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HS Code |
866504 |
| Cas Number | 645433-85-8 |
| Molecular Formula | C14H22N6 |
| Molecular Weight | 274.37 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Density | 1.03 g/cm3 |
| Melting Point | -19 °C |
| Boiling Point | Decomposes before boiling |
| Purity | >98% |
| Solubility In Water | Miscible |
| Chemical Class | Ionic liquid |
| Cation | 1-Octyl-3-methylimidazolium |
| Anion | Dicyanamide |
| Refractive Index | 1.482 |
| Flash Point | >150 °C |
As an accredited 1-Octyl-3-Methylimidazolium Dicyanamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 100-gram amber glass bottle with a secure screw cap, labeled "1-Octyl-3-Methylimidazolium Dicyanamide," chemical details, and hazard warnings. |
| Shipping | 1-Octyl-3-Methylimidazolium Dicyanamide is shipped in tightly sealed containers, protected from moisture and light. It is classified as a non-hazardous, non-flammable ionic liquid, but should be handled with standard chemical precautions. During transport, ensure containers are upright and stored at room temperature to prevent leaks, contamination, or decomposition. |
| Storage | 1-Octyl-3-Methylimidazolium Dicyanamide should be stored in a tightly sealed container in a cool, dry, and well-ventilated area, away from moisture, heat, and direct sunlight. It should be kept away from incompatible substances such as strong acids and oxidizing agents. Use proper labeling and secondary containment to prevent leaks or spills and ensure access only to trained personnel. |
Applications of 1-Octyl-3-Methylimidazolium Dicyanamide in Industrial ManufacturingAs a direct manufacturer of 1-Octyl-3-Methylimidazolium Dicyanamide, we support industries seeking advanced ionic liquids for specialized chemical synthesis, process efficiency, and precise performance modification. The following sections detail real, mature application tracks in global industrial practice, with clear workflow positioning and compliance references. 1. Electroplating and Metal Surface TreatmentElectroplating facilities select our material for its influence on metal ion solubility, improvement of deposition uniformity, and ability to stabilize the plating bath. Its integration directly affects process current efficiency, enables finer grain structure, and reduces build-up of impurities. The component enters at the bath formulation stage, supporting both decorative and functional plating for electronics and hardware manufacturers. Industry compliance standards
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2. Lithium-ion Battery ElectrolytesCell makers use this compound as a non-volatile ionic liquid electrolyte or additive to boost thermal stability and electrical conductivity in high-performance lithium-ion batteries. Its presence reduces risk of dendrite formation, stabilizes electrode/electrolyte interphases, and supports safer charge–discharge cycles, especially at elevated temperatures or under heavy cycle demand. Industry compliance standards
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3. Cellulose Dissolution and Fiber SpinningFiber producers employ this ionic liquid in dissolving and regenerating cellulose for advanced textile manufacturing, as it enables direct transformation of pulp without the use of carbon disulfide or other volatile solvents. This process supports the Lyocell-type spinning route, limiting pollutant emissions, shortening the solvent recovery cycle, and generating specialty fibers with customized cross-sections and tenacity. Industry compliance standards
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4. Catalytic Process Media for Organic SynthesisProcess developers in fine chemical and pharmaceutical intermediates use this ionic liquid as a reaction medium or phase transfer agent. It provides high polarity, thermal stability, and limited water activity, resulting in increased selectivity and fewer by-product or waste streams. This resource enters the reactor charge either as the primary solvent or as a catalytic co-solvent to facilitate key steps such as alkylation, nucleophilic substitutions, and transition metal catalyzed reactions. Industry compliance standards
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5. Antistatic Additives for Polymer CompoundingCompounders integrate this ionic liquid to impart permanent antistatic function within engineering plastics and specialty resin blends. It migrates at the molecular level to the polymer matrix surface, ensuring consistent electrical dissipation and minimizing dust attraction or static discharge, especially in automotive interior components, electronic device housings, and precision packaging. Industry compliance standards
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6. Lubricant Formulation for High-Temperature ApplicationsLubricant blenders exploit the thermal stability and low vapor pressure of this material as a functional additive in synthetic and semi-synthetic lubricant bases. It contributes to improved shear stability, oxidation resistance, and electrical insulation in fluid-fill electric motor and transformer applications. The agent is introduced during the blending phase to provide wear reduction and tribological performance under extended service intervals. Industry compliance standards
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Competitive 1-Octyl-3-Methylimidazolium Dicyanamide prices that fit your budget—flexible terms and customized quotes for every order.
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Every day, our team looks to replace outdated chemical processes with safer, more efficient materials. 1-Octyl-3-Methylimidazolium Dicyanamide (commonly called Omim DCA, Model: OmimN(CN)2) is a product we stand behind for its clear advantages over traditional solvents and salts. Unlike older, volatile organic solvents that pose inhalation hazards and disposal concerns, this ionic liquid offers a new path. We don’t just read about green chemistry trends. Our technicians and R&D crews have spent countless hours re-evaluating runs with Omim DCA, seeking ways to actually lower waste and improve worker safety.
Omim DCA doesn’t behave like common solvents or inorganic salts. The imidazolium ring with an octyl side chain delivers strong stability, while the dicyanamide anion helps keep viscosity manageable at room temperature. Many ionic liquids resist evaporation, but Omim DCA’s structure gives it a lower tendency to generate vapors or odorous fumes. Our colleagues on the shop floor appreciate the lack of harsh solvent stench after a long shift.
A major reason our chemists turn to this liquid: it works across a spread of temperatures without breaking down or corroding typical equipment. Regular solvents can swell plastics or attack reactors, especially under heating. We’ve run Omim DCA in stainless reactors and seen minimal residue or surface damage even after dozens of thermal cycles. Our operators have switched setups from pilot to production without swapping out lines or seals—this liquid just doesn’t eat into gaskets the way some quaternary ammonium salts do.
Density and viscosity matter during transfer and mixing. Some ionic liquids struggle to pump or measure, but Omim DCA moves with less effort. In manufacturing environments, downtime from clogs or calibration errors costs real money. Our process engineers have found this liquid pours easily and rinses well even after complex syntheses.
We run Omim DCA in a variety of syntheses where common organic solvents struggle. In our catalytic hydrogenation lines, it outperforms standard solvents—providing more selective product conversion and easier catalyst recycling. Our electrochemistry and battery prototype teams value its wide electrochemical window; it remains stable where water, THF, or acetonitrile would degrade.
Dye and pigment manufacturers approach us for solutions to slow product degradation. Our formulation experts have run dozens of stability trials, and Omim DCA consistently delivers better color-fastness when compared to simple chloride- or tetrafluoroborate-based liquids. The dicyanamide anion resists hydrolysis unlike some other ionic species.
Other teams in pharmaceuticals develop multi-step reactions that avoid hazardous waste. Using Omim DCA, they get predictable yields with easier workup, lowering cycle times for downstream purification and analysis. In the past, excess solvent removal in crystallization would bog down the whole operation. Now, solvent recovery and reuse cut costs and improve compliance for regulated waste.
Handling and storing Omim DCA has proven straightforward in our warehouses. Its nonvolatile character means far less air monitoring and doesn’t raise fire suppression headaches typical with acetone or ether drums. Personnel training focuses on long-term handling, not emergency shut-downs.
Our safety staff has reviewed exposure data and actual field observations. Accidental skin contact or inhalation during spills creates fewer risks compared to many older chemicals. We still emphasize personal protection, but the number of incident reports is lower. The product doesn’t require fume hoods for ordinary transfers, which lightens the load on air exchange infrastructure and lowers the odds of system failures.
Waste disposal is far less complicated. Years ago, chlorinated solvent drums presented headaches from cradle to grave due to leaching risks. Omim DCA avoids persistent halogen content—separating it from many ionic liquids based on PFAS or similar molecules. Moving tanks or even smaller vessels for lab work avoids the heavy spill containment setups we once needed, since the material doesn’t pool voluminous fumes under normal usage. Cleaning out glassware and bulk holding tanks after an Omim DCA run frequently takes just quick solvent rinses; even after sticky reactions, residues come up with less elbow grease.
We’ve had supply teams measure higher yields and less raw material loss since shifting specialty syntheses to Omim DCA. In electroplating tanks, operators get a smoother finish on parts and fewer rejects. We’ve watched fluorescent dyes keep their brightness in tougher storage and transit conditions. The product’s non-hazardous transport code has reduced paperwork and insurance costs with our shipping partners. These are not just findings written in tech journals. They show up in our daily operations, P&L sheets, and maintenance logs.
Our team is cautious about exaggerated claims from new chemicals. We ran real-world trials, collecting long-term leak, emissions, and purity data from a variety of applications. Omim DCA stood out for consistent performance across batches. Independent quality audits have never flagged off-spec shipments for this model, which isn’t true for many cheaper or hastily made competitors.
Operators rely on this consistency. In production, blending or batch errors cost valuable time. With Omim DCA, targets match documentation and there’s no sudden drift in characteristic physical or chemical data from run to run.
Many buyers ask how Omim DCA holds up against well-known alternatives like 1-butyl-3-methylimidazolium salts or ammonium-based ionic liquids. The octyl chain offers improved solubility for heavier organic compounds, which makes it suited for dissolving large molecules or boosting yields in multi-step pharmaceutical syntheses. In our colorant and polymer work, the longer alkyl side chain improves compatibility with hydrophobic additives.
Other ionic liquids, especially those with halide anions, create corrosion risks in sensitive reactors. The dicyanamide anion in Omim DCA reduces these concerns, keeping expensive production assets running longer between service intervals. Compared to nitrate- or phosphate-based salts, Omim DCA’s lower toxicity profile supports broader factory adoption. Some competitive ionic liquids break down under moderate heating or in extended storage; our field trials show Omim DCA remains stable, retaining low moisture and avoiding phase separation. That means fewer batch failures and no expensive reformulation late in a campaign.
Volatility matters in production and transit. While smaller imidazolium salts may offer lower cost or easy availability, their tendency to evaporate or degrade under UV exposure pushes up air filtering and materials handling spend. Omim DCA, thanks to its molecular design, stands up to the rigors of modern facilities where uptime and regulatory compliance define long-term business success.
The shift away from hazardous, legacy solvents isn’t just an academic pursuit or trickle-down regulation pressure. Every process change must earn its keep on the floor, in the books, and for the environment. Omim DCA has helped us meet those marks over and over in scale-up, continuous improvement, and product stewardship meetings.
We’ve connected with customers who needed longer life spans for dye stocks, less equipment damage in electrochemical cells, or safer process rooms. With Omim DCA, their feedback has been straightforward: less downtime, risk, and loss. As more sectors demand non-flammable, stable, and recyclable solutions, Omim DCA aligns with both local and global guidelines for sustainable operations.
Our commitment runs beyond shipping barrels out the door. Each year, we review use cases and collect new performance feedback. Clients running fine chemicals, coatings, or next-generation materials have told us about time saved and hazards lowered. We take these results to annual strategy reviews to push for better, safer options for our own plants, too.
Manufacturing chemicals means more than hitting specs on a data sheet. We operate under strict protocols and regulatory oversight to protect end-users, workers, and the environment. We routinely test every production batch of Omim DCA for moisture, residual solvent content, and purity. If a container leaves our site, it has passed those checks—no exceptions.
Teams across our business handle traceability with detailed logs from raw materials through final packing. This level of control prevents mistakes and builds client trust. Decades in the chemical world have shown us the long-term value of reputation over cutting corners for a quick sale. Unlike off-brand goods, the material you buy from us has a clear production history and support from a real, accessible technical staff.
We see demands rising for better performance in custom applications. Whether it’s developing high-purity reagents for electronics or building more robust dyes for specialty textiles, we keep running fresh batch testing and compatibility studies with Omim DCA. This continuous improvement cycle has helped us solve not just technical, but logistic, questions our industrial partners bring up.
Years of collecting customer feedback have taught us the value of open conversations. We hear directly from operators, plant engineers, and technical managers about what works—and what needs fixing. With Omim DCA, they report easier transfer between vessels, less fouling during column operations, and simpler cleaning. These differences grow in importance as operations scale from bench to production.
We’ve also seen academic labs move projects from prototype to marketable process thanks to improvements in product robustness with Omim DCA. Tech transfer teams often highlight reliability as a stumbling block for new chemistries. With this ionic liquid, they cite fewer setbacks from batch-to-batch variation, which drives faster scale-up and adoption.
Logistics professionals, staying alert for shifting regulations, appreciate a product that avoids classification under many hazardous transport codes. This reduces paperwork, speeds up customs, and keeps shipments moving without the need for extra labeling or packaging.
Omim DCA’s performance gives us more than just a commodity to sell. Its properties open the door to new synthesis pathways, separation techniques, and recovery loops. On our site, development teams have built closed-loop systems that regenerate and reuse the liquid, slashing solvent spend and waste generation at the same time. To us, Omim DCA represents a step toward a less resource-intensive, safer chemical industry.
We invite partners to challenge us with new problems—novel compounds to dissolve, reactions to accelerate, processes to de-risk. This liquid’s balance of thermal, chemical, and physical benefits has allowed us to keep customers competitive in a world demanding higher standards. Our field techs work directly with end-users to tailor deployment, optimizing mix ratios or integration with legacy gear.
From small lab pipelines to full-scale reactors, Omim DCA stands out for how it unlocks workable, safer chemistry without adding complications for the people in the plant. Long-term studies from our internal safety committee continue to show lower incident rates than with common volatile solvents or halide-based ionic liquids.
Our factory operates under detailed environmental controls, using closed systems to minimize emissions. We route waste streams through specialized recovery columns. With Omim DCA, we’ve noted fewer hazardous byproducts and simplified waste profiles. Workers cite easier training and less confusion during audits or emergency drills.
We welcome third-party inspections and routinely update internal protocols as international standards evolve. We believe in not only keeping up with best practices but helping shape them. Supplying Omim DCA has pushed us to refine every handling, testing, and shipping routine.
Being a producer, rather than just a broker or distributor, gives us the direct responsibility and insight to innovate for safer outcomes. Our labs hold reference samples for every lot dispatched, enabling swift, informed troubleshooting and ongoing customer support. This direct chain of knowledge supports clients through project pivots, regulatory changes, or process upgrades.
In modern chemical manufacturing, performance and safety must go hand in hand. Omim DCA delivers both, helping us and our customers reduce risk and raise output. Its impact stretches beyond metrics on a spreadsheet—it changes how we approach project design, waste management, and operator peace of mind.
We see a future built around smart choices like Omim DCA. As regulations tighten and production schedules get more aggressive, materials like this make the difference between routine setbacks and stripped-down, reliable operations. Our continuous investment in process knowledge and quality assurance means each shipment meets the current best-in-class performance standards.
Every day, we look at ways to make chemistry work better for people, businesses, and the planet. Products like 1-Octyl-3-Methylimidazolium Dicyanamide show that we’re moving forward—step by step, batch by batch—toward a cleaner, safer, and more reliable industry.