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HS Code |
103397 |
| Chemicalname | 3-Isopropyl-5-Methylphenyl N-Methylcarbamate |
| Molecularformula | C12H17NO2 |
| Molecularweight | 207.27 g/mol |
| Casnumber | 119-38-0 |
| Appearance | White to off-white crystalline solid |
| Meltingpoint | 85-88°C |
| Solubility | Slightly soluble in water, soluble in organic solvents |
| Density | 1.08 g/cm3 |
| Flashpoint | Non-flammable |
| Odor | Characteristic |
| Logp | 3.14 (estimated) |
| Storagetemperature | Store at 2-8°C |
As an accredited 3-Isopropyl-5-Methylphenyl N-Methylcarbamate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | White, opaque HDPE bottle containing 100 grams of 3-Isopropyl-5-Methylphenyl N-Methylcarbamate, with tamper-evident cap and hazard labeling. |
| Shipping | 3-Isopropyl-5-Methylphenyl N-Methylcarbamate is shipped in tightly sealed containers, compliant with chemical safety regulations. The packaging prevents leaks and contamination, and the material is clearly labeled with hazard and handling information. Shipping is conducted via authorized carriers, typically as a regulated substance, and includes appropriate documentation for safe and traceable delivery. |
| Storage | Store **3-Isopropyl-5-Methylphenyl N-Methylcarbamate** in a tightly closed, clearly labeled container in a cool, dry, well-ventilated area, away from sources of ignition, heat, and direct sunlight. Keep separate from incompatible substances such as strong acids and oxidizers. Use appropriate personal protective equipment when handling, and store away from food, feedstuffs, and drinking water to prevent contamination. |
Applications of 3-Isopropyl-5-Methylphenyl N-Methylcarbamate in Industrial Manufacturing3-Isopropyl-5-Methylphenyl N-Methylcarbamate is widely applied as a technical raw material in regulated sectors that demand controlled formulation, reliable supply, and traceable quality systems. Our direct manufacturing process supports a stable and responsive supply path for midstream and downstream industrial production. 1. Synthesis of Carbamate-Based InsecticidesThis compound acts as a critical intermediate for the production of specific carbamate insecticides used in agriculture. Manufacturers incorporate it during formulation to achieve consistent activity against crop pests while ensuring compliance with residue limits. Its use allows formulators to adjust concentrations for targeted pest management, aligning with local market requirements and safety assessments. Processing steps require tight analytical testing to confirm active content, and quality controls must document each formulation batch for regulatory submissions. Industry compliance standards
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2. Synthesis of Pharmaceutical Intermediates (Active Ingredient Precursors)In pharmaceutical manufacturing, this material serves as a designated intermediate for producing key carbamate core structures in APIs (active pharmaceutical ingredients). The compound enters validated synthesis routes in GMP-compliant plants, where operators maintain methodical records of each process step for FDA or EMA inspections. Its purity and traceability directly impact downstream API quality, making in-process controls and validated testing methods essential. Documentation from the supply chain to finished intermediate is mandatory for regulatory dossiers and international drug master files. Industry compliance standards
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3. Synthesis of Specialty Polymer AdditivesWithin the specialty chemicals sector, manufacturers utilize this carbamate derivative as a reactive additive or functional monomer for producing polymers and resin modifiers with enhanced resistance or targeted surface properties. Its use permits precise molecular design in high-performance plastics or coatings. Plant engineers select this additive based on compatibility testing and downstream application demands, and automated dosing systems monitor formulation accuracy throughout batch production. Analytical controls and standardized documentation support traceability in quality-critical supply chains. Industry compliance standards
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4. Controlled Synthesis of Agrochemical IntermediatesIndustrial agrochemical producers employ this compound as an intermediate for high-purity carbamate functional groups used in the synthesis of regulated crop protection agents. Batch synthesis requires strict adherence to internal SOPs, with online monitoring systems to confirm feedstock ratios and reaction completion. Each production batch follows documented analytical verification to meet agrochemical industry requirements, supported by full traceability from raw material receipt through to intermediate delivery. Process validation ensures no cross-contamination with other actives, meeting stewardship standards in the supply chain. Industry compliance standards
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Years shaping and refining carbamates have given us a deep familiarity with the strengths and quirks of each compound. 3-Isopropyl-5-Methylphenyl N-Methylcarbamate doesn’t always appear in the glossy catalog layouts, but year after year, its demand rises for those who know precise formulation matters. There’s a reason formulators and producers keep this compound at the center of their requests: it performs without excuses, holding stability even when raw material markets and regulatory requirements change direction.
Our manufacturing lines deliver this product with a focus on reliable supply and tight control at every production stage. From precise temperature management to relentless purity testing, we understand that even a small slip clouds batch consistency. Technicians know these risks on the floor. Most days in the plant, what matters is the certainty that every container resembles the last in color, flow, and content—no matter where it’s headed in the world or how much custom handling the end user demands for the next formulation step.
Turning phenols into the right carbamate grade rarely leaves room for shortcuts. Our process transforms selected isopropyl-methylphenol through hands-on carbamoylation using methyl isocyanate under closed and thoroughly scrubbed systems. Reactors are kept at well-controlled temperatures to avoid any runaway or impurities. Technical operators measure purity above 98% for every lot, since even fractions below this value can show up as trouble downstream—something everyone from field scientists to plant managers want to avoid.
Each batch passes HPLC and GC-MS checks, with our in-house chemists walking samples through a battery of tests that look for trace amines, moisture content, and the occasional stubborn byproduct. In chemical plant conditions, dust control and careful handling of methyl isocyanate itself become critical. No one in this line of work forgets the lessons of the past; we design process rooms so workers and the environment stay protected, while investing in waste treatment to prevent any environmental discharges. All of these checks form the backbone of building trust around this compound’s quality.
Over many batches, the same basic model has proven itself: crystalline or powdery solid, off-white in appearance, melting neatly between 70 and 74°C in standard runs. The N-methylcarbamate group attaches to the aromatic ring in a fashion that seems unremarkable in a textbook but makes all the difference in practical fieldwork. Our standard material targets moisture below 0.5%, trace solvents under 200ppm, and low dust. The emphasis stays on what our customers see—the product pours without caking, dissolves with predictable speed in test solvents, and resists yellowing or oxidative changes with reasonable storage.
Every plant operator benches these features against other products: purity matters less if a batch picks up clumps or won’t blend evenly with common carriers. We work on final sieving and packaging conditions to control these issues, since every powder shipment that needs sieving at the customer’s site creates friction and time loss, both in research and larger-scale work. In product feedback sessions, project chemists always call back to this handling aspect: the smoother it integrates, the faster they shift to their actual application.
Historical usage has ranged across crop protection, insecticides, and research chemical synthesis. In agri-formulation, fields rarely pause to wait for unreliable actives. We understand the application requirements straight from growers and processors looking for protection that doesn’t disappear after the first rain and maintains efficacy across weather swings. This compound’s specific balance of volatility and residual presence provides that working margin.
Research teams—both at multinational agriculture firms and smaller technical labs—count on our carbamates as intermediates to access more targeted actives. Production-scale users often share their desire for predictability above exotic properties. When a pilot lot looks and behaves exactly as the development sample did, costs drop and troubleshooting shrinks. Years of feedback shaped our focus on batch reproducibility and long-term shelf stability, not just regulatory paperwork. This lets us support both large manufacturers and lab-scale innovators with equal commitment.
Working the floor, we see how small changes in synthesis parameters alter everything—color, odor, handling, shelf life. Many products on the market come with impressive data sheets but don’t deliver consistent behavior in use, especially after storage or transit under marginal conditions. We don’t talk down these alternatives, but direct experience has shown us the headaches that arrive from uncontrolled side reactions or aging. Our product maintains its performance in applications without irritating surprises. It stays stable, keeps consistent grain size, and resists common routes to degradation when kept under standard storage advice.
Compared to other N-methylcarbamates, this compound offers a nuanced balance between strength and selectivity. In comparisons to generic methylcarbamates or broader phenyl carbamate families, 3-Isopropyl-5-Methylphenyl N-Methylcarbamate tends to deliver improved selectivity on electron-dense targets. This matters to technical buyers aiming for efficient, lower-waste runs on their lines. In side-by-side plant trials, differences appear especially in the speed of action and persistence on treated surfaces—critical details shared back from actual field evaluation, not just theoretical models.
Years handling standard methylphenyl carbamates also reveal the softer side—physical stability and package safety. Other variants have struggled with clumping or off-gassing, resulting in spoiled product and unpredictable applications. Our lines clamp down on these issues from the beginning, verified every quarter against retained batch samples. The feedback loop with users has driven us to minimize both internal dust content and external packaging breakdown. This side of manufacturing gets less attention in technical brochures, but anyone unloading truckloads in non-climate-controlled warehouses knows how a little extra humidity can wreck a pallet.
We take pride in walking the line between high performance and tight compliance. Agricultural regulations globally keep shifting toward stricter cut-offs for impurities, byproducts, and trace contaminants, including isocyanate residues and persistent solvents. Our in-plant quality control adapts ahead of these trends. Internal audits now run in advance of new regulatory frameworks, so the supply chain doesn’t break down when new limits appear. Speaking with buyers and end-users, we see both the relief and the frustration—knowing tough thresholds are coming but also seeking reliable partners who’ve already adapted their process controls.
Customer questions rarely focus on elegant syntheses. They ask how quickly a delivered container can integrate into their onsite process, what shelf life they can count on, or how the material behaves under fluctuating humidity. We respond by holding extra inventory through quarterly cycles and extending our technical support beyond the usual delivery timeline. Special packaging options—such as lined drums, nitrogen-purged liners, or anti-static treatments—may sound like details, but they keep the material ready-to-use and reduce reject rates.
When supply chain pressure spikes, whether from raw material shortages or geopolitical turbulence, we keep multiple backup sourcing options and maintain actual safety stock in our warehouse—not just virtual inventory on paper. Over the years, these behind-the-scenes efforts build silent confidence. Partners know that if there’s an interruption, we have a plan to keep shipments moving, avoiding painful stops in their production or registration programs.
Carbamate chemistry doesn’t entirely escape scrutiny for safety or environmental impact. We design our processes to recover and treat waste streams, including spent solvents, off-gassed compounds, and cleaning water, above regional requirements. Our investment in closed-system handling for methyl isocyanate, as well as modern fume scrubbing, isn’t about regulatory minimums—it’s good practice learned from decades of plant operation and careful listening to the communities where we are located.
Our plant teams receive continuous safety training and maintain a strong internal culture of near-miss reporting. Even minor process upsets get full incident review and feed into our operating procedures. Field inspectors, vendor auditors, and customer quality teams regularly walk these lines. We offer them open access to our records and encourage direct conversation with both floor operators and technical managers. The industry needs transparency for trust, and we open that window to everyone who asks.
Once manufactured, the product ships as a stable solid, stacked in heavy-gauge drums or fiber containers with sealed liners. Drums are palletized and shrink-wrapped for transport. Warehouse managers appreciate each batch’s stability; they can double-stack without worrying about caking or deformation. Transport partners keep logs of ambient conditions during long hauls, and we specify preferred lanes when possible, especially for longer routes or summer shipments. These operational details close the gap between factory and field, ensuring carbamate compounds arrive fresh and ready for use.
We’ve worked over time with major logistics providers and local hauliers to cut down on damages and delays. Sometimes, the best guarantee is picking up the phone when a truck runs late or a customs clearance needs extra paperwork. Long-term customers know they can call plant-side and get a direct answer rather than a recycled script. This separates the experienced manufacturer from layers of intermediaries.
Direct customer visits have sharpened our sense for what matters to users—less about certificate specs and more about actual in-field and on-bench results. We invite technical feedback across applications, gathering information from growers, formulation chemists, packaging teams, and logistics partners. Suggestions like finer particle size, reduced static charge, or an adjusted moisture target come straight from these connections, not from theoretical checklists.
Every year, we batch small pilot runs for customers exploring new blends or novel applications, using their feedback to hone future production. This open approach means we avoid the trap of assuming a process is “complete” once it hits decent numbers in our own lab. Problems always surface outside the factory—different solvents, mixers, applicators, or climates stress the material in ways no bench can replicate. Our work only counts when our product works just as well in someone else’s hands.
We see every order as more than a transaction; it’s a partnership with growers, research teams, and process engineers who count on our product to deliver. Manufacturing isn’t just about chemistry—it’s reliability, process control, ongoing support, and honest dialogue. 3-Isopropyl-5-Methylphenyl N-Methylcarbamate stands out not because of a single dazzling property but through years of iterative improvement, tweaks, and responses to real-world feedback.
With shifting global standards and higher expectations, the role of a responsible chemical manufacturer becomes more complex. We keep learning, adjusting, and sharing what we know, aiming to set a standard others can trust. Our experience tells the real story—batch by batch, year by year—of a product that stands up in the field, the lab, and the marketplace.