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HS Code |
154668 |
| Chemicalname | 1-Bromoheptadecane |
| Molecularformula | C17H35Br |
| Molecularweight | 319.37 g/mol |
| Casnumber | 629-73-2 |
| Appearance | Colorless to pale yellow liquid |
| Boilingpoint | 347 °C (657 °F) |
| Meltingpoint | 16 °C (61 °F) |
| Density | 0.838 g/cm³ at 25 °C |
| Solubilityinwater | Insoluble |
| Refractiveindex | 1.455 - 1.459 (at 20 °C) |
| Flashpoint | 147 °C (297 °F) |
| Pubchemcid | 12396 |
As an accredited 1-Bromoheptadecane factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 25g amber glass bottle with a secure screw cap, labeled "1-Bromoheptadecane" and hazard warnings, packed in protective cushioning. |
| Shipping | **Shipping Description for 1-Bromoheptadecane:** 1-Bromoheptadecane is shipped in tightly sealed containers under cool, dry conditions. It should be packed in compliance with hazardous materials regulations, preferably in glass or high-density polyethylene bottles, and cushioned to prevent breakage. Proper labeling and documentation, including Material Safety Data Sheet (MSDS), are required during transportation. |
| Storage | 1-Bromoheptadecane should be stored in a tightly closed container in a cool, dry, well-ventilated area away from incompatible substances such as strong oxidizers. Protect from heat, moisture, and direct sunlight. Use appropriate safety containers and keep away from sources of ignition. Label the storage area and ensure access is restricted to trained personnel. Store in accordance with local regulations. |
Applications of 1-Bromoheptadecane in Industrial ManufacturingAs a direct manufacturer of 1-Bromoheptadecane, we support diverse industrial customers by providing tailored grades for application in specialty chemical synthesis, advanced surfactant development, pharmaceutical intermediates, and functional polymer processing. Below, we describe key industrial application scenarios, including critical compliance standards, formulation guidelines, integration points, and downstream product types. 1. Organic Synthesis: Alkylating Agent for Specialty Chemicals1-Bromoheptadecane serves as a long-chain alkylating agent in organic synthesis where high-purity straight-chain bromides are necessary for manufacturing quaternary ammonium compounds, phase-transfer catalysts, and specialty intermediates. Industrial users employ this material in batch and continuous reaction systems, targeting molecules with enhanced hydrophobic tail characteristics for use in performance additives and tailor-made reagents. Industry compliance standards
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2. Surfactant Precursor Manufacturing for Oilfield ChemicalsOur material acts as a C17 hydrophobic chain source in the production of custom surfactant precursors, especially for oilfield chemical manufacturers who require increased wetting, emulsification, and demulsification performance. Applied in the synthesis of cationic and amphoteric surfactants, it delivers specific tuning of HLB (hydrophilic-lipophilic balance) in crude oil recovery and water treatment applications. Industry compliance standards
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3. Pharmaceutical Intermediate Synthesis: API Side-Chain Building BlockActive pharmaceutical ingredient (API) manufacturers select 1-Bromoheptadecane as a strategic building block in the construction of long-chain side groups for select APIs and drug candidates. Its predictable reactivity and defined structure meet rigorous specifications required for regulated pharmaceutical synthesis, especially in second- and third-generation synthetic routes targeting specialty drug molecules. Industry compliance standards
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4. Functional Polymer Additive SynthesisProducers of specialty polymers use our C17 bromoalkane to introduce hydrophobicity and controlled chain architecture within polymer matrices. The raw material provides necessary chain length for grafting, branching, and end-capping processes, particularly in high-performance coatings, antistatic films, and surface-active copolymers that demand consistent molecular distribution and project-specific durability. Industry compliance standards
Typical usage ratio
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As a manufacturer with decades of hands-on experience developing specialty alkyl bromides, we have learned that every batch of 1-bromoheptadecane tells a story about the materials and processes behind it. This compound stands out due to its seventeen-carbon backbone with a single bromine at the terminal position. The result is a clear, often viscous liquid that holds up under a microscope for both chain length and substitution, which matters for rigorous lab-standard work and scaled-up industrial routines alike.
We monitor each phase from raw oil or alcohol distillation through bromination and subsequent separation. In this way, customers who come to us for 1-bromoheptadecane draw on results proven in actual synthesis work, rather than relying on generic trade claims. We care about giving traceable, reproducible product that matches the exacting requirements for functionally substituted long-chain intermediates. The typical purity for this product regularly measures above 98%, and our work begins and ends in-house to ensure no deviation or unexplained drift in the chemical profile.
Years of fine-tuning have taught us to avoid shortcuts. We control bromination temperature, monitor impurities, and deal with stubborn byproducts like unreacted heptadecane and debrominated traces that can quietly devalue performance downstream. Gas chromatography methods catch off-spec impurities, and batches unfit for narrow research or pharmaceutical work do not leave our facilities labeled as pure. The community relying on true 1-bromoheptadecane—rather than any similar straight-chain halide—expects and receives substance without the guesswork.
Many specialty surfactants, lubricating additives, and custom molecule syntheses call for chain lengths in the C17 range. 1-bromoheptadecane is often the choice when longer or shorter bromides will not deliver the same physical or reactivity characteristics. Its use in phase transfer agents, dielectrics, or even advanced organic synthesis intermediates showcases why users prefer to work with the actual chemical, not just a bromoalkane with an approximate carbon count.
Chemists select this product for its chain extension roles, especially in etherification and Grignard formation with odd-numbered carbon skeletons. A careful selection of the bromide avoids uncontrollable branching, bad color, and low reactivity that would appear if buyers settle for mixed or recycled grades. Our facility works with research customers and upstream industrial users, both of whom need tight control over molecular weight and substitution, especially where downstream purification is complicated or not economical. Because each application imposes unique requirements on purity, residuals, and batch consistency, we work closely with teams running small-volume synthesis as well as larger project managers who need hundreds of kilos.
We have also supplied this compound to pilot plants scaling cosmetic derivatives, long-chain quats, and even energy and materials researchers who prefer odd-carbon starting materials. A repeat customer base often returns for the same batch qualities, since unpredictable material means unpredictable end-product. In this business, a raw material’s reliability often saves money and time further down the process.
From the bench to the drum, not all alkyl bromides behave the same way. We have manufactured both shorter and longer chain analogs, noticing that 1-bromoheptadecane lands right in a sweet spot. As compared to something like 1-bromodecane or 1-bromooctadecane, the physical handling, solubility, and reactivity can vary more than a casual datasheet suggests. C17 bromides show lower volatility and a slightly higher melting point than lower homologues, making storage and transportation less hazardous and more predictable. In the lab, this manifests as less loss from evaporation and fewer fluctuations during scale-up.
Long-chain homologues such as 1-bromooctadecane tend to solidify at room temperature and pose greater processing difficulties when blending or pumping in cooler climates. Shorter ones, including C10 or C12 bromides, may fail to match the hydrophobic block length essential in specialty surfactants or bioactive compounds. Users working with 1-bromoheptadecane appreciate the handling advantages and unique miscibility profile, particularly when used as an intermediate for paraffin-based surfactants, custom monomers, or lubricant additives.
Confidence in our process comes from thousands of kilograms made over the past years. We do not only supply off-the-shelf product—should a project require further distillation, anhydrous conditions, or low-residual halide content, we can cycle through the production quickly to deliver the exact material needed. Market demand for truly linear, monobrominated C17 material remains, as this gives tighter reaction yields and predictable side chain arrangements in every batch. Third-party traders sometimes pass off blends or mislabeled bromoalkane, but real users quickly spot the difference—often at the worst time during synthesis.
Decades of continuous improvements have shaped our approach to 1-bromoheptadecane production. We learned early that small changes—purity of starting materials, cooling methods after bromination, agitation speed—can produce large swings in yield or side product levels. This compound often appears simple on paper, but reliable quality at scale takes persistent attention.
Working on the line, we use real-time analytical methods to assess product at every stage, never leaving it to end-point checks alone. Our quality control chemists understand the downstream value chain, so our acceptance criteria reflect more than internal cost or production convenience. Customers in pharmaceuticals and high-purity syntheses often ask for low moisture and exact endpoint halides, while bulk chemical users may prioritize economies of scale. Each specification requires its own recipe adjustment—no batch leaves the plant without our full batch record.
Many customers who once tried to substitute other chain lengths eventually pivot back, after observing compromised surfactant foaming, unexpected phase behaviors, or even regulatory compliance snags. We field regular requests for comparative information about how C17-bromo compounds behave versus more common C16 or C18 materials, especially under different solubility or reaction conditions. We use our own in-house data and hands-on evidence, not just published values.
With fluctuations in global bromine and long-chain alcohol markets, sourcing truly reliable feedstock often takes as much attention as reaction optimization. We maintain records of every origin batch used—mainly vegetable-based fatty alcohols, sometimes with minor coconut or palm kernel fractions, depending on availability and specification. This transparency ensures we never dilute purity or disrupt supply for an urgent order.
Our regular clients range from boutique researchers to multinational chemical formulators. Each expects not just the compound but true provenance, detailed documentation, and even production site audits. We can show customers exactly where a lot’s raw material originated, how we track production, and what controls are in place for environmental and process safety.
This approach has built us a reputation as the go-to source for genuine 1-bromoheptadecane. In our view, simply shipping drums is not enough—each sale supports a repeatable production partnership. Since new customers usually arrive due to unreliable supply from traders, we value open discussion about practices, guarantees, and audit trails.
We adopted chromatographic and spectroscopy tests as soon as they appeared in the industry, learning that visible inspection or density alone could not catch minor impurities or by-products. Modern methods such as GC-MS and NMR now support every batch, but our criteria have evolved with industry demands. For jobs requiring narrow boiling fractions or water-free handling, we adapt protocols, sometimes running additional drying or redistillation steps.
Long-term clients recognize our strict batch release habits. The standard product is bright and colorless, without haze or suspended solids. Our tanks receive frequent cleaning, and every time we upgrade filtration or separation equipment, we see measurable product quality advances. Many in our staff started on the plant floor, so they spot developing issues before they affect a scheduled shipment.
We maintain open files on batch performance, especially where scaled users record small deviations in their own reactions. Each input feeds our next process improvement cycle. By staying close to customer outcomes, we honor the real-world purposes behind every kilogram shipped.
These topics matter deeply to us, given the regulatory scrutiny over halogenated hydrocarbons. Using closed-system reactors and solvent recovery, we cut workplace exposure and save on environmental costs. We have shifted away from older bromination agents with higher toxicity, replacing them with less hazardous and more easily recoverable alternatives whenever possible. We keep our site compliant with emissions rules, solvent reuse, and hazardous waste disposal in line with both regional and international guidelines.
We track and provide regulatory support documentation for customers working in export, ensuring that the material’s compliance with environmental, pharmacopoeia, and REACH or TSCA status matches the intended usage. As pressure increases for greener chemistry, customers value knowing we can offer both legacy process know-how and developing sustainable routes.
Our plant staff are trained every season, with regular review of hazard protocols, exposure monitoring, and safety drills specific to brominated liquid handling. The focus is on practical prevention—real-life risks mean real-time answers. By treating safety as an everyday discipline, not a compliance afterthought, we reinforce the trust that clients place in our materials.
We see patterns emerge over years of collaboration. The majority of 1-bromoheptadecane buyers either work on something unique—novel surfactants, biomedical polymers, hydrophobic coatings—or else supply traditional applications with ever-stricter performance demands. Both groups need not only the product but also partnership in troubleshooting, regulatory registration, and sometimes custom-packaging.
Our in-house experts can guide on how minute variations—such as isomeric purity, halide residue, or oxidative stability—may affect the performance of the finished compound. We have helped several clients adjust processing steps to better accommodate the unique properties of a C17 chain, compared to more common C16 or C18 derivatives. This experience-driven approach reduces risk, cost, and guesswork.
Sometimes the solution calls for a tweak to the bromination step, sometimes for an entirely new base alcohol source. A few development projects even led us to create new downstream compounds, enabling the field to advance into less-explored application areas. We appreciate the challenge, and our production crews take pride in seeing ideas become reality, tracked back all the way to their starting material.
Over recent years, demand for odd-number carbon chain intermediates has risen—sometimes driven by regulatory pressures limiting certain even-number alkyl analogs, sometimes by innovation in green surfactants or bio-based lubricants. Clients frequently report that chain length precision delivers unexpected benefits in specific reactivity or end-use efficiency. Our direct experience also shows that tighter supply and price swings affect buyers who rely on long supply chains, in contrast with customers who secure consistent sources.
Open feedback from customers—both labs and factories—teaches us where 1-bromoheptadecane adds value or where updates may help. Recent trends have prompted us to maintain higher buffer stocks, offer greater customization in packaging sizes, and improve batch tracking, which keeps documentation smooth for both buyers and regulators. We also share guidance about handling, shelf life, and compatibility, as frequent user questions help us improve both the core product and its supporting information.
We regularly exchange technical details with customers, including tips on safe storage to prevent bromine loss, best handling practices to avoid contamination, and advice about integrating our material into automated dosing systems. These conversations become informal networks of expertise and have shaped our approach to both process and customer education.
The 1-bromoheptadecane we supply reflects a set of choices—about raw materials, safety priorities, and client-focused quality control. As the direct manufacturer, our aim stays the same: deliver a product that consistently supports real-world discovery, production, and innovation. It’s not simply a reagent, but the outcome of many hands and heads keeping closer tabs on every variable.
Our confidence comes not just from years in business but from the repeated, positive outcomes our customers share—greater purity, fewer interruptions, and stronger supply chain confidence. Challenges in long-chain alkyl bromide production keep us pushing forward, refining systems, and offering new options to customers who value reliability above all else.
Whether the need is for a kilogram of high-purity research-grade 1-bromoheptadecane or steady supply for industrial volume, we stand behind each shipment with both technical evidence and personal commitment. The difference becomes clear at every step—right where our material meets your process.