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HS Code |
352829 |
| Productname | N-Benzyl-2-Chloroacetamide |
| Casnumber | 13290-96-5 |
| Molecularformula | C9H10ClNO |
| Molecularweight | 183.64 |
| Appearance | White to off-white solid |
| Meltingpoint | 105-108°C |
| Purity | Typically ≥98% |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Density | 1.21 g/cm³ (estimated) |
| Smiles | ClCC(=O)NCC1=CC=CC=C1 |
| Inchi | InChI=1S/C9H10ClNO/c10-7-9(12)11-6-8-4-2-1-3-5-8/h1-5H,6-7H2,(H,11,12) |
| Storagetemperature | Store at 2-8°C |
| Molarrefractivity | 51.62 cm³ |
As an accredited N-Benzyl-2-Chloroacetamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 100g quantity of N-Benzyl-2-Chloroacetamide is supplied in a sealed, amber glass bottle with a tamper-evident cap and label. |
| Shipping | N-Benzyl-2-Chloroacetamide is shipped in tightly sealed, chemical-resistant containers to prevent leaks and contamination. It is labeled according to hazardous material regulations, stored in a cool, dry place, and handled with care. Transport complies with local and international chemical safety standards to ensure safe delivery and handling. |
| Storage | N-Benzyl-2-Chloroacetamide should be stored in a tightly sealed container, in a cool, dry, well-ventilated area away from source of ignition, heat, and incompatible materials such as strong oxidizers. Minimize exposure to moisture and direct sunlight. Ensure the storage area is clearly labeled and complies with chemical safety regulations. Use personal protective equipment when handling the substance. |
Applications of N-Benzyl-2-Chloroacetamide in Industrial ManufacturingWe are a dedicated manufacturer of N-Benzyl-2-Chloroacetamide, supporting multiple industrial sectors that demand consistent chemical quality and traceable supply for performance-driven applications. Below, we outline precise industry scenarios where this material forms a functional and regulated element of downstream manufacturing processes. 1. Pharmaceutical Intermediate SynthesisN-Benzyl-2-Chloroacetamide functions as a key intermediate in the multi-step synthesis pathways of select APIs, particularly in the production of certain centrally acting muscle relaxants and precursor molecules for anticonvulsants. Our material integrates at defined process stages for the formation of advanced intermediates, where robust specification adherence to pharmacopeial requirements ensures batch consistency and regulatory acceptability for downstream pharmaceutical manufacturing. Industry compliance standards
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2. Agrochemical Intermediate ProcessingThis material finds use as a defined building block for constructing selective herbicide and fungicide actives, where the 2-chloroacetamide motif enables downstream coupling reactions specific to propionanilide and triazole-based agrochemical agents. End users in the crop protection sector count on stringent impurity control supported by our in-process QC documents, maintained in accordance with national and regional agrochemical standards. Industry compliance standards
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3. Custom Specialty Chemical SynthesisDownstream producers use N-Benzyl-2-Chloroacetamide as a reactive handle in the preparation of bespoke specialty chemicals, including halogenated amide derivatives required for advanced polymer modification and fine chemical research. Process batches involve monitored addition and in-line analytics to satisfy client-driven product specifications and technical data package requirements for registration or internal R&D benchmarks. Industry compliance standards
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4. Research and Analytical Reagent PreparationSynthesis laboratories and analytical chemical providers rely on N-Benzyl-2-Chloroacetamide in the scalable creation of specialized standards, derivatization agents, and labeled reference compounds. We supply this grade under documented purity and lot traceability, so compliance-driven laboratories meet institutional and international reference material standards in regulated and academic research settings. Industry compliance standards
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Few chemicals walk the line between reliability and versatility quite like N-Benzyl-2-Chloroacetamide. From a manufacturer’s bench, this isn’t just another number in a catalogue—it’s a specialty compound whose value shows up in the hands of skilled chemists every day. Years spent refining its synthesis have taught us where its true strength comes in: not just purity, but steady, repeatable results across varied reaction environments.
Production hinges on a balance of quality, safety, and process efficiency. Our batches of N-Benzyl-2-Chloroacetamide reach purity levels verified through HPLC and GC-MS checks throughout the process, and it consistently presents as a white crystalline solid with minimal by-product trace. The melting point typically falls in the expected range that most organics labs demand, between 95 and 99 degrees Celsius. What’s notable about this compound is its controlled particle size and ease of weighing—a feature that matters more than catalogues let on, especially when technicians work at gram or kilo scale.
In our experience, chemists request this compound for a few solid reasons. It offers real value as an alkylating agent and an intermediate for further synthesis. The benzyl group brings a stability not found in simpler chloroacetamides, which in practice means reactions run cleaner, with fewer surprises during purification later. Teams committed to pharmaceutical intermediates often highlight how the dual presence of the benzyl and chloroacetamide groups means they can plan for selective derivatization steps without sacrificing overall yield.
In pilot-scale runs or in a well-established synthetic workflow, N-Benzyl-2-Chloroacetamide often finds itself at the center of early-stage route scouting. Process chemists favor it because it blends reactivity and control. When introduced as a chloroacetamide, the rate of substitution or alkylation comes down to a reliable window—one that tech transfer teams have come back and praised, particularly as they move from research to semi-commercial loads. No compound solves all problems, but this one often represents a step change compared to older, less selective chloroacetamides.
Sourcing feedback directly from users, we often hear about shorter purification runs and cleaner analytical data sets, all because the core material reached them in its optimal state. It cuts down waste collection, lessens the headache from repeat processing, and proves itself for new intermediate patents where bench-to-pilot scalability cannot accept surprises.
We’ve seen plenty of chloroacetamides flow through our reactors. Many lack the robust benzyl protection or give off-white, slightly impure solids that drag down process efficiency. N-Benzyl-2-Chloroacetamide, by contrast, delivers a crisp outcome, and the difference becomes unmistakable in scaled settings. As a team that oversees both small development and thousand-liter campaigns, we see where the small margins start adding up; less decomposition, tighter analytic profiles, and overall less downtime.
Compared to straight 2-chloroacetamide, the benzyl variant displays improved stability during storage and handling. Under ambient warehouse conditions, N-Benzyl-2-Chloroacetamide resists the slow hydrolysis or air-induced degradation other similar intermediates cannot avoid, which means less batch loss, less variance in downstream yield. In custom manufacturing requests, consistency from drum to drum is non-negotiable, and this molecule’s behavior over time stands above the crowd.
Incorporating any new intermediate often tests the limits of both upstream and downstream capacity. Our plant switched over to a new cascade for N-Benzyl-2-Chloroacetamide after learning that small inconsistencies—say, in pH or solvent batch impurities—could cascade into bigger issues at the output line. Teams went through multiple validation runs, not just relying on instrument readouts but checking manual logs, reviewing chromatograms, and recalibrating filtration regimes. These real-world lessons translate directly for the end-user, since each kilogram stems from a validated, reproducible process.
Cost always enters the conversation. While anyone could source a cheaper alternative abroad or from unknown suppliers, the difference shows up in time lost to reprocessing, impurities, or delays when a shipment does not meet expectations. Chemists accustomed to working with lesser material often find themselves stuck with hard-to-remove by-products. N-Benzyl-2-Chloroacetamide, manufactured to a tight spec right from origin, sidesteps those invisible costs—a fact that’s easy to confirm with side-by-side testing.
From a plant operator’s point of view, this compound rarely offers dull days. Reaction conditions demand patience—temperature ramps require steady attention. Filtration must shift depending on ambient humidity, which shows up in both crystallization speed and final cake dryness. Transporting finished product for packing, teams track static charge, temperature drift, and even the type of liner used, learning over time that what’s trivial for simpler molecules isn’t so for a specialty intermediate like this. Every batch record tells the story of its care.
Colleagues who troubleshoot loading and unloading in bulk find themselves double-checking seals on every drum. Despite years of experience, they never take shortcuts; stability matters, sure, but so does traceability, so technicians log every transfer by hand as well as digitally. It’s not uncommon to see project managers walk the aisles before a particularly large outbound shipment, inspecting each drum and verifying documentation, because no one wants to risk spoiling product integrity before it leaves the site.
Over time, interactions with research labs and process scale-up teams yield candid advice that shapes how we approach scale, documentation, and analytical support. Some customers, for instance, have incorporated the product into new chiral synthesis routes where product purity makes all the difference in the world. They note improvements in reaction reproducibility and overall less troubleshooting than with non-benzylated variants.
A European customer once described a run of N-Benzyl-2-Chloroacetamide as “the missing gear” in a complex organic machinery—reactions ran in sequence, with no loss of selectivity, and avoidable waste collapsed to a minor part of the process. Their analysis, compared to prior material from other sources, saw a full elimination of previously troublesome peaks. This kind of real-world testimonial doesn’t get captured in spec sheets or technical brochures but always makes its way back to us in routine phone calls and reports.
Manufacture of N-Benzyl-2-Chloroacetamide brings compliance front and center. Waste minimization, solvent selection, and air emissions fall under constant review—especially as regulations tighten and audit schedules become more stringent. Having navigated audits from both domestic and international inspectors, we’ve spent years documenting each critical quality attribute, retaining samples, and running stress stability checks long after the compound leaves our hands. These efforts aren’t optional; they’re honed by experience and the knowledge that our chemical’s journey doesn’t end at our back door.
Batch records extend beyond a single shift. Records—signed by operators, checked by supervisors, and scanned into secure archives—provide a trail that satisfies both ISO standards and customer peace of mind. Questions about provenance or transport get answered promptly, with a level of detail made possible only through hands-on familiarity with the product’s life cycle. Returning customers frequently request record sets from prior years, knowing they’ll receive data as fast as possible with full traceability.
Viewed purely from a molecular perspective, the presence of both a benzyl and a chloroacetamide group isn’t random. The benzyl substitution blocks unwanted secondary reactions, a feature that becomes evident once you’re troubleshooting a stuck reaction or low yield from a less protected variant. For process chemists, the ability to run extended reaction windows, or stage chemistry for overnight holds without panic about decomposition, makes a real difference. At large scale, every unplanned stoppage becomes a costly affair; this molecule’s structure quietly backs up uninterrupted operations.
As a starting point for more complex synthesis, N-Benzyl-2-Chloroacetamide bridges convenience and control. It stands up to both classic and delicate reaction conditions, proving valuable whether coupled or transformed into new moieties further down the route. Multiple contract customers, especially those developing APIs, attest to the compound opening up new chemical possibilities—reactions that wouldn’t work or gave low conversions before started showing promise.
Upstream investment in refining the reaction sequence, solvent reuse, and quality monitoring kept us ahead of surprises. We’ve known scale-up runs are only as good as the pilot data, so teams revisit old campaigns, searching for outlier data points ahead of large-order fulfillment. Whether it’s a metric tonne campaign or a confidential kilo run, lessons learned feed directly into process control tweaks in real time.
Having stood alongside colleagues in late-night troubleshooting sessions, the value of a consistent, specification-meeting product becomes clear. No one wants the late call about a failing batch. Curbing these risks comes from robust process design, not wishful thinking. By rejecting one-size-fits-all approaches and adjusting our routines batch by batch, we ensure fewer recalls, smoother handoffs, and greater researcher confidence.
Handling N-Benzyl-2-Chloroacetamide safely has changed over time. Early runs taught us to respect its reactivity profile and shelf-life. Storage routines emphasize dry, cool, well-sealed conditions—never taken lightly even on the busiest days. Operators rely on established PPE routines, weighing and transferring material under ventilated hoods. The compound’s relatively low volatility helps, but vigilance never gets relaxed. Technicians attend regular review sessions, sharing tales from the line and updating safety protocols so colleagues new and old avoid past missteps.
Reaction quenching, batch washing, and storage jar selection—these details may seem mundane, but cutting corners leads to material loss or safety incidents. Lab and plant teams submit near-miss reports as a matter of routine, using them to tighten protocols. The goal: steady output, safe hands, and zero incident stats by year’s end.
N-Benzyl-2-Chloroacetamide consistently stands apart from similar intermediates. Other chloroacetamides, devoid of the benzyl group, often present challenges—susceptibility to hydrolysis, reduced shelf-stability, and lab-to-lab inconsistency in chromatographic purity. Technicians appreciate the slightly higher molecular weight that aids in analytical confirmation. Customers looking to minimize unwanted by-products or side reactions make informed choices based on real-world performance, not glossy marketing copy.
Over hundreds of batches, side-by-side runs show this benzylated version requires fewer reworks or costly corrections. Less experienced users sometimes learn this the hard way, having run a reaction with generic 2-chloroacetamide and spending hours post-reaction on purification. Those switching to the N-benzyl form see immediate improvements, not just on paper but in reduced labor and time to target molecule.
Supplying N-Benzyl-2-Chloroacetamide means being ready for more than just an order. Teams field unusual requests: custom particle sizing, unique analytical confirmation, or documentation for regulatory filings. Our lab staff frequently consult directly with customers’ bench chemists, comparing notes, troubleshooting stubborn reactions, or proposing alternatives for challenging transformations. These working partnerships shape both current product batches and the R&D pipeline.
Many clients don’t need a perfect, one-size-fits-all solution; they need reliability and honesty when things don’t work as planned. Our experience shows that repeat customers value forthright discussion, especially if an order arrives during a seasonal rush or material shows a change in purity. Instead of boilerplate responses, teams tackle the issue jointly, offering side-by-side test material, analytical support, or expedited reprocessing to get research back on track.
Looking ahead, production methods continue shifting toward greener, less wasteful practices. Solvent recovery, process heat balance, and waste stream reduction remain top priorities on the shop floor. Real progress comes from incremental changes—switching from traditional hazardous solvents to safer alternatives, shortening cycle times without performance loss, and reclaiming energy for downstream units. These adjustments often escape notice outside the plant, but show up quickly in fewer drum disposals and lower energy usage.
Operators managing the site’s chemical inventory pay close attention to incoming raw materials, trace lots for every ingredient, and scrutinize all utility data in search of red flags. The plant’s goal: produce N-Benzyl-2-Chloroacetamide to meet stringent specs and minimize the footprint left on the surrounding community. This isn’t a separate sustainability department’s job; every hand involved owns a piece of the process, and innovations bubble up regularly from those who spend the most hours alongside the reactors.
Producing N-Benzyl-2-Chloroacetamide in volume isn’t just about following a recipe. Small tweaks echoed through years of manufacturing cycles—shifting agitation rates, evaluating alternative purification steps, adjusting crystalline cooling rates—all accumulated so that today’s product brings steadier performance than it did a decade ago. Industry partners, seasoned plant staff, and feedback from research collaborations contributed to a product that stands up to daily laboratory and industrial expectations.
Feedback loops stretch from order desk to final user, with each connection strengthening the reliability of the chemical and the trust that comes with knowing the source. Many users have come to treat our product as a fixture in their catalogue, with its name scrawled at the top of new project requests for everything from exploratory research to late-stage clinical trial intermediate manufacture. As the regulatory and technical landscape continues to evolve, so too does our dedication to consistent, safe, and reliable production of N-Benzyl-2-Chloroacetamide. These lessons, learned batch after batch on the concrete floors and in the busiest labs, guide the future more surely than any standard brochure or marketing promise.