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HS Code |
445163 |
| Product Name | 2-Bromo-5-Fluorobenzoyl Chloride |
| Cas Number | 85118-36-5 |
| Molecular Formula | C7H3BrClFO |
| Molecular Weight | 237.46 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Purity | Typically >98% |
| Density | Approximately 1.7 g/cm³ |
| Solubility | Reacts with water, soluble in organic solvents like dichloromethane |
| Storage Conditions | Store in a cool, dry place, tightly sealed, under inert atmosphere |
| Synonyms | 2-Bromo-5-fluorobenzoyl chloride; Benzoyl chloride, 2-bromo-5-fluoro- |
As an accredited 2-Bromo-5-Fluorobenzoyl Chloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The 2-Bromo-5-Fluorobenzoyl Chloride is supplied in a 25g amber glass bottle, tightly sealed with a screw cap and labeled for safety. |
| Shipping | 2-Bromo-5-Fluorobenzoyl Chloride is shipped in tightly sealed, chemical-resistant containers under cool, dry conditions to prevent moisture exposure. It is labeled as corrosive and hazardous, requiring proper handling and transportation in accordance with applicable safety and regulatory guidelines. Shipping generally complies with ADR, IATA, and IMDG regulations for hazardous materials. |
| Storage | 2-Bromo-5-Fluorobenzoyl Chloride should be stored in a tightly sealed container under a dry, inert atmosphere, such as nitrogen or argon, to prevent moisture and air exposure. Store in a cool, well-ventilated area, away from direct sunlight, heat sources, and incompatible substances, especially water, alcohols, and strong bases, to minimize risk of hydrolysis or hazardous reactions. |
Applications of 2-Bromo-5-Fluorobenzoyl Chloride in Industrial Manufacturing2-Bromo-5-Fluorobenzoyl Chloride serves as a critical halogenated intermediate in advanced organic synthesis. As the original manufacturer, we support direct integration of this specialty reagent in multiple high-value downstream sectors, focusing on compliance, controlled reaction conditions, and traceable material supply. 1. Pharmaceutical Intermediate Synthesis (API)This compound functions as a key building block for manufacturing advanced pharmaceutical intermediates, especially fluorinated and brominated benzamide and benzothiazole derivatives. Research-driven pharmaceutical producers deploy it in high-purity, low-metal processes for small-molecule drugs, especially those targeting oncology, antifungal, and central nervous system indications. Purity profiles (>99%) and control of residual solvents are strictly managed at every step, with robust in-process QC protocols. Its reactivity ensures efficient acylation in amide bond-forming processes, with further derivatization yielding patented active pharmaceutical ingredients (APIs). Industry compliance standards
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2. Agrochemical Synthesis (Herbicide and Fungicide Actives)Major crop protection manufacturers use 2-Bromo-5-Fluorobenzoyl Chloride as a halogenated precursor for agrochemical active ingredient development, particularly in triazole and oxazole classes. Its functional group profile is vital for introducing site-specific halogens, increasing bioactivity and environmental stability in final actives. Use follows strict traceability and environmental risk management at every batch and scale-up, with secondary containment for handling chlorinated organics. Industry compliance standards
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3. Specialty Dye and Pigment ManufacturingLeading dye and pigment manufacturers employ this intermediate for synthesizing high-performance fluorinated and brominated azo dyes. It promotes strong electron-withdrawing properties, delivering specialized colorfastness and resistance for textile, leather, and technical fiber applications. Production lines use automated feeding and closed mixing systems to ensure safety and traceability, integrating the intermediate directly into the diazotization and coupling sections of dye synthesis. Industry compliance standards
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4. Electronic Chemicals (Advanced Material Synthesis)Producers in the semiconductor and display industries utilize this compound during synthesis of high-purity functional materials, such as organic semiconductors and photoresists. Its halogenated structure provides tunable reactivity for fine patterning and charge transport properties in microelectronics. End users impose ultra-low metal and particle content requirements, monitored by ICP-MS and LC-MS, ensuring the intermediate’s suitability for sensitive device fabrication flows. Industry compliance standards
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5. Fine Chemical Custom Synthesis (Contract Manufacturing Sector)CMOs (Contract Manufacturing Organizations) and custom synthesis labs specify this intermediate for multistage syntheses, notably in high-complexity aromatic system assembly. Stability and controlled reactivity of the compound allow for tailored coupling and derivatization sequences, supporting timelines in pilot, kilo lab, and full-scale operations. Documentation includes full traceability, impurity profiling, and batch consistency reports for regulated and non-regulated fine chemical markets. Industry compliance standards
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Every so often, a chemical finds a unique spot in the production landscape, not because it's the best-known name but because it solves specific, tangible problems no simple substitute can address. 2-Bromo-5-Fluorobenzoyl Chloride stands out in our plant for precisely this reason. As a manufacturer who's watched this material move through reaction vessels, crystallizers, and drums for years, I’ve learned its quirks and its strengths from direct hands-on work.
Structurally, this compound carries the formula C7H3BrClFO, which already tells a story. This unique assembly of fluorine, bromine, and acyl chloride groups creates a molecule that behaves differently from the more common benzoyl chloride derivatives. In our experience, slight changes in molecular makeup often lead to significant shifts in reactivity, solubility, storage sensitivity, and the types of end-uses in which a product excels. The positioning of bromine and fluorine on the aromatic ring isn't just a tweak for the sake of novelty—it has been demanded in targeted organic synthesis, especially when searching for greater molecular precision in pharmaceuticals, agrochemicals, and advanced material fields.
In daily operations, nothing proves more important than consistency. We measure more than purity—we want particle size to meet the same range, water content to sit within our set limits, color clarity to satisfy even the sharpest eyes in QA. Our typical batch analysis for 2-Bromo-5-Fluorobenzoyl Chloride shows a purity above 98%, with minimal formation of hydrolyzed byproducts. This comes from diligent moisture control and tight handling—from raw material prep to closed-system packaging before shipment. Our teams understand the volatility of acyl chlorides, so every drum gets sealed up fresh from the reactor and is shipped without unnecessary delays.
Longevity in storage has posed a challenge in the industry due to the reactive nature of the acyl chloride group, which scoffs at humidity and ambient moisture. Through the years, we have found that nitrogen blanketing during filling and storage, combined with reinforced packaging, extends viable shelf life and ensures that downstream users don't open barrels to find degraded material. Keeping our own facility clean and well-ventilated also plays a role in safety—chloride vapors are not to be taken lightly, and our experience with careful transfer methods reduces risks for both product and people.
On our production floor, the value of 2-Bromo-5-Fluorobenzoyl Chloride isn't only tied to its purity, but its performance in subsequent reactions. Clients often direct this material into the creation of complex benzamide derivatives, where both the bromine and fluorine influence key reaction steps. We've seen it open doors for synthesizing intermediates that no mono-substituted benzoyl chloride could provide. In cross-coupling chemistry, it offers reactive handles not easily replicated by its siblings. Medicinal chemists count on that fluoro-bromo pattern to tune metabolism rates or enhance receptor binding in their novel compounds.
It's not just about pharmaceutical research. The impact stretches into agrochemical development, where specific halogen patterns make all the difference in a molecule’s biological activity or resistance to environmental degradation. A halogenated benzoyl chloride like ours becomes the starting line for several rounds of structural optimization, and we've watched crop science companies come back season after season as their targets evolve and regulations shift.
Safety talk isn’t armchair theory here—it’s necessity born from experience. Any staff member on our team learns quickly that 2-Bromo-5-Fluorobenzoyl Chloride needs respect. The fumes can irritate, so we rely on fume hoods and full-face protection when dispensing. Our packaging decisions—the use of amber-glass or lined metal drums—come straight from our own hard-learned lessons, balancing reactivity with the need to ship to customers across oceans and deserts without incident. Regular training on acyl chloride chemistry isn't just a requirement; it keeps everyone alert to best practices and new process tweaks.
Waste treatment is another arena where no short cuts can be taken. Acidic chlorinated streams require thorough neutralization, and our plant’s wastewater team keeps both local regulators and our internal environmental commitments satisfied. We’ve implemented scrubbing systems that capture hydrochloric gas before it ever leaves our production block, matching ongoing requirements for emissions under tightening regulatory regimes.
Some products can be traded like sugar or flour—interchangeable on the supply sheet. Our 2-Bromo-5-Fluorobenzoyl Chloride resists such treatment. It has a place in the hands of those who demand it for a reason: precise substitution patterns aren't “one-size-fits-all” for synthetic chemistry. A seasoned buyer will know the pain of swapping in another acyl chloride derivative and finding whole development timelines thrown off by unexpected side reactions or drops in final product yield.
Our plant produces this particular model in volumes that meet request, not on generic mass. Small changes in the process—longer or shorter residence time in the chlorination step, tweaks to solvent ratios, upgraded distillation column packing—come from listening to what customers actually report from their own benches and reactors. We don’t tweak process steps because the textbooks say it’s possible: we do it because there’s a persistent push from medicinal chemists, process engineers, and application scientists who actually run the reactions with our material.
Sometimes a side-by-side comparison tells the story. Traditional benzoyl chloride offers generality for simple acylation, but anyone attempting more intricate synthetic routes soon hits its limitations—especially in developing intermediates with unique physicochemical or biological performance. Chloride groups, when placed at precise positions on the aromatic ring, change both the reactivity and the downstream possibilities.
2-Bromo-5-Fluorobenzoyl Chloride doesn't behave like para-substituted analogs or plain mono-halogenated versions. Double substitution, especially with bromine and fluorine, creates two robust points of leverage for late-stage functionalization or cross-coupling. This attribute becomes invaluable in constructing complex molecules, such as those required for fine-tuned receptor affinities in pharmaceutical research. Our own experience running scale-up projects for biotechs, has shown us the difference: yields often remain higher, purification becomes simpler, and the risk of forming hard-to-remove side products drops. Such nuances matter in multi-step synthesis sequences, where every percent of purity gained at the beginning pays out in reduced waste, lower costs, and cleaner data by the end.
Feedback, not marketing copy, directs much of our process improvement. One biotech team explained that switching to our 2-Bromo-5-Fluorobenzoyl Chloride cut an entire chromatography step from their route, just because they no longer had to separate unwanted isomers after acylation. Another global agrochemical group reported shorter crystallization times—the result of more predictable reaction kinetics when using our reliably pure batches.
This product’s difference shows in features that don’t appear on a Certificate of Analysis. For example, some buyers noted less batch-to-batch variability, which simplifies their qualifying protocols. We hear from smaller research groups who rely on consistent reactivity to plan extensive projects without derailing schedules. Large-scale pharmaceutical synthesizers highlight the reliability of shelf life, after long-haul shipping and extended warehouse storage. These types of unsolicited insights outperform any sales target, and drive our commitment to precision manufacturing far more efficiently.
We see testing not as a hurdle, but a continuation of production. Routine GC and NMR methods remain essential in tracking not just the primary product, but the trace byproducts. By maintaining direct oversight from raw material tank to final drum loading, our lab teams build in checkpoints that reflect the problems our clients have actually reported to us over the years. Thermal stability studies, stress tests under high humidity, and reactivity analyses with typical nucleophiles provide practical information that directly aids customer applications.
On occasion, problems surface that theory can't predict—a previously unseen impurity, altered reaction kinetics in a new solvent, or longer than usual precipitation times. Traceability back to batch records and reagent logs solves most puzzles. Our on-site analytical chemists and production supervisors have discretion to halt packaging if something seems even slightly off, and our customers value that shared sense of caution and care. They want to see continuity from lab bench to plant floor. We owe this transparency to partnerships that run deeper than one-off sales.
Reliability of supply, especially for niche intermediates like 2-Bromo-5-Fluorobenzoyl Chloride, can't be left to chance. Disruptions ripple downstream, knocking out project timelines and planned trials. Our stock policies emphasize buffer inventory for recurring clients. We synchronize our production output with known upticks in demand—such as project launches in pharmaceutical or crop science sector—by maintaining flexible scheduling in our batch process lines.
We've learned from long experience that regulatory reporting, dangerous goods documentation, and logistical details are just as crucial as process chemistry. As specialists in halogenated acyl chlorides, we devote energy to meeting evolving requirements for transportation safety and customs clearance. International shipments rely on careful packing and timed logistics, and our export team monitors shipments directly, including environmental shocks that may occur in transit. The extra work pays off by ensuring customers avoid downtime or the dreaded “out-of-stock” surprise.
Manufacturing halogenated intermediates brings responsibility beyond the reaction vessel. Over years of production, we've built and refined systems for capturing and neutralizing emissions—both to satisfy environmental standards and to contribute positively to our wider community’s air and water quality. Digging deeper than minimal compliance is not just the right thing to do but also ensures regulatory changes never catch us or our partners off guard.
Source transparency ranks high on our values. We work with material suppliers that share our focus on quality and responsible handling of halogen-bearing feedstocks. By investing in worker training and ongoing safety upgrades, we've found ways to minimize unplanned downtime and occupational incidents, forming a genuine bond of trust with both our employees and the downstream firms who use our materials in advanced research and manufacturing. As environmental regulations evolve, our proactive stance keeps us prepared, running ahead instead of lagging behind shifting targets for effluent, emissions, and workplace safety.
Innovation in chemical manufacturing requires both bold steps and careful control. Introducing new production equipment or process modifications often comes from repeated feedback and observed patterns in customer demands and QA outcomes. Our upgrades—such as longer condensation columns and enhanced purification methods—arose from the needs of research teams relying on our 2-Bromo-5-Fluorobenzoyl Chloride as a starting point for sensitive and intricate synthetic campaigns.
We don’t view improvements as one-time fixes. Continuous dialogue with end-users—be they pharma, agrochemical, or specialty material firms—lets us anticipate the next obstacle they’ll encounter, whether that means adapting our process to deliver smaller lot sizes, providing documentation for green chemistry initiatives, or even offering tailored advice for reaction workups involving our material. Over time, this approach strengthens relationships and encourages a flow of new ideas back and forth between plant and project lab.
Every drum or carboy of 2-Bromo-5-Fluorobenzoyl Chloride that leaves our site carries not only material but a firm promise—rigorous control, a keen understanding of its uses, and genuine accountability to every link in the supply chain. Through a combination of practical experience, technical enhancement, and direct feedback from those who use the material in groundbreaking research, we've shaped our offering into far more than just another chemical intermediate.
In a landscape crowded with off-the-shelf products, we stand by this specific acyl chloride derivative, because clients return not for the generic or the adequate, but for the reliable and the thoughtfully crafted. Production isn’t just output—it’s shared progress with every scientist, process engineer, and analyst whose own goals become feasible because our compound arrives on time, at spec, and ready for the next stage of innovation.
Our story with 2-Bromo-5-Fluorobenzoyl Chloride remains unfinished. Applications change as science advances. The chemists who once bought it for straightforward coupling reactions now chase more ambitious endpoints in their multifaceted projects. Our teams continue to learn from these evolving challenges, refining processes step by step, never settling for “good enough”.
It’s this continual loop of manufacturing expertise and close partnership with innovators that turns a specialized product into a foundation for new discoveries. Experience has proven that success lies in meticulous practice, transparent communication, and dedication to everyone relying on our craftsmanship. We intend to keep this focus at the heart of everything we manufacture, ensuring our 2-Bromo-5-Fluorobenzoyl Chloride remains a trusted tool for each new wave of creative science in the years ahead.