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3-Bromo-4-Fluorotoluene

    • Product Name 3-Bromo-4-Fluorotoluene
    • Alias 3-Bromo-4-fluoro-1-methylbenzene
    • Einecs 851-464-5
    • 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

    914809

    Cas Number 1422-24-3
    Molecular Formula C7H6BrF
    Molecular Weight 189.03 g/mol
    Iupac Name 1-bromo-2-fluoro-4-methylbenzene
    Appearance Colorless to pale yellow liquid
    Boiling Point 180-182 °C
    Melting Point -6 °C
    Density 1.454 g/cm3
    Refractive Index 1.535
    Flash Point 68 °C
    Solubility In Water Insoluble
    Synonyms 3-Bromo-4-fluorotoluene; 1-Bromo-2-fluoro-4-methylbenzene
    Smiles CC1=CC(=C(C=C1)Br)F

    As an accredited 3-Bromo-4-Fluorotoluene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle, 100g, sealed with screw cap. White label displays "3-Bromo-4-Fluorotoluene," CAS number, hazard symbols, and handling instructions.
    Shipping 3-Bromo-4-Fluorotoluene is shipped in tightly sealed containers, compliant with hazardous material regulations. It should be packaged to prevent leaks or contamination, stored at room temperature, and protected from light and moisture. Appropriate labeling and documentation are required, following international and local transport guidelines for chemical substances.
    Storage Store 3-Bromo-4-Fluorotoluene in a tightly closed container in a cool, dry, well-ventilated area away from incompatible substances such as strong oxidizers. Protect from moisture, direct sunlight, and sources of ignition. Use appropriate chemical-resistant containers and clearly label them. Ensure storage area is equipped with spill containment and complies with all regulatory safety requirements.
    Application of 3-Bromo-4-Fluorotoluene

    Applications of 3-Bromo-4-Fluorotoluene in Industrial Manufacturing

    As an experienced bulk manufacturer of 3-Bromo-4-Fluorotoluene, we supply this high-purity aromatic intermediate to downstream partners across several specialized industrial fields. Our production facility and QC process align with demanding sector standards, ensuring reliable performance in each advanced application pathway detailed below.

    1. Pharmaceutical Intermediates for API Synthesis

    Pharmaceutical companies use 3-Bromo-4-Fluorotoluene as a core halogenated building block when synthesizing complex APIs, particularly for developing anti-infective and central nervous system drugs. Its selective reactivity allows precise functional group transformations in multistep organic routes, providing scaffolds for final API formation.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • US FDA 21 CFR Part 210/211 cGMP regulations
    • European Pharmacopoeia (Ph. Eur.) and United States Pharmacopeia (USP) input quality requirements for intermediates
    • EDQM Certification of Suitability (CEP) where applicable

    Typical usage ratio

    • 1.5–8 mol% per target API batch, based on the required synthetic step and desired theoretical yield; actual dosage calibrated per process route and impurity control strategy.

    Downstream process integration

    • Engages at the halogen-exchange, Suzuki coupling, or nucleophilic aromatic substitution stage within the multi-step API synthetic sequence.

    Final product types

    • Finished APIs such as fluoro-benzyl-based anti-infectives
    • CNS drug intermediates formed by further functionalization
    • Key intermediates for antineoplastic (oncology) compounds

    2. Agrochemical Synthesis (Herbicide and Fungicide Production)

    Major agrochemical manufacturers implement this compound in the custom synthesis of halogenated intermediates for selective herbicides and fungicidal actives. Its electronic properties facilitate ring transformation during scale-up, supporting synthesis of crop protection molecules with targeted efficacy and crop safety profiles.

    Industry compliance standards

    • FAO/WHO Specification and Evaluations for Agricultural Pesticides
    • REACH (EC) No 1907/2006 registration compliance
    • ISO 9001:2015 for chemical process quality management
    • OECD Principles of Good Laboratory Practice (GLP) for residue studies

    Typical usage ratio

    • 2–6 wt% relative to the main synthetic precursor; adjusted according to target actives, reaction kinetics, and conversion efficiency during chlorination or fluorination steps.

    Downstream process integration

    • Used as a halogen source or coupling component during the synthesis of benzyl-based pesticide cores; enters after base-catalyzed methylation or fluorination stage.

    Final product types

    • Commercial herbicides for cereals and broadleaf weed control
    • Systemic fungicides buffered for crop protection
    • Patented agro-intermediates for seed treatment formulations

    3. Specialty Electronic Chemicals Manufacturing

    Electronic chemicals producers adopt 3-Bromo-4-Fluorotoluene for its ability to introduce precise halogen functionalization in advanced organic semiconductors. This enables material scientists to tune charge mobility, solubility, and glass transition properties in specialty materials for display and sensor technologies.

    Industry compliance standards

    • IPC-5704 Cleanliness Requirements for Unpopulated Electronic Components
    • IEC 60747 (Semiconductor Devices) - purity and contamination limits
    • RoHS Directive (EU) 2011/65/EU restriction of hazardous substances
    • ISO 14001 Environmental Management for chemical manufacturers

    Typical usage ratio

    • 3–12 mol% within the organic precursor blend, based on desired polymeric or low-molecular-weight target material characteristics; dosage optimized by pilot polymerization screening.

    Downstream process integration

    • Introduced at the monomer-stage aryl coupling step or post-functionalization during OLED or photovoltaic material synthesis.

    Final product types

    • Organic light-emitting diode (OLED) emitter materials for display panels
    • Photoresists and dielectric layers used in microelectronics
    • Custom sensitizers for chemical sensor elements

    4. Fine Chemical Synthesis for Dye and Pigment Intermediates

    Dye and pigment companies incorporate this aromatic intermediate at defined points for the synthesis of complex colorant precursors. Its halogen substitution pattern allows chemists to design specialty dyes with enhanced color fastness and customized absorption spectra, which are valuable in textile and printing ink formulations.

    Industry compliance standards

    • Oeko-Tex Standard 100 – chemical residue limits in textile dyes
    • ZDHC MRSL v3.1 Manufacturing Restricted Substances List
    • APEO and heavy-metal free process compliance
    • ISO 9001 and ISO 14001 for manufacturing and environmental control standards

    Typical usage ratio

    • 0.5–3 wt%, based on the number of halogenation stages and target chromophore design; formula adjusted by desired tint index and lightfastness requirements.

    Downstream process integration

    • Employed in the initial or intermediate condensation reaction that establishes the dye’s core aromatic system; can also be used at bromination or fluorination functionalization points.

    Final product types

    • Disperse and acid dyes used in polyester and nylon textiles
    • Color pigments for lithographic and digital printing inks
    • Fluorescent colorants for specialty coatings and markers
    Free Quote

    Competitive 3-Bromo-4-Fluorotoluene prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Introducing 3-Bromo-4-Fluorotoluene: Practical Know-How from the Manufacturer’s Floor

    Grounded in Practical Synthesis

    Daily life in a chemical plant brings us closer to the fine details behind each product. In the case of 3-Bromo-4-Fluorotoluene, every step involved in its production shapes the way customers experience its value. Our process begins with carefully selected raw materials, handled by trained operators who know by sight and smell when something’s off. Years of experience show that attention to detail at each synthesis step pays off later, both in yield and consistency. Nailing down the optimal balance in halogen exchange reactions isn’t something covered fully in textbooks. Each batch we manufacture tells the story of thousands of man-hours and hard-won adjustments—sometimes by the gram, sometimes by the drop.

    From Raw Materials to Finished Product: Behind the Scenes

    Turning simple toluene derivatives into precisely substituted products isn’t just about running reactions and waiting for the output. The facility that produces 3-Bromo-4-Fluorotoluene needs to run like a concert, with timing and temperature control playing just as big a role as the right choice of solvent or catalyst. Every run carries its complexities—one day, contaminants might creep in if a valve seal wears out; another day, a subtle temperature shift might push selectivity off target. Technicians here monitor every batch, from moisture content in solvents to the appearance and texture of the isolated crystals. Deviations get flagged fast, narrowing the risk of impurity downstream.

    Sourcing high-purity bromine and specialized fluorinating agents comes with a new set of challenges each year. Regulatory shifts in market supply and periodic shortages require us to keep well-honed negotiating skills and maintain solid supplier relationships. This commitment provides confidence during audits and builds the trust of long-term clients who depend on reliability, not just pretty words on a sales sheet.

    Knowing the Product: Not Just a CAS Number

    3-Bromo-4-Fluorotoluene carries the structure C7H6BrF. Beyond numbers and formulas, its value lies in how it interacts with real-world chemistry. A chemist who looks at this molecule doesn’t just see a string of atoms; they see the starting point for more ambitious targets. It’s found in the synthetic pathways for pharmaceuticals, agrochemicals, and specialty polymers. Downstream partners appreciate a product that reacts as expected batch after batch—no surprises, no inconsistencies. Each lot must clear not only standard GC and NMR purity checks but also more advanced analytical tests demanded by regulatory inspectors and process development chemists.

    The melting point tends to fall around 20-23°C. Visual inspection in ambient lab conditions distinguishes it from isomeric or similarly named cousins that either refuse to solidify or deliver off-white to pale yellow hues when impurities linger. Our own preference is to release only colorless to near-colorless batches, showing clean purification and respect for the next step our customers will take.

    Practical Applications: Boots-on-the-Ground Chemistry

    Getting real-world feedback from users keeps us sharp. Most 3-Bromo-4-Fluorotoluene ends up as an intermediate in synthesis work. Medicinal chemists look for clean arylbromides when forming biaryl bonds—in Suzuki and related coupling reactions, this derivative holds up well against competitive nucleophilic substitution, providing strong regioselectivity. The presence of fluorine on the ring changes both the electronic effect and steric profile compared to non-fluorinated analogs, allowing for more efficient downstream transformation into complex drug scaffolds. Agrochemical researchers exploit this for making new herbicides or fungicides, where tiny tweaks in the aromatic ring shift biological activity.

    In the hands of polymer scientists, the bromo and fluoro substituents open doors for further functionalization, leading to specialty materials with improved solubility or resistance to environmental breakdown. As the manufacturer, we see the recurring trend: partners come back for additional tons once their pilot studies confirm that reaction profiles remain stable and product stays easy to handle.

    Meet the Differences: 3-Bromo-4-Fluorotoluene Versus Similar Products

    It’s easy to get lost among names like 2-Bromo-5-Fluorotoluene or 4-Chloro-3-Fluorotoluene. Years of filling custom synthesis orders have reinforced the importance of knowing the nitty gritty. Small changes on the ring change everything from boiling point to reactivity profile. With the methyl at the para and bromo at the meta position (relative to the fluorine), this molecule delivers unique reactivity compared to its isomers. For instance, someone looking for a straight swap of a bromine for a chlorine often comes away disappointed—electronic effects, solubility, and coupling yields all take a hit.

    The physical profile also stands out. The 3-Bromo-4-Fluorotoluene we provide meets a narrow melting range so users can predict storage stability through changing temperatures. Some competitors struggle to hit consistent melting points or leave trace halogenated byproducts, complicating downstream processing. Our team devotes time to batch testing, aiming for predictable handling—a big benefit when automation and scaling become priorities in a customer’s facility.

    Strict Attention in Purification

    Solvent traces, unreacted starting material, and side-products like dibromo or difluoro derivatives can spell disaster for sensitive applications. Our purification workflow combines tried-and-true distillation with fine-tuned chromatographic separation. Operators develop an intuition for recognizing impurity patterns in the waste streams and final product, sometimes before instruments catch the full picture. Most of us have stories about units shutting down in the middle of a run, or about a GC/MS result upending what looked like a perfect column fraction. Each cycle brings a bit more experience; over time, that know-how makes the lab run with fewer headaches.

    Every outgoing batch runs the gauntlet of checks—moisture by Karl Fischer titration, halide quantification, and robust stress-test heating to flag decomposition in storage. This methodical approach arises directly from customer feedback. One partner in the pharmaceutical industry flagged an earlier attempt by another producer—solvent residues interfered with their catalyst system, leading to failed scale-up. Learning from these problems, we keep our standards strict, enforcing inspection at every handoff between teams.

    Handling, Storage, and Shipment: The Less Glamorous Reality

    A manufacturing facility has to keep worker safety and product integrity at the forefront. While 3-Bromo-4-Fluorotoluene isn’t among the most hazardous substances, familiarity with halogenated aromatics means gloves and proper ventilation are standard operating procedure. Packing the material—usually as a solid or sometimes as a low-melting liquid—follows protocols that evolved over decades. Small losses from evaporation matter when supplying multi-ton orders; watching a drum’s headspace for condensation prevents tiny but costly mishaps.

    Shipping takes as much care as synthesis. Each drum or bottle heads out per strict ADR and IMDG regulations, but that’s only the framework. Experience shows, small things—like the type of gasket on a seal or checking for announced logistics strikes—matter just as much. We routinely run test shipments using older containers, aiming to see where weak spots show up. These efforts minimize transit risk and make sure a customer in a remote region gets the same material quality as someone down the road.

    Process Optimization and Plant Efficiency

    Running a plant that produces 3-Bromo-4-Fluorotoluene isn’t about hitting “go” and waiting. Our managers work side-by-side with control room teams, tracking yields and spotting bottlenecks in raw material charging and distillation. Raw data counts for less than the insight of operators who have fixed a vacuum leak at 2 a.m. or improvised a workaround when a sensor malfunctioned mid-batch. We tweak cycle times, swap out solvents where extra purity is needed, and invest in maintenance for reactors that have seen thousands of cycles.

    Changing market demand pushes us to reevaluate procedures more often than quarterly reports suggest. Pilots in continuous flow chemistry and modular reactor upgrades test new avenues for productivity, but nothing beats the regular huddles to discuss real-world results. If a batch falls short of full conversion, we don’t waste time assigning blame; we dig in to set it right. Chemical manufacturing rewards teams that don't get complacent.

    We stick to processes that deliver consistent particle size and pourability. If a customer scales up and needs bagged product instead of drums, we retool packaging on the fly. Customer feedback loops directly into new SOP drafts; one season’s suggestion often becomes the next year’s improvement.

    Regulatory and Quality Commitment

    Auditors walk through our plant regularly. Full compliance isn’t optional—it’s table stakes for survival. Each change in regulatory frameworks lands on our desk, whether it’s an upcoming REACH amendment or evolving global transport codes. We send supply chain experts to industry workshops to make sure no rule takes us by surprise.

    Quality certification affects every step—starting material inspection, documentation of batch records, production risk assessments. The daily effort to keep certificates up to date reflects more than simple checklists; it speaks to company culture. Inconsistent documentation exposes everyone to risk, so we push strong internal training and double checks. Revisiting failed batches informs our preventive action plans, not just for 3-Bromo-4-Fluorotoluene but for every product line.

    Supporting Problem Solving Downstream

    Most of our customers are chemists who appreciate practical support. Requests range from process troubleshooting to method development for new analytical techniques. Experience has shown that a call about a stubborn side reaction often leads to adjustments in purification or alternative grade recommendations. If a user struggles with filtration or solubility in larger vessels, we rerun lab tests to reproduce the issue and shape a new batch around real customer feedback.

    Many years ago, a manufacturer working on a new pesticide ran into unexpected decomposition under light exposure. Our technical team reviewed the degradation pathway, suggested tweaks to handling and packaging, and supplied a darker-colored container—solving the problem and saving months of rework. Customized solutions didn’t just deepen that relationship; they added insight that now benefits other clients in pharmaceuticals and specialty chemicals. Customers trust our advice because it stems from firsthand troubleshooting, not canned responses.

    Market Dynamics: Real-World Pressures and Responses

    Rarely does a year pass without shifts in feedstock pricing or new players entering the market. We track global supply chains daily—not by analytics dashboards alone, but by live calls with suppliers and logistics partners. Previous years saw sudden bromine shortages, forcing everyone to scramble, but careful inventory management prevented production delays on our end. Prices move; orders get renegotiated quicker than any projection model predicts. Our team takes a grounded approach and avoids overpromising; it pays to understate and then deliver on time.

    Experience with past shortages and regulatory changes reminds us to use buffer inventory wisely. We continue to build local stock for strategic clients, favoring flexible packaging so smaller buyers don’t get left behind as the market ebbs and flows. Long-term partners benefit by not worrying about elevator-price spikes derailing their projects. Uncertainty is part of business, but expecting the unexpected smooths out the worst volatility.

    Sustainability and Continuous Improvement

    A chemical manufacturer’s work keeps evolving. Environmental expectations now play a bigger role. Our plant invests in waste minimization—recovering solvents and reducing off-gassing wherever possible. Closed handling systems and in-line monitoring tools catch leaks before they become compliance headaches. Worker safety committees continue to suggest practical improvements, reminding us that the best ideas often come from the shop floor instead of corner offices.

    Waste streams get analyzed continually; where purification steps generate significant by-products, engineering teams look for opportunities to reuse materials or improve efficiency. Savings in solvent use, energy expenditure, and storage are passed directly to product pricing—not framed as charity, but as smart operating practice. Reducing environmental impact isn’t a marketing pitch for us—it’s built into plant economics.

    Learning from Setbacks and Looking Ahead

    The chemical industry doesn’t hand out easy wins. Machinery breaks, batches fail, and regulations stack up faster than most can keep track. Nobody ships a perfect product every time, but we put failures under the microscope, identifying root causes and feeding those lessons back into real changes. We once had a persistent batch impurity traced to packaging glue—not an obvious culprit, but the sort of snag that only becomes clear after extensive cross-team analysis.

    As new downstream targets emerge—in organic LEDs, specialty coatings, or tailored bioactive compounds—the demand for innovative starting materials like 3-Bromo-4-Fluorotoluene grows. Knowledge from past missteps, plus a constant drive for improvement, lets us stay competitive and keep quality where it should be: high and predictable. What excites us isn’t just filling another drum, but seeing what customers build next with the material we’ve had a hand in refining and delivering.

    Trust Earned on the Ground

    Our relationship with 3-Bromo-4-Fluorotoluene begins at the reactor and continues in every test tube and reactor our customers use it in around the world. Each bottle that leaves our facility carries the imprint of real hands meeting real challenges. We measure our reputation not in marketing brochures, but in repeated business and the confidence expressed by users who count on our product to do its job right. Seasoned chemists know the difference—once they find a supplier who stands by consistency and quality, they stick with them through thick and thin.

    The success of every chemical we manufacture, including 3-Bromo-4-Fluorotoluene, reflects a combination of technical skill, practical experience, and genuine commitment to service. For us, that means responding quickly to questions, shipping on schedule, and always striving to solve the next challenge—on the plant floor and in the hands of our customers. That’s how we’ve built a specialty chemicals lineup grounded in trust and performance.