Products

O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%]

    • Product Name: O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%]
    • Alias: Elexa
    • Einecs: 258-013-2
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 898556
    Chemical Name O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide
    Content >15%
    Molecular Formula C7H14NOPS2
    Molecular Weight 239.30 g/mol
    Cas Number 298-04-4
    Appearance Yellow to brown liquid
    Odor Characteristic
    Solubility Slightly soluble in water
    Boiling Point Decomposes before boiling
    Density 1.18 g/cm³ (approximate)
    Flash Point Above 100°C
    Storage Conditions Store in a cool, dry, well-ventilated area

    As an accredited O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The chemical is packaged in a 500g amber glass bottle, tightly sealed, labeled with hazard warnings, product name, and concentration (>15%).
    Shipping Shipping of **O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%]** requires compliant packaging, labeling, and documentation as a hazardous chemical. Transport should follow local and international regulations (such as IATA, IMDG, or DOT), ensuring protection from moisture, heat, and incompatible substances, with safety data sheets and emergency response information accompanying the shipment.
    Storage Store O,O-Diethyl-N-(1,3-dithiolan-2-ylidene)phosphoramide [content >15%] in a tightly sealed container in a cool, dry, and well-ventilated area, away from heat, sparks, and open flames. Keep separate from incompatible substances such as strong oxidizers. Ensure proper labelling. Use secondary containment to prevent spills and restrict access to authorized personnel only. Avoid direct sunlight and moisture exposure.
    Application of O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%]

    Applications of O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%] in Industrial Manufacturing

    Our production-grade O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide (DEDTP) is formulated for demanding industrial synthesis processes. The material's properties make it valuable across select specialty chemical sectors, where strict compliance, formulation optimization, and controlled integration into downstream manufacture define its utility. Below, we detail principal industrial applications verified in established markets, with insights into regulatory alignment, formulation details, manufacturing flow, and the end-use products supplied by downstream clients.

    1. Organophosphorus Pesticide Intermediate Synthesis

    DEDTP serves as a functional intermediate in the multi-stage synthesis of select organophosphorus pesticides such as phosalone and related compounds. Its reactivity profile supports phosphorus-centered coupling reactions and thiolactone ring opening steps under controlled temperature and solvent conditions. Downstream, agrochemical producers rely on DEDTP for batch consistency and purity, integrating it into proprietary synthesis trains for commercial pesticide actives.

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    2. Custom Synthesis of Sulfur Heterocycle Pharmaceuticals

    DEDTP is introduced as an advanced phosphorus donor and dithiolate protecting group precursor in the manufacture of sulfur-containing heterocyclic drugs. Pharmaceutical intermediate plants utilize the high sulfur reactivity to construct critical heterocyclic cores with enhanced stability. The compound’s purity profile and batch traceability satisfy stringent pharmaceutical supply contracts.

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    3. Industrial Flame Retardant Additive Manufacturing

    DEDTP provides phosphorus- and sulfur-based flame retardant properties as a performance additive in specialty polymer compounding. Industrial users incorporate the compound into base resin blends for wire, cable, and structural application materials, targeting improved fire resistance without halogenated additives. The material is well suited for controlled masterbatch preparation and direct extrusion/fabrication processes.

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    4. Lubricant Additive Synthesis for Metalworking Fluids

    DEDTP functions as a phosphorus–sulfur agent in the synthesis of ashless antiwear and extreme pressure (EP) lubricant additives. Metalworking fluid manufacturers utilize this ingredient for custom additive packages designed for high-load machining and rolling operations. The molecule’s dual phosphorus–sulfur chemistry enhances both load carrying and surface protection in finished lubricants subjected to heavy mechanical stress.

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    Free Quote

    Competitive O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide [Content>15%] prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

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    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide: Bringing Precision to Modern Crop Protection

    Meeting Field Demands with Careful Chemistry

    Year after year, our teams work in active dialogue with farmers, custom blenders, and application specialists who depend on chemical tools that do exactly what the field conditions demand—no more, no less. O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide emerged from hands-on experience at the intersection of synthetic chemistry and day-to-day agricultural needs.

    This industry doesn’t wait for mistakes to happen before making improvements. With each production batch, our technical staff refines purity levels, monitors reaction yield, and checks every step in the process from the raw diethyl phosphorochloridate stage all the way to final crystallization. Consistent high content, above 15%, reflects this commitment and offers a margin of reliability in the most variable real-world scenarios.

    Manufacturing Insight: Why Purity and Content Matter

    Every grower and formulator knows that residual byproducts, trace solvents, or inconsistent content affect not just yield but also the safety and the re-entry intervals that matter to workers. We’ve responded by investing in control protocols that exceed basic compliance. At our facility, the purification process draws on years of iterative adjustments: temperature calibrations, vacuum conditions, and purification cycles plug directly into the final active percentage. These seem like subtle details from the outside, but from inside a synthesis tank, they determine if the product behaves as expected when it lands in a mixing vat or a field sprayer.

    Strict content control above 15% lets us deliver a material that supports uniform formulation, especially in large-scale liquid blends or granular carriers. Short-changing this level undermines performance and trust in a way that farmers quickly recognize through real results. Field failures caused by variable content erode confidence faster than any competitor could hope to do. Our technicians have seen what happens when even minor contaminants carry over: disrupted batch flows, gumming in pumps, and field blockages that slow down planting or spraying windows. These lessons become part of how we approach every synthesis run.

    How the Right Phosphoramide Product Supports Crop Protection

    Unlike generalized phosphoramide products, O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide delivers a target profile that matches specific soil or pest control prescriptions. Its chemical backbone—carefully maintained in each batch—offers selectivity that supports a range of mode-of-action needs. Fields challenged by resistant pests or rotation cycles that stress standard chemistries gain versatility here.

    We listen to feedback from agronomists who want to dial in specific activity spectra without burdening the production environment with hard-to-handle waste. Our production process zeros in on the right ratio of starting materials and reagents, which minimizes side-products. Every operator at the plant knows the cost of an off-spec batch: lost hours, extra energy overhead, waste disposal, and the trust that comes from having to explain shortfalls to a longstanding farming client.

    Many of our customers move between foliar and soil applications, each with its own profile for flowability, solubility, and application timing. This product, at content above 15%, keeps itself evenly distributed whether mixed ahead of time at formulation plants or poured directly into the nurse tank. Inconsistent products, especially those sourced from less disciplined supply chains, don’t support this level of predictable handling. The difference reveals itself during low-temperature blending or in high-speed filling lines, where solids must flow freely and dissolve on schedule.

    Specifications That Don’t Flinch Under Real-World Loads

    From the chemist’s viewpoint, each production run produces subtle differences in crystal size, bulk density, and solubility rate. Over years of manufacturing, our team has learned to spot which parameters actually matter to people on the ground. We design for a finished product that stands up to transport jostling, sudden humidity changes, and the bruising effect of scale hoppers and augers. These challenges don’t resolve themselves on paper—they show up as fines, lumps, or off-ratio mixtures that slow down blending at a co-op or delay getting product into the ground.

    We keep our active content consistently above 15%, aiming for an industry-standard blend that resists dusting and compaction even after weeks in storage. Analytical checks run with every lot catch outliers before they move to packaging. We don’t cut corners with leftover tails or mix-post processing waste into final goods, because we’ve seen what happens when the bottom line comes before product performance. Farmers talk. Plant operators trade stories. Word spreads about which source actually delivers quality that stands up to use.

    By holding this line, we support long-term relationships with our customers. Crop protection isn’t about single-season wins. Our investment in instrumentation, operator training, and safety compliance all fold back into products that reward loyalty with predictable, high-active percentages.

    Direct Comparisons: Why Our Product Outperforms Common Alternatives

    Phosphoramide production varies widely from one facility to another, especially as more regional players enter the market. Many alternatives target cost savings through broader specifications, permitting active content that slips below 14% or allowing higher levels of carrier solvents and reaction side-products. These approaches reduce upfront manufacturing costs but shift burdens to the farmer or formulator, introducing slow dissolving clumps, harder-to-handle liquid fractions, and unpredictable field behavior.

    By setting our lower threshold at 15% active content, with tightly controlled upper limits, we aim for balance: high enough to drive performance, low enough to avoid storage or blending risks associated with crystallization or phase separation. In our laboratory walks, samples from competitors sometimes show haze, solid precipitates, or slight discoloration. Internally, our line chemists and formulation specialists intentionally stress test these “market standards” against our own lots. We compare how well each dissolves in carbonate or neutral carriers, how smoothly the mixtures pump through transfer lines, and how consistently coverage appears in banded spray tests.

    Experience makes clear that small differences stack up fast during a full season. Where some suppliers’ product cakes up during cold snaps, ours keeps mixing smoothly, even when left overnight in sub-optimal storage. Smarter precipitation controllers and tighter reaction temperature bands help us head off unwanted side-reactions—outcomes that show up late as performance loss for the end user.

    On the regulatory side, we keep a clean record by aligning with environmental and worker safety guidance, which more and more buyers now demand as an assurance of quality. Unlike some generic import lines, our compliance approach syncs with traceability and documentation needs growing across markets.

    Supporting Better Applications: From Factory Floor to Field Use

    Chemicals never travel alone—they move from bulk trucks to storage bins, from mixing vats into injection lines, from handheld spreaders across hectares of field. Our operators see these downstream realities reflected in every return shipment and every message from a field tech frustrated by bridging or residue. The O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide we release from our plants goes through a battery of physical stability and usability tests based on actual customer routines.

    We’ve tweaked particle sizing protocols, anti-cake treatments, and safety venting on our packaging—all based on customer complaints and side-by-side handling tests. Choosing to refine the chemistry this far wasn’t about matching competitors. It grew out of missed planting windows, field walk audits from service teams, and the moments when somebody on our team had to show up with answers after a less-than-perfect delivery.

    The difference shows not only in fewer clogs but also in easier rinsing, faster mixing, and more predictable drop-to-drop consistency. These changes pay dividends when tens of thousands of hectares must be covered within tight weather windows and with limited equipment. Safety, too, improves for staff who can run lines with less dust, less handling, and fewer exposure moments.

    We build every lot with traceability in mind, so every drum or sack links directly back to the internal batch record. This way, we give agronomists and crop advisers data-based confidence, not just marketing assurances. Interactions with major growers and custom application businesses have pushed us to share more about the manufacturing steps and the analytical results, because openness on both sides raises performance standards industry-wide.

    Continuous Learning: Improving Product Through Collaboration

    Labs and production lines are always adapting to lessons from the field. Every off-spec blend, every problem with storage or blending becomes part of our development process. Operators and product managers take turns visiting key regions at planting and harvest. This isn’t an abstract R&D exercise; it’s about hearing directly from people who run the drills, spray rigs, and custom applicators who rely on us.

    Through frequent feedback sessions, trial formulations, and shared documentation, we incorporate on-the-ground knowledge into everyday production. Tightening up reaction times, adjusting particle grading, and expanding shelf-life testing all come from real conversations—not guesswork. We’ve scrapped lines of product that couldn’t meet these standards, even at great internal cost, because field confidence rides on repeatable results.

    Responsible Manufacturing and Environmental Diligence

    Making O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide involves mindful choices at every phase. Waste minimization, solvent recovery, and emission controls come baked into our batch scheduling and maintenance routines. Not every facility takes this approach, especially where regulation is laxer or downstream considerations take a back seat to immediate throughput.

    We train every process technician and maintenance lead to see beyond the day’s run. Longer life for key reactor components, optimized water and steam consumption, and stress-testing secondary containment help keep both our product and our community’s air and water cleaner. These investments mean we’re better able to trace, recall, or refine batches with the local and global impact in mind.

    Our partners, customers, and distributors frequently ask about source stewardship and long-term safety data. Their pressure keeps us honest; frequent audits—sometimes unannounced—hold us to both voluntary and regulatory standards. Sustainable sourcing, honest reporting, and batch transparency shape the ongoing story of this product line.

    Practical Solutions to Persistent Industry Challenges

    Field variability, unpredictable weather, and new pest pressures mean every chemical solution must evolve or fall behind. We bring experience from seasons where rains delayed application, or heat caused premature volatilization, and try to head off these issues in every process overhaul.

    Our labs review real application failures and put samples through freeze-thaw cycles, extended drum storage, accelerated aging, and controlled shake tests. Marketing claims don’t sway us—field results and repeat orders do. We work with supply chain students, agronomists, and logistics crews to experiment with improved storage solutions, alternative carrier systems, and more robust shelf-life extension methods.

    Identifying the right active content—neither too dilute to work nor so concentrated it causes handling trouble—comes from blending chemistry with plainspoken feedback. Our batch notes tie back to customer feedback logs, repair tickets, and internal investigations every time there’s a performance gap. Big or small, these issues get treated as fuel for continuous process improvement.

    Alternative products challenge us to tighten our offer, but close review often reveals where they run short in either stability, content assurance, or logistical flexibility. We don’t chase bottom-line cost alone; the trust our partners and users place in us matters more in the long run, and it shapes every practical solution we deploy.

    Looking Ahead: Setting a Higher Standard for Agricultural Chemistry

    Years in the chemical manufacturing sector remind us that true differentiation doesn’t come from slogans or bulk discounts, but from the discipline baked into every batch, every shipment, and every customer conversation. O,O-Diethyl-N-(1,3-Dithiolan-2-Ylidene)Phosphoramide with content above 15% is more than a formula on a label—it’s a reflection of collective learning, deliberate investment, and earned trust inside a demanding market.

    From our floor, the choices made in reactor temperature settings, filtration passes, and packaging upgrades show up months later as customer satisfaction or field headaches. We remain committed to pushing forward: more transparent documentation, stronger application research, and zero tolerance for cutting quality corners—no matter the pressure from outside costs or competitor shortcuts.

    Our product stands apart because it carries the lessons of years, the imprint of real hands and minds, and the responsibility to feed the world with science and integrity. In the end, every batch tells a story. Ours aims to tell one of reliability, honest craftsmanship, and results that matter far beyond paper specifications.

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