|
HS Code |
336838 |
| Chemical Name | N,N'-Diethyloxamide |
| Cas Number | 627-93-0 |
| Molecular Formula | C6H12N2O2 |
| Molecular Weight | 144.17 g/mol |
| Appearance | White crystalline solid |
| Melting Point | 220-222 °C |
| Boiling Point | Decomposes before boiling |
| Solubility Water | Slightly soluble |
| Density | 1.11 g/cm³ |
| Structure | CH3CH2NHCOCONHCH2CH3 |
| Pubchem Cid | 12650 |
As an accredited N,N'-Diethyloxamide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 500g of N,N'-Diethyloxamide is packaged in a tightly sealed amber glass bottle with a chemical-resistant screw cap and safety labeling. |
| Shipping | **N,N'-Diethyloxamide** should be shipped in tightly sealed containers, stored in a cool, dry, and well-ventilated area, away from incompatible substances. Ensure appropriate labeling and packaging according to relevant chemical transport regulations. Handle with care to avoid spills and exposure. Consult the SDS for detailed shipping, handling, and emergency information. |
| Storage | Store **N,N'-Diethyloxamide** in a tightly sealed container, away from moisture, heat, and incompatible substances such as strong oxidizers. Keep in a cool, dry, and well-ventilated area, protected from direct sunlight. Ensure storage is clearly labeled and follow local regulations for chemical storage to prevent contamination and accidental exposure. Always use appropriate personal protective equipment when handling. |
Applications of N,N'-Diethyloxamide in Industrial ManufacturingAs a direct manufacturer, we supply N,N'-Diethyloxamide to specialized industries with proven downstream usage. Below, we detail precise industrial applications, regulatory frameworks, and technical parameters supporting production efficiency and product compliance. 1. Copper Electroplating Additives for Electrical Component ManufacturingN,N'-Diethyloxamide serves as a grain-refining brightener in copper electroplating processes, especially for printed circuit board (PCB) and electronic connector fabrication. It controls deposit crystallinity, reduces surface roughness, and enhances current distribution during electroplating. Technicians integrate this compound during bath formulation to achieve durable, high-purity copper layers vital for precision electronic parts. Consistent process monitoring adjusts the dosage based on bath age and product specification, aligning with high-density interconnect (HDI) manufacturing constraints. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Intermediate in Organic Synthesis for Agrochemical ProductionDownstream agrochemical formulators use N,N'-Diethyloxamide as a process intermediate for coupling or functionalization steps in selective herbicide manufacturing. This compound undergoes condensation with acylating agents or oxidation under defined conditions, resulting in complex amide structures required for modern pesticide formulations. Quality assurance labs monitor purity and residual solvents according to international crop safety standards, enabling high-yield transformation in batch and continuous processes. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Polymerization Modifier for Specialty Polyamide ManufacturePolymer manufacturers utilize N,N'-Diethyloxamide as a polymerization chain terminator or structure-modifying agent in the synthesis of engineering polyamides. The inclusion at controlled stages of polymer growth tailors melting point, crystallinity, and mechanical flexibility of the resulting polymers, critical for advanced automotive and electrical insulation applications. The additive enters continuous polymerization lines via automated feed hoppers, ensuring reproducible batch-to-batch performance. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Analytical Reagent Preparation for Laboratory Chemical AnalysisCertified reference material producers and analytical laboratories incorporate N,N'-Diethyloxamide as a primary standard or calibrant for metal ion complexometric titrations, particularly in transition metal quantification protocols. Its well-defined chelating equivalence and predictable reactivity profile allow for high-accuracy endpoint determinations in laboratory QA/QC, especially in metallurgy and environmental sample analysis. Laboratories formulate bespoke reagent solutions by dissolving measured quantities into aqueous or methanolic systems depending on method requirements. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
5. Sintering Aid in Advanced Ceramic and Powder Metallurgy ProductionManufacturers in the powder metallurgy and advanced ceramics sectors incorporate N,N'-Diethyloxamide as an organic pore-forming agent during green body preparation. It disperses evenly within metal or ceramic powders and decomposes cleanly during controlled thermal treatment, leaving optimized pore networks conducive for catalyst supports, filtration media, or lightweight structural components. This controlled fugitive binder technique requires critical purity control and precise workflow integration to maintain product density and mechanical performance standards. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
|
Competitive N,N'-Diethyloxamide prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.
We will respond to you as soon as possible.
Tel: +8615371019725
Email: admin@sinochem-nanjing.com
Flexible payment, competitive price, premium service - Inquire now!
Every day we head into the plant ready to measure, mix, and refine, looking for ways to make cleaner, more consistent batches of N,N'-Diethyloxamide. We have watched this compound develop over years of trial, equipment upgrades, and close attention to the shifting demands of process chemistry. In the lab, there are few shortcuts: either a chemical performs as required at scale, or it simply earns a place back on the development shelf. N,N'-Diethyloxamide has earned an enduring place in our production lines, thanks in large part to its chemical reliability and adaptability to a range of downstream needs.
The material appears as a fine, white crystalline powder, with a CAS number of 609-10-7. Every batch leaves our site after a stringent in-house quality check. Melting point consistently falls between 198 and 200 °C, and the product remains stable under recommended storage conditions. Moisture content and particle size both get close attention. Only those lots meeting our internal benchmarks move beyond the warehouse.
From the manufacturer’s perspective, a chemical is only as valuable as it is functional in the hands of our industry partners. N,N'-Diethyloxamide regularly finds its place in colorant synthesis, where it helps to set pigment structures for plastic resins. We have seen increased demand from customers working on thermal paper coatings, where performance hinges on a stable, pure intermediate. The same applies in efforts to tune up the efficiency of lithium battery separators—a field where even minor consistency issues result in real-world performance failures. It is that level of reliability, batch after batch, that those building energy storage materials and smart materials now expect from the chemical partners upstream.
Beyond these specific cases, N,N'-Diethyloxamide has earned trust among teams restoring catalytic converters or working on new chelating agents. Its diamide structure remains attractive as a building block in organic synthesis. Our chemists often discuss new directions for this compound with researchers and process engineers eager to scale ideas from bench-top discovery to commercial reactors.
Chemicals as pure as N,N'-Diethyloxamide are not a commodity, and neither is the manufacturing approach. We sometimes receive samples from new competitors. Granularity differs, residual solvents jump out in analysis, and impurity profiles shift. Years of in-house chromatography have driven our own process refinements so that we can avoid these pitfalls—impurities flagged by customers end up being traced back to process shortcuts, contaminants in a key precursor, or inconsistent drying steps.
More than once, a new buyer has told us about crystal habit concerns from other producers. Large clumps pile up in storage bins, or fines lead to poor handling and unpredictable performance in extrusion and mixing. We act on this feedback, further adjusting our crystallization and drying parameters, and training warehouse teams for careful packing and inspection. In short, every incoming order carries the expectation that less time will be spent troubleshooting or blending away defects. That time saved trickles all the way down to the machine operators and the project managers counting on timely, error-free supply.
Speaking as the team responsible for final sign-off, each delivery tags back to a production record and a retained sample. If a partner ever has a technical query or needs verification, we go straight to the reference material and can trace every critical batch parameter. Our in-house records go back a decade. This is not paperwork for paperwork’s sake: field engineers and QC managers want the reassurance that any future questions meet a detailed production and testing history. Returning customers mention this system as a deciding factor in bypassing importers or intermediaries altogether.
We have learned that paperwork quickly turns meaningless if not backed up by a willingness to solve real-world problems. When an application test turns up unexpected results, a chemist—not an order desk—gets on the line. In this industry, superficial communication does not build confidence. If a technical problem arises, talking directly to the group that designed and produced the compound saves everyone time and cost.
Chemists often ask how this diamide compares with the classic N,N'-Dimethyloxamide or oxalic acid diamide analogues. In practical use, the difference lies not only in molecular structure but in how each material responds during pressurization, heating, or compounding steps. We have seen some research teams struggle with the volatility and hydrolysis issues common to methyl or unsubstituted versions, finding fewer issues using our product in hydrothermal environments or complex esterification.
N,N'-Diethyloxamide brings a higher degree of stability, especially in prolonged exposure to strong bases or mild acids. Some dye houses report sticking with ethyl derivatives strictly because they reduce coloration failures and batch discards. For manufacturers focused on yield and purity, those saved batches mean fewer headaches when pilot-scale results need to translate into full-scale production.
The real-world difference sometimes comes across in small, overlooked ways. During multi-ton shipments in hot summer months, our team has fielded fewer complaints of caking or discharge blockages—contrast this with certain shipments using suppliers focusing solely on price or volume. Staff members with years on the loading dock can recall the shift in customer satisfaction after we tightened exclusion of residual starting material and locked in low-micron dust targets.
Quality control for N,N'-Diethyloxamide demands more than just a final HPLC or IR check. Down on the plant floor, adjustments big and small feed back through the system. Raw material traceability rules every order. Our oxidation runs operate in closed systems with precise atmosphere management. Final holding tanks must avoid cross-contamination. Training cycles for staff came from process audits that uncovered shortcuts popular among less patient competitors—and once a problem appears in a batch, it is too late for wishful thinking.
We don’t just benchmark against our own standards—our team constantly talks with technical staff at fiber and pigment firms who know firsthand the cost of batch-to-batch variability. Some customers have designed their own incoming inspection tied to our COAs, which keeps both sides honest. Even after years of repeat orders, open communication and inspections remain central. Disagreements happen, but in this type of business a technical dispute quickly spotlights who stands behind the product with skills and inventory, versus who vanishes behind email chains and office switches.
Anyone with a long enough memory in the chemical industry will remember the time chemicals flowed out of whichever plant happened to offer the lowest price or fastest delivery. Mistakes followed in quality, followed by production stoppages, recipe failures, and ultimately stricter requirements among discerning buyers. Our approach over decades has been to accept that close involvement in day-to-day operations adds an up-front cost but pays off through trust and repeat relationships.
Years spent refining drying cycles, automating solvent stripping, and troubleshooting failed batches give our staff the kind of practical insight that only builds through seeing work go right and wrong. We have collected stories of chemistry under pressure: a last-minute reformulation to meet an ultra-low residual spec, a rare shipping incident in monsoon season that prompted the installation of humidity-controlled silos, or a fortunate phone call from a customer who caught a technical issue before it turned into an expensive recall.
True value of N,N'-Diethyloxamide proves itself out there, on production lines or in pilot plants, where materials either support a customer’s technology or cause slowdowns and waste. A pigment manufacturer once reported a surge in fade resistance upon switching to our material, saving an entire production campaign from market recall. A specialty battery firm tied a small gain in separator performance to our refined process for eliminating trace amines—shaving whole days off their development cycles.
Importantly, we have had to navigate tight regulatory climates—regions where accepted impurity tolerances get tighter year after year. Our ability to tweak process conditions, adapt to upgraded analytical equipment, and solve technical hurdles wins more long-term partners than a million brochures in the mail. In-house regulatory and compliance teams monitor evolving standards, making certain new European or Asia-Pacific rules translate immediately into production room adjustments rather than expensive, last-minute scrambles.
It is tempting to describe N,N'-Diethyloxamide simply as a clean, white powder with a molecular formula of C6H12N2O2, but that tells only a fraction of the story. Our teams, from procurement through final inspection, handle every shipment knowing that downstream impacts ripple through supply chains. A missed specification does not just mean a failed delivery; it could put a customer’s entire business line at risk. Years ago, we built our internal systems around minimizing those disruptions—reliable scheduling, shelf-stable stock, and backup plans for everything from packaging materials to weather delays.
We invest in logistics coordination, using staff familiar with container handling and customs peculiarities across continents. Many in the industry have learned the cost of delays due to regulatory paperwork or port congestion. We have found that experienced logistics staff are as crucial as R&D talent in maintaining supply consistency and responsiveness. Ensuring safe, prompt arrival of N,N'-Diethyloxamide, whether heading to Taiwan, the United States, or Germany, keeps customer facilities operational and reputations solid.
It takes significant technical and human investment to provide a specialty chemical without shortcuts. Lab staff experiment with new purification resins and blending techniques. Manufacturing overseers run root-cause analyses on every outlier. Senior operators mentor younger colleagues not through abstract safety lectures, but through shared examples of missteps corrected over time. This slow accumulation of institutional memory translates directly into outcomes customers notice—lower field complaint rates and less frequent requests for technical support.
Feedback from established clients guides our R&D agenda. As more industries look to alternatives for hazardous materials, or demand higher purity for electronic and battery uses, we tailor processes to fit changing needs. It has not always been easy—each new process step must justify itself through measurable improvement, and each technical fix undergoes repeated scaling trials. Having direct channels to proven experts proves critical when unanticipated issues arise. Our support staff, familiar with both customer processes and in-house chemistry, can respond meaningfully at a technical level.
Our ongoing investment in analytical technology supports the pursuit of ever-tighter chemical specifications. We deploy nearline NMR, regular Karl Fischer titration, and calibrated HPLC methods. Process and batch records integrate with digital track-and-trace systems. These technical supports keep every lot of N,N'-Diethyloxamide pinned to a verifiable origin and process record. No sales contract gets signed unless the technical team is confident that the customer’s needs are met—not just on paper, but in concrete suitability.
An experienced, reputable supplier recognizes that every advance in downstream industry brings a matching need for stricter chemical control up the chain. We consider compliance, technical know-how, and transparent communication core to delivering value, not just legal obligations. In many ways, the marketplace has become smarter and less forgiving of corner-cutting—and we see that as a positive turn for both users and makers.
After decades producing, shipping, and adjusting to customer technical requirements for N,N'-Diethyloxamide, our focus remains clear: deliver dependable batches, adapt to new challenges, and back up every drum and bag with real-world expertise. Each container sets out with the aim of making end-users’ work easier and safer, not just filling a ledger line.
We are constantly learning and improving—not because regulations say so, but because years of experience show that shortcuts create more costly problems in the long run. Our long-term view has cultivated trust from teams who rely on uninterrupted supply, deep technical support, and true manufacturing transparency. N,N'-Diethyloxamide stands as a reflection of all the advances, expertise, and industry partnerships we have built. The product is only as good as the team and the systems behind it, and we carry that responsibility forward with each new production run.