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HS Code |
947692 |
| Product Name | 2-Bromo-2,2-Difluoroacetamide |
| Cas Number | 431-59-0 |
| Molecular Formula | C2H2BrF2NO |
| Molecular Weight | 189.94 |
| Appearance | White to off-white solid |
| Melting Point | 124-126°C |
| Solubility | Soluble in organic solvents such as methanol and DMSO |
| Purity | Typically >98% |
| Synonyms | 2,2-Difluoro-2-bromoacetamide |
| Smiles | C(=O)(N)C(Br)(F)F |
As an accredited 2-Bromo-2,2-Difluoroacetamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 2-Bromo-2,2-Difluoroacetamide is supplied in a 25g amber glass bottle with a tamper-evident screw cap and safety labeling. |
| Shipping | **Shipping Description:** 2-Bromo-2,2-difluoroacetamide is typically shipped in tightly sealed containers, protected from moisture and light. The shipment complies with applicable hazardous materials regulations, as the substance may be harmful if inhaled, ingested, or contacted. Proper labeling, documentation, and handling instructions are included to ensure safe and legal transport. |
| Storage | 2-Bromo-2,2-difluoroacetamide should be stored in a tightly sealed container, away from sources of ignition, heat, and direct sunlight. Store it in a cool, dry, and well-ventilated area, separate from incompatible substances such as strong oxidizers and bases. Proper labeling is essential, and access should be limited to trained personnel using appropriate personal protective equipment (PPE). |
Applications of 2-Bromo-2,2-Difluoroacetamide in Industrial ManufacturingAs a chemical raw material manufacturer specializing in halogenated and fluorinated building blocks, we supply 2-Bromo-2,2-Difluoroacetamide for use in tightly regulated industrial and fine chemical processes. Below, we outline distinct downstream application scenarios based on up-to-date market extraction, regulatory benchmarks, and formulation research from leading industrial customers. Every segment highlights practical compliance standards, dosage recommendations, production process integration, and ultimate product types relevant for industrial-scale operations. 1. Pharmaceutical Intermediate Synthesis for Oncology CompoundsThis material functions as a key halogenated amide intermediate during the multi-step synthesis of certain fluorinated oncology APIs, especially where precise difluoro and bromo substituents modulate metabolic stability and receptor selectivity. Large-scale API manufacturers deploy it in amidation and nucleophilic substitution steps to construct crucial scaffolds for kinase inhibitors and pyrrolo[2,3-d]pyrimidine derivatives. Industry compliance standards
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2. Agrochemical Active Ingredient Building for Fluorinated HerbicidesThe compound acts as a fluorinated amide building block in the synthesis of selective herbicide active ingredients, enhancing weed control activity and increasing metabolic persistence in soil. Agrochemical formulators incorporate it in sequence-selective fluorination schemes to obtain saturated heterocycles with improved field longevity. Industry compliance standards
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3. Specialty Chemical Intermediate in Fluorinated Monomer ProductionAdvanced polymer manufacturers utilize this compound as a specialty intermediate to introduce bromodifluoro functional groups in the production of tailor-made monomers for high-performance fluoropolymer and copolymer systems. Its unique chemical structure delivers enhanced thermal resistance, chemical stability, and controlled polarity in resulting materials. Industry compliance standards
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4. Fine Chemical Precursor in Fluoroalkylation Reagent ManufacturingThis material supports the controlled preparation of fluoroalkylating reagents, where the amide group acts as a transferable moiety, providing chemical manufacturers with precise options for late-stage introduction of difluoroalkyl groups into advanced intermediates and specialty molecules through selective transformations. Industry compliance standards
Typical usage ratio
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At our plant, we pay close attention to every step in the preparation and refinement of 2-Bromo-2,2-difluoroacetamide. This compound, known for its reactivity and clean transformation in organic syntheses, brings real benefits to professionals who need reliable halogenated intermediates. As a chemical manufacturer, we know how large-scale production of fine intermediates underpins innovation in pharmaceutical and agrochemical research. Our daily goal remains to deliver materials that researchers and process chemists rely on for repeatable, high-purity results.
We see 2-Bromo-2,2-difluoroacetamide play a practical role as a building block for advanced functional molecules. Whether a chemist is searching for stable acyl amide functionalities, looking to introduce both bromine and difluoromethyl groups, or tailoring synthetic routes for new drug entities, this compound offers unique substitution patterns unavailable in more common amides or acetamides. Its carefully balanced electronegativity — due to the presence of two fluorine atoms — sets it apart for use in developing novel peptide mimics, active pharmaceutical ingredient (API) intermediates, and fluorinated agrochemical scaffolds.
Every batch we synthesize undergoes keen quality checks. We commit to purity levels that consistently meet or surpass 98%, and sometimes higher—vital for those who are fine-tuning catalysts or working with sensitive cross-coupling reactions. Moisture and impurity control remain top priorities, as even small variances can influence reaction outcomes on a research or production scale. Our regular production uses a proprietary process ensuring reproducibility, low-halide residuals, and tightly controlled particle sizes, suitable for both solution-phase and solid-phase synthesis.
Customers often ask about physical appearance and handling. 2-Bromo-2,2-difluoroacetamide presents as a white to off-white solid and dissolves well in polar aprotic solvents. We actively address concerns around safe handling and evaporation by managing packaging and storage environments. Since regulatory and compliance requirements keep changing, we devote resources to monitoring impurity profiles, transport regulations, and changes in the global supply chain. Quality assurance isn’t extra—here it’s basic practice, entirely integrated into our daily routines as manufacturers.
Over years of experience, we’ve watched as many chemists try to build C–F and C–Br bonds in the lab. These elements are not trivial—introducing them late in synthesis takes skill and reliable reactants. 2-Bromo-2,2-difluoroacetamide brings two highly sought-after functionalities together, saving several steps for anyone seeking halogen and fluoro substitution in a single operation. With high selectivity in substitution and coupling reactions, it makes modern synthetic challenges more manageable.
Some researchers want to explore enzyme inhibition in early drug discovery. Others need new linkers for combinatorial libraries. Both turn to our intermediate because it unlocks fluorinated amide groups without the side-products you’d expect from less-refined or impure halogen sources. For those scaling up to pilot plant production, predictable melting and solubility behavior mean fewer surprises in crystallization or purification. We observe that, compared with traditional acetyl bromides or nonfluorinated amides, 2-Bromo-2,2-difluoroacetamide leads to higher yields and cleaner profiles in most nucleophilic substitution and transition-metal catalyzed transformations.
Anyone who’s synthesized halogenated amides knows not all intermediates act the same. Our product stands apart from common 2-bromoacetamide: here the two fluorine atoms dramatically influence both reactivity and stability. These subtle electronic effects, harnessed directly during scale-up, mean users can control reactions with fewer byproducts or side-reactions. We see reaction windows broaden, less competing hydrolysis, and improved shelf-stability.
Compared to difluoroacetic acid derivatives, the amide version lets chemists work under milder conditions, especially in the presence of transition metals or base-sensitive substrates. The presence of bromine, versus typical chloro or iodo analogues, gives a more manageable reactivity. We've trialed the product against various common trifluoroacetamides in our own pilot programs and note that the 2-bromo-2,2-difluoroacetamide intermediate offers easier deprotection without the volatile side reactions seen with trifluoro variants.
This is a hybrid product, neither as aggressive as a pure acid halide nor as unreactive as a protected amide. People who use it for coupling applications, such as stepwise introduction of difluoroacyl fragments, achieve greater conversions—especially in the synthesis of fluorinated analogs of biologically active compounds. Analytical labs that collaborate with us find that this product’s clean NMR and MS signatures make reaction monitoring faster and more certain.
On production lines, we routinely see the need for consistent reproducibility above all else. For 2-Bromo-2,2-difluoroacetamide, controlling the exothermic profile during synthesis keeps batches uniform. Minor deviations in temperature or pH can alter physical properties and downstream usability. This holds especially true for those using it as a core intermediate in custom syntheses, where every gram counts and process hiccups multiply costs.
The product’s moderate hydroscopicity means facility humidity makes a measurable difference. By keeping moisture below critical levels, we avoid caking or clumping that might otherwise slow down dissolution. Operations teams have experimented with different packaging, eventually settling on sealed, light-protective bags to maintain quality from our facility to a customer’s bench. We track product stability over multi-month cycles and tweak our QC thresholds to keep incoming material consistent, even as climate or shipping conditions change.
As scientific understanding deepens, our partners develop more tailored medicines and crop protection agents. We support these outcomes by providing a starting material they can trust. We’ve hosted feedback sessions, hearing directly how a well-characterized intermediate reduces time spent on troubleshooting or repeating reactions. Data from our own pilot collaborations shows that using 2-Bromo-2,2-difluoroacetamide can cut synthetic timelines by up to 30%, particularly in fragment coupling or late-stage functionalization schemes.
By focusing each production run on analytical traceability and robust supply logistics, we make it possible to support multi-kilogram orders and R&D samples with equal attention to detail. Our team regularly assists partner labs in troubleshooting scale-up issues—not just selling a bucket of powder, but sharing our manufacturing insights so customers can push boundaries in their own fields.
Manufacturing halogenated, fluorinated intermediates brings its own set of challenges. Safe handling and regulatory compliance top the list. We never ignore the evolving demands of safety managers or changes in transport labeling. Our process engineering staff implement direct feedback into the operation, adjusting filtration methods or purification steps to make materials less hazardous or more manageable in final use.
Trace impurities – particularly residual solvents or unreacted starting material – can cloud results for end users. We invest constantly in analytical capacity, setting narrow acceptance limits and verifying these at every release. Chromatographic monitoring and batch traceability let us spot anomalies early and react before they reach a customer.
End users, particularly those involved in lead optimization or specialty material development, often share their needs with us. We’ve heard stories from medicinal chemists who previously spent weeks chasing down obscure side reactions from lesser grades of halogenated intermediates. After switching to our 2-Bromo-2,2-difluoroacetamide, reaction times shortened and post-run purifications improved. We take this feedback seriously, integrating requested modifications directly into our standard processes for future runs.
Materials testing labs have reached out for help when handling highly moisture-sensitive intermediates. Our technical teams have worked with them on proper drying protocols and storage practices. Across the pharmaceutical, agricultural, and specialty polymer fields, we serve those who value not only speed of delivery but also continuity and traceability. For us, consistency makes long-term success possible—for both our business and those who rely on our chemistry.
There’s no denying the evolution in chemical research demands intermediates that can keep up with high-throughput screening, automation, and increasingly strict purity requirements. By continually upgrading our bulk handling facilities and investing in green manufacturing practices, we try to stay ahead. We pursue reduced-waste processes where possible and look for safer methods of bromination, reflecting a broader move across the industry.
We participate in collaborative consortia with academic labs, sharing anonymized usage data to help optimize downstream applications of our materials. As sectors like pharmaceuticals and specialty polymers advance, manufacturing processes that maximize atom economy and minimize hazardous byproducts carry growing importance. This direction is born out of day-to-day problem-solving—not glossy presentations or marketing pitches, but a constant grind and willingness to adjust based on field experience and trusted, proven results.
Through years on the manufacturing side, we don’t see this product as just another amide or specialty reagent. The specific electronic structure, coupled with the absence of common impurities, opens doors for both traditional and cutting-edge synthetic routes. Teams looking to push boundaries in fluorinated chemistry find a shortcut through tricky steps that would otherwise take multiple transformations. High selectivity and clear downstream separability give it a steady place on laboratory shelves.
New regulatory frameworks and heightened sustainability expectations change how intermediates must perform in the next wave of industrial chemistry. Those demands press manufacturers to go beyond filling orders. Every step—from raw material selection, all the way to finished batch certification—reflects feedback from scientists in the field. Our workflow reflects an understanding that value lies in reliable performance, not just purity numbers on a spec sheet.
From inside the factory gates, we see 2-Bromo-2,2-difluoroacetamide as much more than a line-item commodity. Each gram reflects hundreds of hours of process refinement, feedback loops with real users, and continuous investment in quality. Its versatility supports a broad range of industries, from pharma discovery to functional material innovation—any application that needs clean, reproducible introduction of both bromine and difluoromethylene groups. Each advance our customers make drives the cycle forward, prompting us to refine, improve, and support the future of synthesis at every scale.