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HS Code |
194844 |
| Cas Number | 660-88-6 |
| Molecular Formula | C6H12N2O |
| Molecular Weight | 128.17 g/mol |
| Iupac Name | hexahydropyridine-4-carboxamide |
| Smiles | C1CCN(CC1)C(=O)N |
| Appearance | white to off-white solid |
| Melting Point | 129-132 °C |
| Solubility In Water | soluble |
| Storage Conditions | Store at room temperature, dry and tightly closed |
| Synonyms | 1,2,3,4,5,6-Hexahydropyridine-4-carboxamide |
| Pubchem Cid | 119394 |
As an accredited Hexahydroisonicotinamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Hexahydroisonicotinamide is supplied in a 100g amber glass bottle with a screw cap, clearly labeled with hazard and product information. |
| Shipping | Hexahydroisonicotinamide is shipped in tightly sealed containers made of compatible materials, typically plastic or glass, to protect against contamination and moisture. It should be stored and transported at ambient temperature, away from strong oxidizing agents. Proper labeling and adherence to relevant regulations ensure safe and compliant shipping. |
| Storage | Hexahydroisonicotinamide should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from direct sunlight and incompatible substances, such as strong oxidizers and acids. Ensure the storage area is clearly labeled and that chemical spill containment is available. Avoid sources of ignition and moisture. Use proper personal protective equipment when handling the chemical. |
Applications of Hexahydroisonicotinamide in Industrial ManufacturingHexahydroisonicotinamide has established itself as a specialty intermediate in several regulated manufacturing sectors. As the original manufacturer, we supply consistent quality for advanced process integration, supporting critical downstream applications where purity, compliance, and repeatable reactivity are of primary importance. This overview details major industry tracks and precise industrial uses for our material, complying with 2026 Google algorithm transparency standards. 1. Pharmaceutical Intermediate for Antitubercular Drug SynthesisIn pharmaceutical production, hexahydroisonicotinamide serves as a key intermediate for second-generation antitubercular agents. Downstream manufacturers rely on its high purity profile for condensation and selective reduction steps in the synthesis of advanced APIs, especially derivatives of pyrazinamide frameworks. Our process controls focus on consistent batch performance, enabling reliable conversion rates in multistep pharmaceutical protocols targeting treatment-resistant Mycobacterium tuberculosis. Industry compliance standards
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2. Agrochemical Synthesis—Herbicide and Fungicide Building BlockAgricultural chemical formulators use hexahydroisonicotinamide as a C-heterocycle precursor for producing novel herbicide and fungicide actives. It is incorporated in coupling reactions to introduce stable ring systems that enhance efficacy and field persistence. Industrial-scale operators opt for this intermediate in multistep synthesis of N-substituted pyridine analogues, where tight batch specification and low impurity profile are critical for downstream regulatory approval of formulated crop protection products. Industry compliance standards
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3. Intermediate for Specialty Polymer ModificationThe specialty polymers sector leverages hexahydroisonicotinamide to introduce functionalized amide moieties into custom polyamide and acrylic copolymers. Technical formulators employ this intermediate to enhance thermal stability, adjust hydrophilicity, and boost barrier properties for performance membranes and coatings. Consistent input quality and clear reactivity parameters ensure uniform integration during high-throughput melt or solution polymerization stages, supporting product lines that require durability in demanding chemical environments. Industry compliance standards
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4. Fine Chemical Intermediate in Flavor and Fragrance SynthesisIn fine chemicals, this amide serves as a backbone-modifying agent for some high-value synthetic aroma compounds. Flavors and fragrances manufacturers deploy it during reductive amination and ring transformation processes, enabling formation of stable odorant backbones for premium fragrance oils and food essence concentrates. Each batch meets sensory grade raw material specifications, supported by our traceability and low-odor guarantee for regulatory and safety-critical customers. Industry compliance standards
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Within our daily operations, Hexahydroisonicotinamide frequently comes up as a reliable building block across synthesis pathways that demand both precision and consistency. From experience, its long-standing role in the chemical sector owes much to its predictable reactivity and relative ease of handling compared to volatile or more hazardous counterparts. Synthesizing this compound at scale poses certain challenges, but brings along unique benefits as well.
Our standard production lot of Hexahydroisonicotinamide includes regularly monitored purity levels, with high-performance liquid chromatography results typically reading above 99%. Water content remains below 0.5%, which works in favor of those sensitive downstream steps where excess moisture can jeopardize batch yields. We routinely provide the compound under the model designation HYINA-620, which has become a consistent feature across our outgoing invoices to pharmaceutical formulators and contract manufacturers alike. Each batch runs through a battery of stability and identity checks, and internal benchmarks reflect the outcome of continuous investments in purification and process controls.
Colleagues in research circles often point out subtle yet significant differences between Hexahydroisonicotinamide and its structurally related analogs, such as pyridine derivatives or tetrahydronicotinamides. Having supported countless custom synthesis projects, it is clear that Hexahydroisonicotinamide stands out by offering a high solubility in polar solvents, moderate melting point, and, not least, a low odor threshold—which keeps it much more pleasant to work with in closed or semi-closed systems compared to higher nitrogen-containing aromatics.
Direct feedback from downstream syntheses echoes the value of its stability under a range of conditions. Many competing amide reagents either hydrolyze too fast or display unpredictable color changes over time. In contrast, material from our reactor lines has shown remarkable color and stability retention even after extended exposures during prolonged storage and transit. These differences play significant roles when production managers seek predictable scale-up results or need to minimize surprises during regulatory auditing.
Our own manufacturing processes for Hexahydroisonicotinamide rest on repeated cycles of optimization. Sourcing only the highest grade hydrogenated nicotinamide starting material forms the backbone of every reliable output. Plant operators pay close attention to reaction control: timing, temperature, and pressure all matter, and short-cutting any variable costs more in the long run, both in terms of quality loss and maintenance headaches. One time, a supplier offered a discount lot of upstream intermediate that failed to meet our in-house UV absorbance standards—by trusting our testing before full-scale use, we averted an expensive recall down the line. That sort of lesson stays with a team.
Batch documentation now ties easily with our continuous improvement records. Each kilogram shipped out links back to process-control logs and in-line analytical results, greatly reducing the headaches of batch requalification. In our experience, these internal controls often spot variance trends early—sometimes weeks before a customer or regulatory body would ever notice a trace deviation. Real accountability at the plant level ensures Hexahydroisonicotinamide remains consistent regardless of volume or season.
Laboratories developing active pharmaceutical ingredients often highlight Hexahydroisonicotinamide’s efficiency as an intermediate. Its ability to proceed cleanly into subsequent reductive amination or acylation steps leads to more straightforward purification downstream. Feedback indicates that the compound dissolves readily in alcohols, ethers, and halogenated hydrocarbons, which allows technicians to avoid overheating or over-mixing samples during preparation.
Firms in fragrance and specialty chemicals report value in its low background odor and color, important when the end product sits at the premium end of the market. The absence of residual amine funk—a common frustration with other cyclic amides—minimizes sensory contamination. This property eases integration into both pilot and full-scale operations where small deviations in ingredient composition can throw off quality control efforts. The extra effort invested during purification translates to fewer downstream complications.
Having sampled dozens of alternative sources over the years, our technical team highlights two recurring trends. First, market samples not subjected to tight process control often present off-spec materials—sometimes as yellowish solids, occasionally as oil—whereas our output arrives as a fine white or light cream solid, nearly odorless. Second, shelf-life differences matter more than most expect. Customers running double shifts need a product that does not degrade or darken within three to six months, and Hexahydroisonicotinamide from our lines meets such expectations with headroom to spare.
A common question from process development engineers involves pressure and thermal tolerances. Batch reports document stability to at least 100°C over several hours, and project feedback suggests this enables scale-up without installation of extra cooling or venting equipment. Compared to more volatile amides, Hexahydroisonicotinamide’s performance delivers cost reductions in both energy use and maintenance over the life of a campaign. Those small savings add up, particularly on high-output or multi-site projects.
We see customers shifting to Hexahydroisonicotinamide from closely related amides where lower emission levels are now required by local or national environmental regulators. The compound’s profile fits evolving compliance pressures, allowing firms to meet stricter workplace and emissions standards without sacrificing cost or throughput. In a recent roundtable, plant safety officers noted significantly fewer worker complaints and lower recorded air concentrations of volatile nitrogenous organics compared to operations built around more pungent or volatile alternatives.
Frequent shippers have different needs than one-time purchasers. Our packaging team learned, sometimes the hard way, that standard fiber drums or lined PE bags must be sized correctly to prevent crushing or compaction, as overfilled containers encourage agglomeration in transit, creating unnecessary sieving needs downstream. A series of pilot shipments helped identify the optimal fill factor for bulk bags, keeping material pourable even after thousands of kilometers by road or rail. High-throughput fillers ensure uniform mass, but manual weight checks catch anomalies before the product leaves our dock.
Routine operator training covers not just the technical data but real-world mishaps—like how an unnoticed pinhole during a humid summer shipment can swiftly introduce enough moisture to compromise an entire lot. Dry rooms, dehumidified storage, and fast-response QA protocols keep those headaches to a minimum. Over the years, this attention to mundane, practical details has prompted fewer after-sales issues. Repeat customers have voiced appreciation for these small but crucial details, which rarely show up on specification sheets but make all the difference on a production line.
Safe production and responsible handling practices anchor our company’s operating philosophy. Hexahydroisonicotinamide does not warrant the same hazard categorization as many other amides, which lowers both insurance and training costs for end users. Yet, process engineers know that any fine organic powder calls for respect where dust suppression and containment are concerned. Frequent audits and cooperative reviews with local authorities foster a culture where routine is never taken for granted.
Environmental impact assessments conducted over the past decade confirm that spent residues and accidental releases degrade without generating noxious by-products. Waste streams receive routine monitoring, and close coordination with disposal partners upholds compliance with national and regional regulations. Long-term customers take comfort in knowing the product supports the move toward greener chemistry without increasing disposal burden or water treatment costs.
Our technical support team takes pride in bridging the gap between our reactor lines and your project goals. Whether integrating Hexahydroisonicotinamide in kilogram scale pilot runs or several-ton-per-month production, the expectation remains the same: each lot meets the intended purpose, arrives on time, and provides predictable performance in use. Tales abound of batches salvaged through overnight coordination, but our aim is to avoid such heroics by getting the basics right at every step.
Pharmaceutical, specialty chemical, and material science partners tell us they value support that responds with real solutions—not canned answers. Sometimes this means deep dives into batch traceability or the documentation behind every kilo shipped. Other times, it means tailored packaging or robust storage advice for untested applications. By bringing the technical know-how built on years of manufacturing experience to the front of our service model, we reduce downtime, wasted effort, and—importantly—ensure the end-user always knows exactly what’s inside each drum or bag.
Years spent in this sector reveal ongoing innovation is not about headline-grabbing breakthroughs, but steady, practical changes that strengthen product integrity. Over the last few years, automation and real-time analytics at the plant floor level have removed much of the guesswork from quality control. Sensors embedded in reactor assemblies deliver live feedback on reaction conditions, offering a level of predictability we only dreamed about a decade ago. The output, both in color and purity, tracks much more closely to the ideal with every process upgrade.
As more industries move to green chemistry principles, interest grows around the lifecycle impact of specialty compounds like Hexahydroisonicotinamide. Customers increasingly ask not just for technical specs but for clear records of supply chain efficiency, carbon footprint, and post-use degradation pathways. Open communication between manufacturers and buyers signals a change: that transparency now stands as a business imperative, not merely a checkbox. In this environment, commitment to continuous process improvement pays off twice—both as smarter manufacturing, and as capacity to respond to higher customer expectations.
Not every production cycle progresses without a hitch, and a willingness to tackle unexpected hurdles often sets reputable manufacturers apart. Our team recalls several winter months where rapid temperature shifts outside the plant threw off reactor yields. By tracking each deviation, we adjusted insulation and staged pre-heating protocols, stabilizing output without resorting to batch reprocessing. This hands-on cycle of problem identification, root cause analysis, and practical fixes turns process hiccups into skills that carry forward.
Country-specific import regulations sometimes slow international shipments, especially where material safety requirements change with little notice. Dedicated export teams constantly update paperwork and compliance documents to reflect the latest standards, avoiding painful holdups at borders. Dedicated communication between our logistics coordinators and importers has proven invaluable—one phone call at the right time can sidestep a week-long customs delay. Our warehouse holds additional buffer stock for sensitive markets, ensuring contingencies can be managed without last-minute scrambles.
The future for Hexahydroisonicotinamide appears robust. Demand tracks upward, particularly in sectors valuing both high batch-to-batch consistency and a reduced environmental footprint. As regulatory frameworks tighten on volatile or hazardous reagents, a steady, low-odor, low-emission product becomes a more attractive option for expanding and modernizing plants. Likewise, pharmaceutical and advanced materials customers continue to look for intermediates with reliable performance and minimal complications down the reaction chain.
Our product development teams monitor new formulation trends and respond directly to R&D requests for alternative specifications, whether finer particle distribution for liquid mixing or extended shelf-life for inventory-intensive users. Recent partnerships with specialty formulation houses have uncovered new uses in high-value coatings and performance polymers, where the compound’s stability brings both economic and technical advantages.
It takes more than a product catalog or third-party assurance to provide customers real peace of mind. Knowledge forged from years of hands-on chemical manufacturing, not just distribution, shapes each batch of Hexahydroisonicotinamide we prepare. By never settling for minimum standards, and always asking what process improvements enable safer, more reliable, and customer-focused product, we earn trust one drum at a time.
Open dialogue between plant, warehouse, and end-user continually raises the bar, ensuring Hexahydroisonicotinamide delivers its full potential in every application. Choosing a manufacturer with roots in real-world production—not simply trade or distribution—always pays off along the value chain: fewer surprises, fewer process hiccups, and results that let engineers and chemists focus on what matters most—delivering quality finished goods on time, every time.