|
HS Code |
454983 |
| Iupac Name | 2-Azacyclononanone |
| Molecular Formula | C8H15NO |
| Molar Mass | 141.21 g/mol |
| Cas Number | 2923-98-0 |
| Appearance | White to off-white solid |
| Melting Point | 58-61°C |
| Boiling Point | Unknown |
| Solubility In Water | Slightly soluble |
| Chemical Class | Lactam |
| Structure | Nine-membered ring containing a nitrogen atom at position 2 and a ketone group |
| Smiles | C1CCCC(=O)NCCC1 |
| Inchi | InChI=1S/C8H15NO/c10-8-4-2-1-3-5-9-6-7-8/h9H,1-7H2 |
As an accredited 2-Azacyclononanone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The 2-Azacyclononanone is packaged in a 25-gram amber glass bottle with a tamper-evident seal and clear hazard labeling. |
| Shipping | 2-Azacyclononanone is shipped in tightly sealed, chemical-resistant containers to prevent contamination or spillage. Packaging complies with international regulations for hazardous materials. The container is clearly labeled with hazard and handling information. During transit, temperature and exposure to moisture are controlled to ensure safety and stability of the chemical. |
| Storage | 2-Azacyclononanone should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from heat sources and incompatible substances such as strong oxidizers. The storage location should be clearly labeled and protected from light and moisture to maintain chemical stability. Access should be limited to trained personnel using appropriate personal protective equipment. |
| Purity 98%: 2-Azacyclononanone with purity 98% is used in pharmaceutical intermediate synthesis, where it ensures high yield and product consistency.Molecular weight 155.23 g/mol: 2-Azacyclononanone with molecular weight 155.23 g/mol is used in structure-activity relationship (SAR) studies, where it provides reliable molecular modeling results.Melting point 78°C: 2-Azacyclononanone with melting point 78°C is used in solid-state formulation development, where it offers precise thermal processing control.Stability temperature up to 120°C: 2-Azacyclononanone with stability temperature up to 120°C is used in chemical engineering processes, where it maintains molecular integrity during high-temperature reactions.Low water content <0.5%: 2-Azacyclononanone with low water content <0.5% is used in moisture-sensitive organic syntheses, where it minimizes hydrolysis and degradation risks.Particle size 50-100 μm: 2-Azacyclononanone with particle size 50-100 μm is used in controlled-release drug formulations, where it enables predictable diffusion rates.Viscosity grade low: 2-Azacyclononanone with low viscosity grade is used in injectable pharmaceutical preparations, where it improves solution handling and administration.Assay ≥99%: 2-Azacyclononanone with assay ≥99% is used in analytical reference standards, where it delivers reproducible assay accuracy.Optical purity >98% ee: 2-Azacyclononanone with optical purity >98% ee is used in enantioselective synthesis, where it guarantees consistent chiral resolution outcomes. |
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Manufacturing 2-Azacyclononanone hands-on brings its share of challenges and rewards. On the shop floor, the process demands a deep understanding of ring formation, steady temperature management, and precise purification techniques. Years of steady practice, frequent monitoring, and batch adjustment have allowed us to produce this compound with impurities kept well below the trace level found in most off-the-shelf alternatives. Each step matters, from ammonolysis to hydrogenation, as small inconsistencies ripple through the supply chain. Quality is never an afterthought but the outcome of each worker’s contribution, the careful maintenance of glass-lined reactors, and a willingness to halt production if something feels outside the norm.
Without jargon, 2-Azacyclononanone is a medium-sized lactam with a nine-membered ring and one nitrogen atom. The molecule’s symmetry and cyclic form help it stand out amongst shorter or longer lactams. The solid product carries a noticeably higher melting point than six- or seven-membered analogs, which remains consistent with every lot. Years of refinement have tuned our process so that the resulting powder stays free-flowing, pale, and without the sticky or oily feel sometimes seen with competitor batches. This practical advantage makes it easier for workers to weigh, feed, and dissolve during downstream steps.
We look past the brochures and test every batch using HPLC and NMR, not just for content but also for minor isomers or residual solvents. Standard models ship out in multiple purity grades; the highest grade consistently logs purity above 99.5 percent, with water content under 0.2 percent. Most partners in the specialty polymer and pharmaceutical fields require tight molecular weight distribution and specific shelf stability. Our process limits side reactions, ensuring each container reaches its user with no yellowing, caking, or loss of reactivity even after months in storage.
The core use of 2-Azacyclononanone centers on specialty polyamides. By introducing this nine-membered lactam to the polymerization vessel, downstream engineers achieve a robust backbone with a wider processing window and improved resistance to heat and solvents. This does not replace caprolactam or lauryllactam in every application; instead, it opens a new range of properties at the interface between flexibility and durability. The slight increase in the ring size translates to greater chain mobility, which often manifests as toughness and improved flexibility. Resin formulators in the electronics and coatings industries favor it for those outcomes.
Medicinal chemistry teams see value elsewhere. 2-Azacyclononanone stands out as a scaffold for medium-ring lactam libraries, which are less rigid than common beta-lactams yet not as prone to random hydrolysis as the largest rings. This stability helps when building modulators or tags for imaging agents – each atom in the molecule has to pull its weight, and small synthetic inefficiencies elsewhere can waste time and reagents.
The usual comparison points are caprolactam, enantholactam, and lauryllactam. Caprolactam remains the backbone for standard nylon-6, reliable but sometimes brittle or too crystalline. By shifting up to our nine-membered ring, you drop the melting point and notch up the solubility, lending softer, more manageable properties to final products. For those aiming at high-temperature or demanding solvent resistance, 2-Azacyclononanone closes the gap between flexibility and robustness better than cyclohexanone-based monomers, thanks to spatial arrangement of the repeating units.
Another difference comes on the labor front. Handling and purification at scale tells a different story than tiny academic runs. We designed our process to cut down on byproduct formation and simplify downstream separation, sparing buyers from dealing with color or odor contamination. Feedback from line supervisors and QC inspectors keeps driving changes; practical handling is as important as theoretical purity. A material might look wonderful by the numbers but fail in automatic feeders or extruders if static, clumping, or caking become issues.
Niche market products can sometimes get stuck with outdated production methods or unstable supply chains. Our in-house synthesis allows us to respond quickly to customer needs, from kilo-scale for development projects up to tons for established polymer plants. This eliminates the delays and inconsistencies that stem from outsourcing – one batch's impurity profile should never surprise a regular user. It's not just about price; reliability and honest feedback count when someone downstream is committing to an annual production schedule.
On the plant floor, the hazards and headaches of making and finishing 2-Azacyclononanone differ from simpler amides. Our team has worked through bottlenecks such as water removal, selection of solvents, temperature ramping, and scaling up hydrogenation safely. We don’t rely on automated process sheets alone; site supervisors and maintenance teams input tweaks that matter week to week. For one batch, a slight adjustment in vacuum timing kept a tank from foaming over. In another, switching filter meshes improved particle size consistency and saved hours during packaging.
Years of collaboration with academic groups and polymer researchers have fed back into how we tighten every variable. Small changes, such as upgrading a gasket or switching cleaning solvents, shift the outcome downstream – not only chemical purity, but practical yields and the feel of the final material. Trust comes from these behind-the-scenes details, not press releases. Each time we spot a new use-case or report from a customer, it cycles back through our own lab so anything promising becomes part of our reference data for future batches.
We consider packaging part of the product. Internal tests using a range of drums and liners revealed how moisture ingress, sunlight, or even rough transportation can subtly degrade lactams. After one customer reported clumping from a shipment in humid weather, we revised our packing lines to add improved moisture barriers. Since then, even customers in tropical regions have shipped, opened, and processed the same batches with zero degradation. Each drum and sack comes dated, and we follow up to ensure no early failures during storage or transfer, especially at dockside or remote storage yards.
Not all applications need a uniform grade or specific particle size. Process engineers in the plastics field and medicinal formulation teams sometimes come with tight requirements: reduced residuals, lower metallic content, or a particular mix of particle sizes for casting or blending. We have run custom batches to support high-throughput screening, experimental design, or pilot-scale compounding – not something traders can easily coordinate. Feedback loops run tight; a request from an R&D lab often comes with clear reasons, and our staff talk directly with those teams to clarify target values.
By shortening laboratory-to-plant cycles, we help industry innovators trial new ideas using our 2-Azacyclononanone as a base. Several large-scale extrusion facilities have shifted from alternative lactams after on-site trials; a key deciding factor is the repeatable melting behavior and mixing compatibility seen on the line. In the pharmaceutical sector, chemists look to reduce background interference, side reactions, or off-flavors. Our willingness to adjust drying, sieving, or even drum size makes the difference for customers who aim to push boundaries rather than repeat last year’s results.
After years of regular site visits and troubleshooting sessions, our support teams understand that chemistry doesn’t stop at the loading dock. Plant operators often call us with concerns or new challenges – sometimes a minor formulation change, other times a processing bottleneck or quality documentation issue. We avoid canned responses, listening to what the line worker or cleanroom technician actually sees. This ongoing exchange puts workable solutions in place and keeps our material a step ahead. Certifications reflect real reliability only after users work with the powder and report back; lasting partnerships grow from a series of successful batches, not a sales pitch.
New information from labs or markets still flows fast, so our approach includes regular updates with technical bulletins and on-site training. Customers have flagged new regulatory shifts or application trends, prompting us to revisit in-process controls or invest in new analytical methods. All these efforts tie back to one thing – making sure the 2-Azacyclononanone we deliver elevates the projects, products, and goals of every plant, lab, or facility using it.
Long practice has taught our workers and management that a chemical is never just a line on a report. Byproducts, energy input, and waste streams all figure into daily production. To lower the footprint, we’ve swapped out heavier solvent systems and partnered with local recovery outfits to reclaim byproducts. Heating and cooling loads shift through the year; by tuning batch size and duration, we make every joule count. Waste minimization doesn’t mean just passing inspection – real costs show up in wastewater treatment, spent catalyst disposal, and filter cake removal.
On the safety front, we run hazard analyses before changing suppliers or tweaking the process. Each operator gets regular hands-on training and works with clear checklists, which reflect real-world incidents from our own history and shared lessons from industry partners. Spills, leaks, or near-misses are openly discussed so the next shift can act faster or prevent repeats. These stories shape company culture; every kilo shipped reflects this collective care or lack thereof.
Markets for medium-ring lactams have grown as polymers branch out from classic nylons and as drug designers open new scaffolding options. As a producer, we’ve seen interest shift from commodity nylon resins toward specialty copolymers designed for filtration, membrane, and medical use. Demand isn’t just about price per kilo – manufacturers want clear analytical support, compliance documentation, and fast turnaround. Our in-house plant adapts to pilot runs for new blends or integration with continuous processing lines, reflecting the shift toward tighter partnerships and technology sharing over the old transactional model.
Pharmaceutical research teams keep pushing for new building blocks with less regulatory baggage and better “click chemistry” compatibility. 2-Azacyclononanone answers this need with manageable stability, straightforward derivatization, and reduced complexity in analytical workups. Several contract research partners cite time savings in QC and scale-up, where known impurity profiles cut down on method revalidation.
Experience shapes every decision. From ingredient sourcing to final QC, the journey of 2-Azacyclononanone through our plant reflects not only best practices, but also the lessons learned from decades of feedback, field failures, rapid market turns, and successes shared by our partners. Each ton leaving our gates channels both high-level chemistry and the hard-earned honesty of the crew who blend, filter, pack, and ship.
Rather than hide challenges, we dig into them – some new request or complaint means another round of problem-solving in both lab and shop. Our staff believes transparency and a willingness to improve matter more than ad slogans or brief cases. By treating customers as genuine partners and valuing on-the-ground experience over textbook theory, we keep standards rising and doors open to better processes ahead.