|
HS Code |
577355 |
| ChemicalName | Dimethylcarbamoyl Chloride |
| CASNumber | 79-44-7 |
| MolecularFormula | C3H6ClNO |
| MolarMass | 107.54 g/mol |
| Appearance | Colorless to yellowish liquid |
| Density | 1.138 g/cm3 |
| MeltingPoint | -56 °C |
| BoilingPoint | 93-94 °C |
| SolubilityInWater | Reacts with water |
| VaporPressure | 22 mmHg at 25 °C |
| FlashPoint | 17 °C (closed cup) |
| Odor | Pungent |
| RefractiveIndex | 1.418 (20 °C) |
As an accredited Dimethylcarbamoyl Chloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Dimethylcarbamoyl Chloride, 250 mL, packaged in a sealed amber glass bottle with a hazard label, inside a protective secondary container. |
| Shipping | Dimethylcarbamoyl chloride must be shipped as a hazardous chemical, typically in tightly sealed, corrosion-resistant containers under an inert atmosphere. It is classified as a toxic and corrosive substance, requiring labeling according to UN 1164. Shipping must comply with all relevant regulations for dangerous goods, including documentation, handling, and emergency procedures. |
| Storage | Dimethylcarbamoyl chloride should be stored in a tightly closed, corrosion-resistant container, in a cool, dry, and well-ventilated area away from moisture, heat, and incompatible substances (such as water, alcohols, and strong bases). It should be protected from light and segregated from food and feeds. Storage areas must have appropriate spill containment and safety measures due to its highly toxic and reactive nature. |
Applications of Dimethylcarbamoyl Chloride in Industrial ManufacturingDimethylcarbamoyl chloride is used in a variety of industrial chemical syntheses, serving as a key intermediate in multistep organic reactions. The following sections outline real downstream applications with detailed regulatory, technical, and process information for each area. 1. Pharmaceutical Intermediate SynthesisPharmaceutical manufacturers utilize dimethylcarbamoyl chloride as a functional group introducer in the synthesis of numerous active pharmaceutical ingredients (APIs), particularly in urea, carbamate, and related heterocyclic structures. The chemical reacts with amines and alcohols under controlled anhydrous conditions, providing the N,N-dimethylcarbamoyl group essential in compounds such as certain antiviral agents and intermediates for pain medications. Production lines must implement stringent quality and contamination control at the alkylation or carbamoylation step, as residual material or side products directly impact subsequent purification and final API assay. Industry compliance standards
Typical usage ratio
Downstream process integration
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2. Pesticide and Agrochemical ProductionPesticide formulators and agricultural chemical manufacturers employ dimethylcarbamoyl chloride to build carbamate and urea-based herbicide, fungicide, and insecticide actives. The reagent provides a key building block via direct carbamoylation, often reacting with phenols or anilines to produce selective pesticidal ingredients. Production processes must implement strict tracking for hazardous intermediates and follow local and international safety regulations during batch or continuous processing, especially owing to its reactivity and required anhydrous conditions. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Polymer and Specialty Resin ModificationSpecialty resin and polymer manufacturers use dimethylcarbamoyl chloride for chemical modification of polymer backbones, enabling the introduction of carbamoyl or carbamate functionalities onto polyolefins, polyurethanes, or acrylic resins. This modification tailors properties such as adhesion, chemical resistance, or solubility in coatings, adhesives, and molded parts. The material is introduced through batch functionalization processes under controlled temperature and atmosphere, with operator oversight to manage exothermic reactions and hazardous gas evolution. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Dye and Pigment Intermediate ManufacturingColorant manufacturers incorporate dimethylcarbamoyl chloride as a critical reagent during the synthesis of certain azo and anthraquinone dye intermediates. Its introduction allows structural diversification by carbamoylation reactions, often impacting dye solubility and color intensity. Reactions typically proceed in jacketed vessels with solvent systems designed to control both exotherm and product solubility. Precise stoichiometric control is crucial, as overuse may contribute to by-product contamination and yield reduction in subsequent coupling reactions. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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Dimethylcarbamoyl chloride forms a crucial link in the supply chain for specialty chemical production. Every producer in this space faces evolving demands—in terms of both performance and reliability. Speaking as a chemical manufacturer with years of hands-on experience, I've seen how this compound stands apart from close relatives in reasons rooted in real-world production challenges and user needs.
In our factory, we produce Dimethylcarbamoyl Chloride under controlled conditions, drawing from robust process protocols to maintain consistent purity and chemical reliability. There is more to this compound than its appearance; laboratory evaluation points to its importance in both intermediate synthesis and specialty applications. For chemists, the typical product presents as a clear or pale yellow fuming liquid with a characteristic acyl chloride odor. We prioritize control over impurity levels, especially residual amines and alcohols, which affect downstream product outcomes.
Our main specification centers on a minimum assay of 99% Dimethylcarbamoyl Chloride, supported by tight controls on moisture and byproduct content. Moisture, even when present in trace amounts, leads to rapid decomposition—a detail overlooked by new entrants in the market. Packaging and storage reflect this reality. We invest in high-integrity containers and moisture-free environments; otherwise, producers run the risk of runaway reaction or hazardous degradation. Such preventive measures carry real weight, especially at scale.
A wide range of users—particularly in the pharmaceutical, agrochemical, and dye industries—have specific reasons to source Dimethylcarbamoyl Chloride directly from manufacturers rather than intermediaries. My experience in customer site visits reveals the necessity for sharply defined reactivity, consistent handling, and timely delivery. This compound acts as a carbamoylating agent, introducing the dimethylcarbamoyl group into substrates ranging from amines to phenols and alcohols. In practice, this means it shows up in the backbone of a surprising number of active pharmaceutical ingredients, such as antibiotics and some herbicides.
One customer's pharmaceutical production line, for instance, relies on the predictable behavior of Dimethylcarbamoyl Chloride during the protection of amine groups. Here, downtime costs more than just lost output; it jeopardizes multi-stage syntheses, regulatory timelines, and ultimately the availability of lifesaving drugs. Changes in purity or degradation products mean unforeseen side reactions—a real concern flagged by technical staff during on-site audits. These are not theoretical risks, but challenges my colleagues and I routinely help to address. As a manufacturer, it falls on us to collaborate, troubleshoot, and customize supply approaches to prevent raw material shortfalls from undermining production targets.
In a crowded field of substituted chloroformates and similar compounds, Dimethylcarbamoyl Chloride sets itself apart in specific ways. Many users ask how it compares to counterparts such as methyl chloroformate or ethyl chloroformate. These questions come up often in R&D planning meetings, and I want to clarify—Dimethylcarbamoyl Chloride introduces a two-methyl group configuration, contrasting with the single methyl or ethyl groups in those other agents. This structural difference has real impacts on reactivity, selectivity in functional group modification, and byproduct profiles. In practical synthesis, this means chemists shape the final molecular architecture more precisely using Dimethylcarbamoyl Chloride than with more basic chloroformates.
The other side of product differentiation hinges on physical hazards and handling. Compared with phosgene-derived materials, this product offers less volatility and a more manageable toxicity profile. Over the years, facility engineers have come back to us with tangible feedback that handling Dimethylcarbamoyl Chloride translates into fewer emergency interventions and maintenance headaches. That being said, all chlorinated carbamoyl reagents require strict controls and training for safe handling. We stress this frequently in end-user workshops—not as a marketing point but as grounded operational advice.
Manufacturing Dimethylcarbamoyl Chloride touches on both chemical expertise and regulatory obligations. After repeated audits and incident reports, we’ve learned that workplace safety hinges on rigorous adherence to best practices. Only a few years ago, a customer’s chemical storage room faced issues due to improper ventilation and inadequate personal protective equipment. Rapid response—jointly coordinated between our technical team and the user’s plant management—prevented escalation. Incidents like this foster improvements across the entire supply chain.
From a toxicology standpoint, my daily encounters with safety professionals reinforce a hard reality: Dimethylcarbamoyl Chloride isn't a chemical to treat lightly. Its volatility, lacrymatory properties, and acute toxicity keep us on our toes during filling, transport, and transfer operations. The need for local exhaust ventilation, continuous air monitoring, and validated neutralization protocols reflects real risks on the ground, not just regulatory checklists. Each shipment gets continuous tracking, and every incident in handling feeds back into upgrading our safety documents, processes, and training curriculum.
Securing a stable and uninterrupted supply chain means more than routine batch production. In our industry, too many users have weathered burnt fingers from inconsistent supply or substandard product delivered in leaky drums or poorly documented shipments. We build our credibility on repeat accuracy—lot after lot, shipment after shipment. This assurance gives users the space to plan production runs, budget investments, and hit critical delivery windows for high-stakes projects.
In the case of Dimethylcarbamoyl Chloride, quality is not just an abstract standard—it plays out through regulatory inspections, customer audits, and random spot-checks. For instance, we provide Certificates of Analysis with each container, with a focus on purity, assay method, and impurity profile. These documents follow standard not as a formality, but as a tool to prevent costly rejections in the customer’s downstream processes. Regular customer feedback pushes us to refine analytical methods and audit packaging improvements, such as adopting polymer-laminated containers to minimize the risk of external moisture penetration.
Not many discussions on specialty chemicals account for the messiness of real-world logistics. Delivering Dimethylcarbamoyl Chloride to both domestic and foreign customers requires more than just regulatory permits. Our teams have put years into optimizing transportation—planning out the safest routes, certifying drivers, and aligning with third-party logistics partners who understand the material’s sensitivity. In tropical ports or high-altitude facilities, temperature fluctuations threaten to ruin entire loads. We have met these challenges by deploying temperature-stabilized shipping containers and real-time GPS tracking. This isn't about ticking boxes, but stopping avoidable loss—and keeping our quality promise.
Customs inspections in export markets often become bottlenecks where improper paperwork or packaging leads to costly delays or product deterioration. Our people regularly review international guidelines, updating safety labels and shipping documentation to match destination country requirements. Scrutiny, whether by customs authorities or customer QA inspectors, uncovers the small cracks that, if ignored, grow into headline failures. By tackling these proactively, we save everyone headaches and maintain steady flows of material to labs and factories worldwide.
Choosing the right reaction conditions for Dimethylcarbamoyl Chloride takes more than textbook knowledge. In the early days of scale-up at our site, we learned that minor changes in pressure or temperature can swing reaction yields and byproduct ratios by measurable margins. Experienced operators always double-check for equipment corrosion, especially on valves and gaskets, since this compound’s aggressive nature chews through less robust materials. Stainless steel lines and specialized seals, although costlier at the outset, pay for themselves by reducing maintenance downtime and lost product.
Manipulating reagent volumes, base selection, and solvent systems offers another playground for optimization. Production teams on the ground constantly swap tips—one favoring anhydrous solvents to push conversion rates, another advocating for in-line quenching of liberated HCl to avoid pressure build-up. Listening to floor staff and pilot plant engineers often gives better returns than following generic protocols. Our R&D staff absorb these lessons for every scale-up, so future batches come with an evolving playbook that reflects production realities, not just theory.
Waste streams from Dimethylcarbamoyl Chloride processing require respect, not just compliance. We’ve seen startups treat neutralization and disposal as an afterthought, only to risk fines, stoppages, or neighborhood complaints. From our own operations, we implement multi-step neutralization—using aqueous base quenching followed by carbon scrubbing. These steps come from direct lessons after an overpressurization incident convinced us to redesign venting and effluent controls.
Chemical residues demand tracking and traceability. Our environmental team routinely monitors pH, residual organics, and chloride levels in discharged water. Upstream separation and segregation practices keep contamination in check—avoiding cross-reactivity with other waste streams. These are not just box-ticking exercises, but a reflection of community accountability. Our neighbors know us by our handling of waste as much as by what leaves the gate in sealed drums. By keeping lines of communication open with local authorities and stakeholders, we build trust and minimize surprises.
Production lines using Dimethylcarbamoyl Chloride commonly run on tight timelines and strict batch sequencing. Delays or deviations introduce knock-on effects—upstream and downstream. What marks a supplier as a partner rather than a vendor is how thoroughly they understand those working realities. Over the years, we have invested in systems for rapid troubleshooting, such as dedicated technical hotlines and site visits from our support team. This hands-on approach has resolved questions on stoichiometry, improved yields, and prevented batch failures.
Beyond trouble-shooting, we run user workshops on chemical handling, process optimization, and emergency response. These sessions give users an arena for sharing problems and solutions, leading to a growing base of practical knowledge on both sides. A chemical is only as useful as the know-how wrapped around it. Time and again, these workshops pay off in fewer accidents, steadier product quality, and new process ideas—benefitting customers, and ultimately stimulating our own innovation pipeline.
Dimethylcarbamoyl Chloride production does not stand still. Every month brings new regulatory shifts, supply chain interruptions, and fresh challenges from sustainability advocates. As direct producers, we face these head on by investing in process intensification, greener solvents, and closed-loop recycling where practical. Lab teams actively scout ways to reduce off-gassing and reclaim byproduct streams for secondary applications. These actions grow from our commitment to both chemistry and responsible stewardship.
We take pride in our roots as chemical makers but keep our eyes on broader social and environmental questions. Product stewardship means openly sharing what works, fixing what doesn’t, and being accessible to all stakeholders—from plant technicians and laboratory teams to regulatory bodies and local communities. Every batch of Dimethylcarbamoyl Chloride carries not only a material value, but a shared responsibility that traces back to our manufacturing floors.
Speaking frankly, Dimethylcarbamoyl Chloride serves more than as a reagent in a distant supply chain. Its journey—starting from base raw material through cracking reactors, quality testing, packaging, and final delivery—embodies years of institutional memory, technical expertise, and shared risk with our users. The lessons accumulated through both minor glitches and major innovations shape how we approach each new contract and collaboration.
Listening carefully to downstream challenges, adapting processes based on lived experience, and refusing to settle for average performance has taught us that tangible value comes from attention to detail and mutual respect across the supply chain. By holding ourselves to these standards, we keep Dimethylcarbamoyl Chloride relevant—and reliable—for solutions built on real-world needs.