could carry over into coupling reactions and trigger subtle downstream issues. It took repeated focused process trials to reach a steady-state with less than 0.2% total impurities—something that documentation alone cannot substitute. We invested in closed-system charging to minimize atmospheric moisture ingress, and installed inline analytics to confirm endpoint completion before filtration.

    Designing for Responsible Manufacturing and Sustainability

    Sustainability commitments now carry weight not just for end-brands but all the way through the chemical supply chain. Generating 2-Bromo-5-Chlorobenzoic Acid means planning for energy efficiency, solvent reuse, and responsible waste handling. As a manufacturer, we actively track our input materials and work with recovery partners to minimize byproduct sent for final disposal. Equipment upgrades address solvent vapor containment and water recycling.

    We all face scrutiny around environmental performance. Responding to that, our plant targets water and solvent usage rates, investing in process intensification to reduce batch times and improve yield. In some cases, optimizing crystal size and morphology has allowed us to use less solvent during wash and recovery steps, with environmental and economic benefits. End-users ask about lifecycle impacts, and we welcome direct site visits to show concrete progress rather than abstract pledges.

    Building Collaboration for Technical and Commercial Success

    Decision-makers and bench chemists alike want more than just high-grade material. They need a partner ready to listen to specific technical issues, investigate deviations, and collaborate on custom solutions. Our support teams spend time tracing user project requirements, from high-throughput screening to pilot plant trials and eventual commercial launch scale. Early troubleshooting—whether it’s related to filtration rate, secondary color, or off-odors—builds trust in the long term.

    Our position as manufacturer lets us respond directly to customer root-cause inquiries. Sometimes, an end-user will encounter unexpected side reactions traced to adventitious metal contamination—a challenge best solved through direct engagement between technical experts. Our flexibility in addressing process or specification adjustments allows chemists to focus on innovation, not workarounds.

    We track leading research and development trends, and openly share technical challenges faced along the way, including lessons learned about solvent compatibility, cleaning validation, and packaging innovation. The openness to joint problem-solving advances discovery and new product launches across the market. As production volumes climb, we further align batch sizes and shipment frequency to minimize lead times and guarantee on-shelf reliability.

    Looking Forward: Technical Development and Market Expectations

    Our team treats every inquiry as an opportunity to revisit technical best practices. We notice demand shifting—sometimes from pharmaceutical intermediates toward next-generation herbicide building blocks. This trend invites tighter control of selectivity, and sometimes prompts reformulation of reagents or sourcing alternate utilities. R&D and scale-up colleagues appreciate knowing that new specification targets aren’t risks—they are catalysts for continued investment in process intensification, digital data capture, and even greener synthesis protocols.

    2-Bromo-5-Chlorobenzoic Acid, through direct hands-on experience, has shown itself to be more than a commodity. By keeping focus on practical processing, predictable performance, and transparency in collaboration, we support users building new discoveries from a reliable foundation. From every batch produced, the commitment to quality, safety, and process integrity remains the hallmark of our work as a manufacturer.

    Optimizing Operations for the Next Generation

    Production is never a static goal. It’s an ongoing process, joining legacy know-how with the current best in analytics, automation, and team learning. Operators and lab chemists swap lessons learned about filter clogging, raw material drift, and the best methods for minimizing sample loss. Plant managers analyze year-over-year yield improvement and energy use right alongside customer support trends.

    Long-term customer partnerships helped us develop new packaging materials better suited for dry climates or extended overseas shipments. Continuous improvement isn’t just a slogan—our customers notice real differences in powder flow and shelf life. Requests for documentation drive regular review of our batch records, getting ahead of regulatory changes and proof-building audits.

    Open dialogue with users, backed by transparent data and shared results, keeps us on track even as product applications diversify. New requests become the launchpad for targeted technical upgrades. End-use expectations keep pushing the limits of old assumptions about what 2-Bromo-5-Chlorobenzoic Acid can deliver. On both lab and plant floor—adaptability, teamwork, and shared learning remain central to tangible progress.