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N-Cyclohexyl-4-Methylbenzenesulfonamide

    • Product Name N-Cyclohexyl-4-Methylbenzenesulfonamide
    • Alias ANSYM乙
    • Einecs 247-384-1
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    610173

    Cas Number 13994-60-6
    Molecular Formula C13H19NO2S
    Molecular Weight 253.36
    Appearance White to off-white solid
    Melting Point 120-124°C
    Solubility In Water Slightly soluble
    Purity Typically ≥98%
    Storage Temperature Room temperature
    Synonyms N-Cyclohexyl-p-toluenesulfonamide
    Smiles Cc1ccc(cc1)S(=O)(=O)N2CCCCC2
    Chemical Class Sulfonamide

    As an accredited N-Cyclohexyl-4-Methylbenzenesulfonamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing White, HDPE bottle labeled "N-Cyclohexyl-4-Methylbenzenesulfonamide, 100g," with hazard pictograms, lot number, and manufacturer details.
    Shipping N-Cyclohexyl-4-Methylbenzenesulfonamide should be shipped in tightly sealed containers, clearly labeled, and protected from moisture and physical damage. Transport according to local and international regulations for chemicals. Avoid exposure to extreme temperatures. Suitable cushioning and secondary containment are recommended to prevent leaks or spills during transit. Handle with appropriate safety measures.
    Storage N-Cyclohexyl-4-Methylbenzenesulfonamide should be stored in a tightly sealed container, in a cool, dry, well-ventilated area away from incompatible substances such as strong oxidizers and acids. Protect from light and moisture. The storage area should be clearly labeled, and access limited to trained personnel. Use secondary containment if needed to prevent spills or leaks.
    Application of N-Cyclohexyl-4-Methylbenzenesulfonamide

    Applications of N-Cyclohexyl-4-Methylbenzenesulfonamide in Industrial Manufacturing

    N-Cyclohexyl-4-Methylbenzenesulfonamide (NCMBSA) delivers exceptional thermal stability, plasticizing properties, and compatibility with engineering polymers, making it a trusted additive across select advanced manufacturing sectors. Below we detail field-proven application scenarios, with documented requirements for compliance, dosage, integration in downstream processing, and the nature of finished products incorporating NCMBSA supplied directly from our production lines.

    1. High-Performance Engineering Plastics (Nylon Systems)

    NCMBSA enhances the plasticity and flexibility of polyamide resins, particularly in α-nylon (PA6, PA66) compounding, where heat resistance and electro-insulating properties remain critical. Customers deploy this sulfonamide derivative to adjust glass transition temperature without causing hydrolytic degradation, making it invaluable for components with demanding dimensional stability requirements in automotive, electronics, and consumer fields.

    Industry compliance standards

    • ISO 1874-1: Polyamide (PA) molding and extrusion materials
    • UL 94: Flammability requirements for plastic materials
    • IEC 61249-2: Materials for printed boards and other interconnecting structures
    • RoHS Directive (2011/65/EU) for hazardous substance limitation

    Typical usage ratio

    • Concentration typically falls within 2–7 wt% of total resin formulation, and formulators may adjust to 1.5–4 wt% for applications prioritizing electrical insulation or above 5 wt% for automotive under-the-hood parts demanding improved flexibility.

    Downstream process integration

    • NCMBSA enters the extruder during premixing or melt blending with polyamide pellets and other additives (antioxidants, fibers, pigments); precise temperature control below decomposition threshold is maintained to avoid property loss.

    Final product types

    • Glass fiber-reinforced PA6/PA66 electrical connectors
    • Injection-molded automotive under-the-hood parts
    • Low-smoke zero-halogen cable jackets and housings
    • Precision gears and wear-resistant mechanical assemblies

    2. Sulfonamide-Based Plasticizers in PVC Cable Compound

    NCMBSA acts as a secondary plasticizer in flexible and semi-rigid PVC cable compounds, where it assists primary phthalate or terephthalate systems by lowering hardness and enhancing low-temperature flexibility. Customers in the wire and cable sector deploy it to minimize migration and meet flame retardancy requirements without compromising processing efficiency or end-use mechanical properties.

    Industry compliance standards

    • IEC 60227: Polyvinyl chloride insulated cables (up to 450/750V)
    • UL 1581: Reference standard for electrical wires, cables, and flexible cords
    • REACH (EC 1907/2006) chemical safety requirements
    • EN 50363-3: Insulating, sheathing and covering materials

    Typical usage ratio

    • Formulations commonly use 3–8 phr (parts per hundred resin) alongside 25–35 phr primary plasticizers; adjustment depends on desired flexibility, anti-migration performance, and resistance to leaching or volatilization during cable use.

    Downstream process integration

    • In mixing lines, the material is combined with PVC resin, primary plasticizer, stabilizers, and fillers in the Banbury batch mixer or continuous kneader before extrusion, ensuring homogeneous distribution before granulation and wire coating.

    Final product types

    • Power and signal cable insulation (H05VV-F, H07V-U)
    • Flexible sheaths for instrumentation and data cables
    • Automotive wire harness insulation
    • Fire-retardant PVC compound for appliance cords

    3. Heat-Resistant Adhesive Formulations (High-Temperature Binders)

    Specialty adhesive manufacturers employ NCMBSA as a modifier in one-component and two-component bonding systems targeting applications that face continuous or intermittent exposure to elevated temperatures. Its inclusion increases thermomechanical durability, prevents embrittlement, and optimizes the flowing behavior during adhesive curing, especially for flexible substrates and engineering composites.

    Industry compliance standards

    • SAE AMS 3269: Structural adhesives for high-temperature applications
    • ASTM D1002: Lap shear strength test for metal adhesives
    • GB/T 7124-2008: Test method for adhesive tensile lap-shear strength
    • GMP for adhesive grades (if for automotive/interior contact)

    Typical usage ratio

    • Introduced at 1–5 wt% of total adhesive mass, dosed up to 8 wt% when high elongation retention is required under heat; level is optimized for each binder polymer (PU, epoxy, polyamide) system based on substrate compatibility checks.

    Downstream process integration

    • NCMBSA is dispersed in the resin base, with mixing during initial prepolymer weighing or as a hot-melt additive; full integration ensured before catalyst initiation or filler inclusion to prevent phase separation.

    Final product types

    • High temperature automotive structural adhesives
    • Flexible electronic assembly adhesives
    • Industrial hot melt tapes for electronics and appliances
    • Heat-resistant fiber composite bonding agents

    4. Specialty Coatings for Thermoplastic Polyurethanes (TPU)

    Coating formulators incorporate NCMBSA as a softening agent to improve TPU-based surface flexibility and wear resistance for synthetic leather, conveyor belt coatings, and industrial film applications. Its performance stabilizes at elevated baking or calendaring temperatures, maintaining film integrity and reducing brittleness over time, particularly for heavily stressed or flexed surfaces.

    Industry compliance standards

    • ISO 20344/20345: Materials for footwear and protective equipment
    • EN 14362-1: Determination of certain aromatic amines (for restricted substances)
    • REACH SVHC compliance
    • DIN EN ISO 4287: Polymer surface structure requirements

    Typical usage ratio

    • Usage generally ranges from 2–6 wt% of coating formulation; lower dosages address thin film waterproofing, while upper tier is set for elastic functional coatings on substrates subject to dynamic stress and cyclic bending.

    Downstream process integration

    • NCMBSA is dissolved in the TPU dispersion prior to addition of pigments, crosslinkers, or thickeners; for solvent-free operation, pre-mix with molten TPU in a twin-screw extruder before final casting or dip-coating application.

    Final product types

    • Synthetic leather for automotive and electronics upholstery
    • Protective conveyor and transmission belt coatings
    • Wear- and flex-resistant industrial TPU films
    • Specialty gloves and footwear coatings

    5. Flexible Photopolymer Resins (UV-Curable Systems)

    NCMBSA is deployed as a plasticizer and flexibilizer in photopolymerizable resin systems, where it controls the elastic modulus and stress relaxation in finished 3D-printed, UV-cured, or screen-printed parts. Leading users specify it when formulating for optical transparency and flexible tactile response, balancing cure speed and end-use impact durability in advanced prototyping and production.

    Industry compliance standards

    • ISO 4049: Dentistry—Polymer-based restorative materials (for dental materials)
    • USP Class VI: Biocompatibility screening (medical/biotechnical)
    • EN 71-3: Safety of toys—Migration of certain elements (for toy-grade applications)
    • ISO 10993: Biological evaluation of medical devices (if used for biocompatible devices)

    Typical usage ratio

    • Often applied at 1–3 wt% for rigid-flexible balance in functional prototypes; content can be raised to 4 wt% to maximize softness for flexible electronic and wearable devices, after confirming photoinitiator tolerance.

    Downstream process integration

    • NCMBSA is integrated into the resin base during the bulk-mixing stage with monomers, reactive diluents, and photoinitiators; uniform dissolution is essential to achieve repeatable print layer quality and surface finish.

    Final product types

    • Flexible 3D printed components (medical models, wearables)
    • Soft UV-cured coatings for electronics
    • Screen-printed flexible circuits and membrane switches
    • Prototyping photopolymer sheets with tailored modulus
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    Certification & Compliance
    More Introduction

    N-Cyclohexyl-4-Methylbenzenesulfonamide: A Reliable Solution for Challenging Applications

    Understanding the Chemistry Behind N-Cyclohexyl-4-Methylbenzenesulfonamide

    The name N-Cyclohexyl-4-methylbenzenesulfonamide describes a compound with unique structural advantages, bridging aromatic and alicyclic chemistry in one molecule. The toluenesulfonamide group, modified by attachment of a cyclohexyl group at the nitrogen, combines the stability of a sulfonamide with tailored solubility and flexibility, unlocking key benefits for industries ranging from high-performance polymers to adhesives and specialty plastics. Our direct exposure to multifaceted industrial settings gives us a front-row seat to challenges that generic sulfonamides cannot always address, especially when the application requires a delicate balance between thermal resistance, plasticizing effect, and processability.

    How Molecular Structure Impacts Performance

    Our chemists have seen firsthand the impact of molecular fine-tuning. N-Cyclohexyl-4-methylbenzenesulfonamide, also known to some as Cyclohexyl toluenesulfonamide, offers a core improvement over ordinary toluenesulfonamides by incorporating the cyclohexyl ring. This six-membered carbocycle increases compatibility with both polar and non-polar media, reducing migration in finished goods and supporting long-term stability—a factor especially crucial for cables, synthetic leathers, and certain medical-grade elastomers. The methyl substituent on the benzene ring softens the otherwise sharp rigidity typically found in other aromatic sulfonamides, making this adaptation essential for applications that demand a gentle effect on a polymer’s flexibility, yet still need to retain hardness or gloss in the final product.

    Specifying Product Models and Purity Demands

    Throughout our production lines, we observe varying demands for product grades. Industrial clients often request N-Cyclohexyl-4-methylbenzenesulfonamide in granular or powdered forms, depending on their feeding systems or compounding equipment. Purity specifications dominate most procurement conversations: the pharmaceutical and food-packaging industries, for example, often demand a purity above 99%, which we ensure using a combination of recrystallization and chromatographic techniques. For cable insulation or low-toxicity applications, trace residuals of cyclohexylamine and toluenesulfonic acid draw scrutiny, so batch records and quality audits track each step to offer consistent output. We never take shortcuts on these points, understanding that downstream failure reflects back on the raw material’s fingerprint.

    Application Insights and Use Cases Rooted in Practice

    Where real-world performance matters, the differences between similar sulfonamides become apparent. Our facility routinely works with producers of plasticizers for polyvinyl chloride. In PVC cable jackets, N-Cyclohexyl-4-methylbenzenesulfonamide delivers plasticizing efficiency while curbing cold flow and unwanted exudation over time—a problem frequently reported with lower-grade or generic sulfonamides. The cyclohexyl group gives a subtle but tangible flexibility boost, enabling better performance in low-temperature conditions such as outdoor installations or arctic-grade cabling. Adhesive formulators favor the compound’s impact on open time and tack retention. We have observed, through years of technical support calls, that switching to this modifier often shortens troubleshooting cycles and leads to fewer complaints about brittleness or loss of adhesion in finished laminates.

    In flexible films, thermoplastic elastomers, shoe soles, and medical devices, N-Cyclohexyl-4-methylbenzenesulfonamide acts as a specialty plasticizer. It doesn’t simply replace phthalates or general-purpose sulfonamides; it leads to improved performance in products requiring both safety compliance and longevity. One footwear manufacturer who transitioned from standard sulfonamide-plasticized blends noted a reduction in surface blooming and a smoother hand-feel on shoe inserts. These stories surface across sectors, reinforcing the value of a tailored approach in raw material selection.

    Comparative Analysis: What Sets N-Cyclohexyl-4-Methylbenzenesulfonamide Apart

    Routine comparisons emerge in technical meetings—how does this compound measure up against other plasticizers such as N-ethyl or N-propyl toluenesulfonamide? Both N-ethyl and N-propyl derivatives bring plasticity but also higher migration and poorer compatibility in some copolymers. Regulatory compliance stands as another battlefield. Products derived from primary alkyl amines may face questions about extractables or leachables, especially in medical or food-contact scenarios. The cyclohexyl substituent in our molecule, by contrast, confers a mass and structural design that resists migration beyond the immediate matrix. Decades of supplying to regulated markets confirm fewer recalls or failures due to material incompatibility.

    Field engineers often report differentiation in thermal and photostability. Side-by-side aging studies, performed with customer collaboration, show slower degradation and less yellowing in elastomeric systems formulated with N-Cyclohexyl-4-methylbenzenesulfonamide. The molecule’s fused cycloalkyl structure impedes the chain scission processes which plague systems reliant on lighter, more volatile sulfonamides. In practice, these small differences translate to less frequent reformulation, lower returns, and greater brand reputation for our downstream partners.

    Real-World Challenges on Production Floors

    Scaling synthesis for N-Cyclohexyl-4-methylbenzenesulfonamide brings unique technical hurdles. The starting materials—cyclohexylamine and 4-methylbenzenesulfonyl chloride—must react under carefully managed temperatures to avoid by-product formation or yield loss. Impurities, even in the low parts-per-million range, can affect downstream compounding, making it essential to refine reaction conditions, purification steps, and analytical methods with every batch. Inside our facility, dedicated staff monitor moisture content and control granulation to prevent caking or dusting—a recurring concern for large-volume processors.

    Logistics teams coordinate shipment in double-lined bags and moisture-barrier drums to shield the compound during transit, a detail often overlooked but critical to delivering consistent quality. On-site technical consultants routinely visit customer plants to troubleshoot application hiccups, sometimes finding that a single percent adjustment in blend ratio or drying procedure remedies issues blamed on the base raw material. Feedback loops between our lab and multiple clients drive incremental improvements in both product and service. This approach, built over years of close industry ties, sets manufacturing expertise apart from distribution or trading.

    Product Safety and Compliance: A Manufacturer’s Perspective

    As environmental and health regulations change, producers must keep pace or risk falling behind. N-Cyclohexyl-4-methylbenzenesulfonamide helps manufacturers phase out phthalate plasticizers that face increasing scrutiny, especially in the European Union and North America. Regular communication with regulatory bodies guides us in ensuring that new levels of purity, residual analysis, and full traceability meet customer needs. In compliance audits, we open our records to demonstrate consistent batch control, impurity testing, and documentation supporting statements for REACH, RoHS, and California Proposition 65.

    Feedback from global markets signals a growing preference for compounds with established toxicological data and history of safe use. For example, as regulatory panels evaluate the endocrine disruption potential of plasticizers, N-Cyclohexyl-4-methylbenzenesulfonamide stands out among sulfonamides, neither showing major red flags nor appearing on hazard alert lists so far. This reduces the compliance risk faced by manufacturers, downstream converters, or exporters who serve regulated economies.

    Opportunities for Formulators and Compounders

    Working directly with manufacturers gives compounders and product designers a richer understanding of how raw materials behave from pilot sample to commercial scale. N-Cyclohexyl-4-methylbenzenesulfonamide reacts gently under processing but rewards precise control over blending ratios and temperature setpoints. Some formulators originally skeptical of the cost difference compared to commodity sulfonamides discovered marked improvements in final product resilience and fewer warranty returns, especially after temperature cycling or weather exposure tests.

    Cross-linking agents and co-plasticizers often interact differently with N-Cyclohexyl-4-methylbenzenesulfonamide than with standard plasticizers, sometimes resulting in improved clarity or impact strength. Frequent site visits, pilot runs, and technical workshops between our technical team and end users build trust by sharing best practices and real-world data rather than relying on sales literature alone. This hands-on approach increases both confidence in a new formulation and the odds of a successful product launch.

    Building a Reliable Supply Chain Through Collaboration

    Having supplied N-Cyclohexyl-4-methylbenzenesulfonamide continuously for many years, our team witnesses the tension between just-in-time inventories and the cyclical nature of specialty chemicals. Some industry segments—automotive interiors, renewable energy, high-end footwear—experience unpredictable spikes or regulatory-driven demand swings. We buffer stocks, maintain robust raw material sources, and use real-time process data to inform production planning. Relationships with transporters and warehouse partners ensure that product integrity stays uncompromised from our reactors to customer silos.

    We encourage transparent communication about anticipated volume changes or new specification requirements. Legacy customer relationships thrive on our willingness to adjust batch size, shipment frequency, or technical data support as business needs shift. This agility matters more than ever as global economic pressures and regulatory shifts affect everything from pricing to logistics, especially for customers who depend on consistent quality to support their own claims of reliability and safety.

    Troubleshooting and Support: Real Experience at Work

    Our engineers field queries ranging from minor blending adjustments to major process disruptions. Questions often concern compatibility with flame retardants, moisture content, or optimal mixing times. In most cases, hands-on troubleshooting—coupled with transparent access to our lab, QA records, and technical staff—resolves bottlenecks within hours or days, not weeks. This differentiates manufacturing expertise from more remote players in the chemical supply chain.

    Updates to processing guidelines spring directly from customer feedback and observed plant practices. For instance, we refined our drying and handling protocols after observing recurring moisture uptake during steamy summer deliveries. Our technical team documented the solution, shared it with customers, and saw a measurable drop in quality claims over the following quarters. Small insights from production floors, R&D pilots, and continuous improvement boards shape every upgrade to our offering.

    Driving Industry Progress Through Product Development

    Innovation in chemical manufacturing rarely progresses in isolation. Our experience synthesizing and improving N-Cyclohexyl-4-methylbenzenesulfonamide draws on partnerships with polymer scientists, process engineers, and end users worldwide. New regulatory challenges, such as pushing for even lower extractable content or expanding food-contact approvals, trigger fresh R&D projects in our labs. Pilot campaigns using our compound in emerging sectors—wearable technology, electric vehicle components, medical device seals—yield technical findings that inform future modifications.

    Adapting to recycled or bio-based polymers sometimes uncovers compatibility quirks or new reactions that our team addresses by modifying synthesis routes or improving purification steps. We share insights from these efforts with industry working groups, technical conferences, and published literature, investing in collective progress rather than competition by secrecy.

    Challenges We See for the Next Generation

    The global economy, environmental regulations, and demand for ever-safer compounds force ongoing adaptation. The next generation of N-Cyclohexyl-4-methylbenzenesulfonamide must anticipate microplastics scrutiny, expanded toxicological characterization, and compatibility with complex polymer blends and their recycling streams. Our manufacturing team already invests in green sourcing of raw materials, reducing waste, and safe process design to address these challenges head-on. Investing in analytical methods such as advanced chromatography or trace analysis helps us catch potential contaminants before they ever reach a shipping drum.

    Customers seek not just a bag of chemicals but a partnership built on reliability, transparency, and problem-solving. Experience shows that open technical dialogue, regular information sharing, and a willingness to adjust production details lead to relationships that withstand market shock, regulatory change, or consumer scrutiny.

    The Value of Manufacturer-Direct Support

    Working with a direct manufacturer, customers gain insight that rarely emerges in a traditional supplier relationship. Field-testing pilot lots, running scale-up batches, and troubleshooting production challenges draw on years of direct experience on synthesis, process control, and logistics. Manufacturers recognize recurring issues, from particle sizing issues to trace impurity carryover, with a sensitivity only possible through hands-on involvement from raw material sourcing through finished product shipment.

    Over time, customers voice appreciation for rapid response to new regulatory audits, customized documentation requests, or immediate adjustments during urgent production runs. The value these services add far outweighs nominal price differences and contributes directly to their operational stability and market reputation. The product itself remains inseparable from the manufacturer’s hard-won knowledge and readiness to support partners under varied and often unpredictable conditions.

    Looking Ahead: Continuous Improvement in Chemical Manufacturing

    Many years of manufacturing N-Cyclohexyl-4-methylbenzenesulfonamide have proven that industry needs evolve, technical standards rise, and successful suppliers adapt in tandem. Transparency in operations, process safety investment, and open communication with both regulators and customers dictate the ability to keep delivering high-quality material in challenging environments. Educational efforts strengthen both user confidence and safety, especially as more end-users scrutinize ingredient lists, toxicity reports, and origins of specialty chemicals.

    Direct dialogue drives incremental improvements. Each opportunity to solve a customer’s processing hurdle brings us closer to new product insights and updated technical guidelines. These feedback cycles not only improve the product but also inform our collective understandings of how specialty chemicals should perform under real-world stresses.

    Conclusion: A Product Built by Experience and Collaboration

    Through supplying N-Cyclohexyl-4-methylbenzenesulfonamide to a range of sectors, we see that performance hinges on more than a chemical’s name or its generic grade. Achieving consistent, reliable results comes from close collaborations along the value chain. The stories of problem-solving on the factory floor, the product modifications born from experiments, and the regulatory hurdles cleared by diligence reflect a living record of continual learning and genuine partnership.

    This approach grounds product quality not in abstract claims but in demonstrated results, tested specifications, and the ongoing commitment of dedicated staff. Over the years, customers have come to recognize the advantages of sourcing directly from those who make the material—those who by necessity, history, and expertise understand every nuance from raw material to downstream performance.

    N-Cyclohexyl-4-methylbenzenesulfonamide is not just another plasticizer or specialty chemical; it represents a culmination of chemistry, partnership, and accumulated technical wisdom—woven together to address present needs and prepare for future demands.