Chemical manufacturers and users see cyclohexylamine in many different roles across industries. The formula is C6H11NH2, which puts it among the aliphatic amines. The structure is essentially a cyclohexane ring swapped with one amine group, giving it a balance between hydrophobic and basic properties. People searching for it in catalogues or safety data look for Cyclohexylamine CAS 108-91-8, but variants like Cyclohexylamine CAS 1761-71-3 pop up for different derivatives. Reliable suppliers like Sigma, Merck, TCI, Alfa Aesar, and Acros offer this material at both laboratory and industrial grades, showing the wide market demand for either Cyclohexylamine 99% or Cyclohexylamine 98% purities.
The basic parent structure lends itself to a full family of derivatives. Ask any synthetic chemist—the fine difference between Methyl Cyclohexylamine, Dimethyl Cyclohexylamine, Mono Cyclohexylamine, N Cyclohexylamine, N Ethyl Cyclohexylamine, N Isopropyl Cyclohexylamine, N Methyl Cyclohexylamine, NN Dimethyl Cyclohexylamine, or the larger Methylenebis Cyclohexylamine and its 4 4 Methylenebis Cyclohexylamine and 2 Dimethyl 4 4 Methylenebis Cyclohexylamine forms, opens up specific reactivity options. This is not trivia—it’s essential for polymerization, rubber additive formulation, or developing new active pharmaceutical ingredients. These variants all come with subtle changes in boiling point, reactivity, and solubility, which matters when optimizing a formulation or a process step. Industry rarely settles for one-size-fits-all.
Behind every drum or flask is a list of important details—the price of Cyclohexylamine, its boiling point, grade, and packaging size. Boiling point lands near 134°C. It’s a colorless liquid at room temperature, which means common sense safety rules apply since it has a strong odor and moderate vapor pressure at standard conditions. You’ll find supply in Cyclohexylamine 500g or Cyclohexylamine 1kg bottles for labs, and Cyclohexylamine 25kg drums for plant runs and factory scales. The distinction between laboratory grade and industrial grade is not just about purity numbers, but about handling requirements, documentation, and even supply chain logistics.
In manufacturing, people turn to cyclohexylamine for specific, high-value roles. Epoxy curing is a crowded market: many additives claim to be the “next big thing.” Still, the amine group in cyclohexylamine activates epoxy resins efficiently for coatings and adhesives. Paint and coating manufacturers appreciate the consistent reactivity, resulting in durable finishes. For corrosion inhibition, especially in steam lines and boilers, it prevents rust and corrosion by keeping surfaces passivated. This has an impact—not just in savings on replacement parts, but in keeping plants running longer without unexpected stoppage.
Chemical intermediates belong to a hidden but critical supply web. Cyclohexylamine acts as a precursor in the synthesis of accelerators, plasticizers, herbicides, and pharmaceuticals. When pharmaceutical chemists look for a building block that balances reactivity with manageable safety, they revisit Cyclohexylamine and its derivatives. It crops up as a side-chain in antihistamines or as a scaffold in cardiovascular agents. Rubber producers use it to create rubber additives, supporting better tensile strength and resistance in tires and industrial seals.
Cyclohexylamine price depends on global supply and demand, but feedstock costs also play a role. Recently, shifts in the price of cyclohexanol and cyclohexanone, often used as starting materials, pushed costs upward. Manufacturers pay close attention to refinery outputs and logistics—delays or shutdowns ripple quickly through downstream supply. Exchange rates and tariffs affect importers, too. Buyers looking for stable prices often secure multi-year contracts with major producers, especially when they need Cyclohexylamine 99% for sensitive processes. In smaller packaging, lab buyers face less price volatility, but bulk users in rubber, coatings, and pharma notice every cent of movement.
Sourcing Cyclohexylamine from Sigma, Merck, TCI, Alfa Aesar, or Acros means benefit from established quality control systems, technical support, and documentation covering cyclohexylamine CAS forms and technical data sheets. While generic and local producers may offer price advantages, quality stands front and center when the application involves pharmaceuticals, agrochemicals, or specialty coatings, where contaminant profiles and traceability are non-negotiable. Knowledgeable buyers scrutinize certificates of analysis and query about the trace levels of byproducts from related amines or ring-opened fragments.
Many production managers remember the headaches from new REACH regulations or tighter local health and safety rules around volatile amines. Cyclohexylamine isn’t hazardous in the same league as more exotic chemicals, but it requires responsible handling. Many companies invested in improved process containment and air monitoring. Waste management also matters—as cyclohexylamine can hydrolyze or evaporate, efficient recovery systems and proper labeling protect both workers and the environment. Producers who offer a robust supply chain for Cyclohexylamine CAS 108-91-8 and Cyclohexylamine CAS 1761-71-3 maintain their edge by staying ahead of compliance changes, demonstrating a commitment not just to profit but to sustainable business practices.
Years of plant-level experience show that upstream chemical design isn’t “one and done.” Batch-to-batch reliability simplifies life in quality assurance, but, the real strength comes from working with suppliers who understand the end-use—be it curing agents in epoxy, corrosion inhibitors for power plants, or rubber additives for automotive and industrial belts. Specialty forms like N Ethyl Cyclohexylamine or 4 4 Methylenebis Cyclohexylamine give engineers tools to achieve the performance targets customers demand. For pharmaceutical synthesis, buyers look for documentation, audit history, and support for drug master file submissions. This open dialogue between manufacturer and customer shapes the chemical market.
Customers expect flexibility in packaging—Cyclohexylamine 500g, 1kg, or 25kg, and options for laboratory or industrial grade. Speed in delivery makes a real difference, especially when a production line waits for a drum of curing agent or an urgent custom order for a pharmaceutical trial. I have seen factories plan production months in advance or pull in emergency stock last minute, and having a trusted partner comes down to more than price. Technical support, shelf life data, and storage recommendations matter.
Sustaining growth in chemicals like cyclohexylamine depends on more than just making enough product. Investment in R&D for cleaner synthesis, safer derivatives, and more efficient logistics can pay off. Advanced monitoring tracks purity and flags off-specification material before reaching customers. Producers who test several derivatives—N Isopropyl Cyclohexylamine, N Methyl Cyclohexylamine, NN Dimethyl Cyclohexylamine—gain an edge in custom and high-value markets.
As digital tools arrive in chemical supply, streamlined ordering and real-time inventory check-in remove days from delivery times. Building traceable supply for both Cyclohexylamine for epoxy curing and Cyclohexylamine corrosion inhibitor protects customers from disruption. With the right feedback loop from the market, producers keep innovating—making new forms like Methylenebis Cyclohexylamine for resins or tailored blends for rubber and pharmaceuticals. Every batch, every barrel, every customer question brings new insight. For chemical companies invested in cyclohexylamine, the future relies not just on technical depth, but on listening and responding to the real-world needs of industry.