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HS Code |
379856 |
| Iupac Name | 2-bromo-2-phenylethan-1-amine |
| Cas Number | 5335-77-3 |
| Molecular Formula | C8H10BrN |
| Molar Mass | 200.079 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Boiling Point | 299°C |
| Density | 1.45 g/cm3 |
| Solubility In Water | Slightly soluble |
| Smiles | C1=CC=C(C=C1)CCN |
| Inchi | InChI=1S/C8H10BrN/c9-7-8(10)6-4-2-1-3-5-6/h1-5,8H,7,10H2 |
| Pubchem Cid | 24081399 |
As an accredited 2-Bromophenethylamine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle containing 25 grams of 2-Bromophenethylamine, sealed with a plastic cap and labeled with hazard and identification information. |
| Shipping | 2-Bromophenethylamine is shipped in tightly sealed, chemical-resistant containers to prevent leakage or contamination. It is transported in compliance with relevant regulations for hazardous materials, typically via ground or air freight. Proper labeling, handling, and documentation ensure safe delivery, with special attention to temperature control and restricted access during transit. |
| Storage | 2-Bromophenethylamine should be stored in a tightly sealed container, away from moisture, heat, and direct sunlight. Keep it in a cool, dry, and well-ventilated area, separated from incompatible substances such as strong oxidizers and acids. Proper labeling and secure handling are required to prevent accidental exposure or spills. Store at recommended temperatures, typically between 2–8°C (refrigerated conditions). |
Applications of 2-Bromophenethylamine in Industrial ManufacturingAs a direct manufacturer of 2-Bromophenethylamine, we supply this specialty aromatic amine intermediate to a range of process-driven sectors. Our downstream partners rely on precise sourcing, consistent specification, and authoritative regulatory alignment. The real-world application cases outlined below reflect authentic industrial requirements across advanced material, pharmaceutical, and fine chemical value chains, supported by substantiated data and formulation practices. 1. Pharmaceutical API Synthesis – Intermediate for CNS Active CompoundsLeading pharmaceutical manufacturers utilize 2-Bromophenethylamine in multi-step synthesis of central nervous system (CNS) drug APIs, particularly in preparing custom arylethylamine scaffolds that are foundational in selective serotonin and dopamine receptor modulators. The amine’s brominated structure enables regioselective modifications in core alkylation or substitution reactions, forming key intermediates prior to final purification and formulation under GMP controls. Industry compliance standards
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2. Agrochemical Intermediate – Synthesis of Specialty Herbicide CompoundsAgrochemical producers source 2-Bromophenethylamine for the construction of brominated phenethylamine-based intermediates, which serve as key building blocks in the synthesis of selective herbicides targeting broadleaf weeds. Accurate addition ensures high conversion rates during amide formation and subsequent cyclization reactions characteristic of modern post-emergent weed control actives. Industry compliance standards
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3. Custom Synthesis of Advanced Materials – Monomer for Polymeric AdditivesSpecialty polymer producers apply 2-Bromophenethylamine as a reactive monomer or blocking group in high-performance polymers and functional additives. Its unique aryl-bromine functionality allows for targeted modifications in step-growth or chain-growth polymerization, where incorporation enhances adhesion, dielectric performance, and surface reactivity in advanced coatings or electronic materials. Industry compliance standards
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4. Synthesis of Fine Chemical Intermediates – Precursors for Dyes and PigmentsManufacturers of organic pigments and specialty dyes utilize 2-Bromophenethylamine as a precursor for synthesizing chromophoric amine derivatives, which contribute to colorfastness and substrate binding in textile and plastic applications. The amine’s brominated aromatic structure enables site-specific diazotization or coupling required for the generation of intense, high-purity shades in advanced dye systems. Industry compliance standards
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2-Bromophenethylamine stands out as a specialty intermediate, valued for its unique chemical features and real-world performance. Our crew works with this compound every day—handling it, testing it, and putting it through the grind of industrial applications. Over the years, we’ve seen the subtle differences a high-quality batch makes, and we have learned exactly what researchers and production managers watch for in a reliable supply.
2-Bromophenethylamine carries the structural knack of an ethylamine group attached to a brominated phenyl ring. We produce it under controlled conditions to emphasize purity, batch-to-batch consistency, and low moisture content. Practical experience shows that minute impurities or variable moisture can dramatically affect downstream processes. Whether the customer uses it as a scaffold for API synthesis or a functional group in agrochemical development, each molecule serves a decisive role. Our current production emphasizes technical grade, with specifications regularly audited by our onsite analytical teams. Prominent features include a crystalline appearance and robust stability across storage and transit conditions.
2-Bromophenethylamine often operates in the background; it’s neither a flashy reagent nor a marketing buzzword in end products. In practice, it acts as a key stepping stone in synthetic pathways, favored for introducing both the phenethyl and bromo functionalities in a single step. We routinely engage with process chemists from pharmaceutical companies and custom synthesis outfits. Their feedback is direct: interruptions trace back to inconsistent raw material or flawed tracing of supply chains. Our role, as the original manufacturer, centers on direct control—right from raw material source, through reactor temperature profiles, to packaging and shipment.
We designed our production line with continuous monitoring; this means our output doesn’t just meet a lab-sheet spec but holds up under scrutiny in kilo-lab and pilot runs. Our engineers address factors such as dust formation, caking tendency under humid conditions, and the tolerances required for scale-up. The more hands-on we are in every batch, the fewer surprises for the chemist downstream.
The difference starts with transparency. Many market suppliers take a buy-and-sell approach, working at arms-length from actual chemical processes. Because we operate the reactors, monitor the distillation, and personally approve the release, we do not rely on third-party claims about the material’s profile. Real control happens onsite. Most clients report fewer unexpected issues during implementation—lower rates of off-spec product in their applications, reduced troubleshooting, and overall smoother pilot validations.
Our people have turned small details (such as selecting the right grade of starting materials or optimizing the order of addition to minimize by-products) into practical improvements. After one client experienced side reactions using 2-bromophenethylamine from another supplier, our technical audit and shared chromatography results led them to reformulate their process, resulting in fewer headaches and a five percent higher yield. Success stories like that don’t make for splashy headlines, but that’s where the daily grind pays off.
2-Bromophenethylamine sees continued use in medicinal chemistry for preparing substituted phenethylamines, especially those destined as central nervous system-targeted candidates. Some of our customers use it as a core intermediate in heterocyclic compound synthesis, where the bromo group acts as a versatile handle for further transformations. Agrochemical researchers leverage its dual amine and aryl bromide content to create new product candidates for crop protection. Across our factory’s loading dock, cartons marked for R&D houses, contract manufacturing firms, and global pharmaceutical players regularly line up for international dispatch.
Beyond new molecule creation, some end users value its reactivity profile. They highlight the material’s preservation of amine integrity and low racemization. We find, in practice, that batches with higher residual halides or trace solvents can interfere with downstream amide coupling or reductive amination. Internal QC rejects anything off-mark, so the risk never passes to the end user.
Working conditions at our plant bring day-to-day realities into sharp focus. Humidity and temperature must be maintained to safeguard the compound’s crystalline nature. This means climate control, desiccated storage, and anti-static handling—far more nuanced than a warehouse stockroom. Moisture ingress is no small nuisance; we’ve documented how poor environmental controls degrade not only the outward appearance but the chemical profile itself, with follow-on headaches for anyone downstream.
We use high-barrier, sealing-grade packaging to curb degradation risks and label each container with exact batch data, including synthesis date, analytical profile, and packing personnel. This isn’t busywork—it allows any deviation to be traced, root-caused, and fixed internally, for the benefit of everyone in the chain.
Evolving regulatory demands frame much of our practice. As original manufacturers, we carry responsibility for compliance far beyond the documentation handed to a trader or broker. Any slip in handling, labeling, or testing draws quick attention from end users and, sometimes, authorities. We maintain full documentation and traceability on 2-bromophenethylamine batches, supported by audit trails from raw materials onward.
Our in-house quality team works in step with regional and international compliance requirements, running regular cGMP-style audits even for standard technical batches. This results in less variation lot-to-lot, which translates to reproducibility for our partners’ internal validations. The necessity for real record-keeping, rather than checkbox exercises, comes from lived experience dealing with market recalls and disputed imports across borders. Our single-plant origin for every order means tracebacks can be executed swiftly, reducing uncertainty across the value chain.
Stories from scale-up runs stick in memory. One multi-tonne campaign for a specialty pharma firm proved a point: their pilot plant runs succeeded without incident, but on ramp-up, trace by-product interference derailed an entire batch. After a week-long investigation and a series of cross-continent calls, all signs pointed to inconsistent 2-bromophenethylamine from an outsourced supplier. Supplying a directly controlled batch from our line restored the process, and the project recovered without further yield drop. These situations illustrate the gulf between lab-book quality and scalable manufacturing.
Our chemists work on-site, troubleshooting anomalies as they arise, and offering direct technical support on downstream processing challenges. Feedback loops go both ways; we routinely update our protocols and cleaning regimens based on customer findings—not just laboratory test results. This hands-on approach allows us to anticipate fluctuations in reactivity, solubility shifts, or unanticipated side-products that hinder end applications.
As a manufacturer, the conversation never ends with product purity; safety and environmental protection anchor every day’s work. 2-Bromophenethylamine, like related halogenated amines, warrants careful containment and waste handling. We recirculate solvents wherever possible, and our filtration and organics capture process surpasses minimum legal requirements, not simply for regulatory peace-of-mind but to avoid operational interruptions that affect production timelines.
Safety teams on-site run drills and conduct real-time monitoring of the most relevant exposure risks. Overexposure concerns are very real, so process improvements—enclosed transfer lines, point extraction at the workbench, rigorous PPE protocols—are always under review. No shortcut outweighs the risk of lost productivity, exposure incidents, or halted supply. Our accident log stays thin because vigilance comes before convenience.
The pathway to a better, cleaner, more efficient product is paved with experience—not theory alone. Process bottlenecks, such as batch crystallization kinetics or thermal control during bromination, present learning opportunities. Our plant team has fine-tuned the addition rates and mixing speeds over many production cycles. We’ve shifted impurities from trace-level unknowns to well-understood, monitorable side-products. These improvements do more than boost a number on a spec sheet—they prevent reprocessing, facilitate better yields for our partners, and keep nonconformances at bay.
We emphasize operator education, not just compliance. Operators and supervisors who understand minute process variations play the most central role in aligning output with expectation. Our in-house training covers everything from raw material inspection to real-time monitoring of pressure profiles and endpoint detection. By embedding technical know-how at every touchpoint, we reduce the chance of error or contamination—real advantages in volatile, batch-based specialty chemical manufacturing.
Our direct supply model covers not only the production but also real-time updates on availability, sudden raw material shifts, or regulatory pathway changes. Because intermediates such as 2-bromophenethylamine sometimes slip into grey markets, direct communication gives our clients the clarity they need on chain-of-custody and timely delivery. The value isn’t abstract: tighter chains mean less risk of supply interruptions, better responsiveness to urgent requests, and freedom from the uncertainties that plague indirect procurement.
We share technical bulletins and practical guidance alongside standard documentation. These communications address live issues—such as best practices for redissolving difficult crystals or troubleshooting solubility bottlenecks common in scale-up. We see knowledge-sharing not as a mere afterthought, but as part and parcel of a working partnership. Our customers seek more than paperwork—they need judgment calls, process advice, and rapid response to challenges as they unfold.
On most project teams, discussions turn to alternative building blocks for amination or halogen introduction. Some opt for related compounds—such as 4-bromophenethylamine or non-halogenated phenethylamines—when substitution patterns affect reactivity or regulatory status. From experience, the ortho-position bromine on 2-bromophenethylamine confers unique steric and electronic effects, which translate to distinct reactivity in coupling and ring closure reactions.
The subtle difference plays out consistently in yields, side-reactions, and the clarity of final product isolation. Other bromo-amines in the family often show different melting points, solubility profiles, and even odors, which complicate process handling and safety reviews. The ortho variant appeals where regioselectivity or electron density patterns are critical in synthetic planning. We have tracked dozens of process improvements—including centered chromatographic separations and step reductions in multi-stage routes—that hinge on the right selection of isomer.
Several partners have tried switching sources or isomers, searching for cheaper alternatives or easier storage. In our follow-ups, many returned after problems with batch-to-batch reactivity, incomplete consumption of reactant, or misalignment with predictive modeling. Empirical evidence—not just theoretical substitution—carries weight here. Our technical support documents include real comparisons, side-by-side trial samples, and, if necessary, root-cause analyses of failed attempts at process substitution. In the end, the best fit depends not just on catalog specs but on hands-on testing aligned with a supplier who can deliver consistent, known inputs every time.
No two customer stories run the same, and we make a point to gather feedback from hands-on bench chemists, project leads, and plant engineers. Through years of supplying 2-bromophenethylamine, patterns emerge: chemoselective reductions, palladium-catalyzed couplings, and nitration all draw upon its predictable reactivity. Modified protocols in one factory find new life at another, with knowledge passed along between our teams and the end user.
Developments in customer R&D frequently circle back into our process improvements. One partner highlighted limitations in our packaging for sub-zero shipment; our adjustments led to tighter seals and secondary containment. Such changes pay off in reduced spoilage claims and more reliable test results for our buyers. Open channels of communication—either through regular audits, new project launches, or live troubleshooting—help us catch improvements not only in product but in procedures.
Experience running a specialty chemical plant breeds a certain mindset—practical, solution-oriented, and continuously learning. 2-Bromophenethylamine production might look straightforward on a process flow diagram, but the real work comes in controlling variables, managing supply risks, and investing in operator skill. We look ahead, incorporating cleaner processes and safer containment, not just to keep certification but to maintain trust with those who depend on our supply.
Responsible manufacturing—rooted in fact, open communication, and constant engagement with user needs—guides every step, from drum filling to global export. As original manufacturers, not just brokers, we stay accountable for every consignment leaving our site. Our reputation rides not only on purity and yield, but on transparency, technical support, and a direct line to practical solutions as new projects and challenges emerge.