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Diethyl 1,3-Acetonedicarboxylate

    • Product Name Diethyl 1,3-Acetonedicarboxylate
    • Alias Diethyl 3-oxoglutarate
    • Einecs 207-920-5
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    325557

    Productname Diethyl 1,3-Acetonedicarboxylate
    Casnumber 105-76-0
    Molecularformula C9H14O5
    Molecularweight 202.20 g/mol
    Appearance Colorless to pale yellow liquid
    Boilingpoint 130-131°C at 10 mmHg
    Meltingpoint -20°C
    Density 1.132 g/cm³ at 20°C
    Solubility Slightly soluble in water, soluble in most organic solvents
    Purity Typically ≥98%
    Refractiveindex n20/D 1.437
    Flashpoint 122°C
    Synonyms Acetone diethyl dicarboxylate
    Smiles CCOC(=O)CC(=O)CH2C(=O)OCC
    Storagetemperature Store at 2-8°C

    As an accredited Diethyl 1,3-Acetonedicarboxylate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Diethyl 1,3-Acetonedicarboxylate is supplied in a 500 mL amber glass bottle with a secure screw cap for safe storage.
    Shipping Diethyl 1,3-Acetonedicarboxylate should be shipped in tightly sealed containers, protected from light and moisture. Store in a cool, dry, well-ventilated area away from incompatible substances. Proper labeling and compliance with chemical transport regulations are essential to ensure safe handling during transit. Use appropriate packaging to prevent leaks and spills.
    Storage Diethyl 1,3-acetonedicarboxylate should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible materials such as strong oxidizers. Keep the container tightly closed when not in use. Store it in a tightly sealed chemical-resistant container, and avoid exposure to moisture and direct sunlight. Ensure proper labeling and restrict access to authorized personnel only.
    Application of Diethyl 1,3-Acetonedicarboxylate
    Purity 98%: Diethyl 1,3-Acetonedicarboxylate with purity 98% is used in pharmaceutical synthesis, where high purity ensures precise reaction yields and minimal impurities in active ingredients. Molecular weight 216.21 g/mol: Diethyl 1,3-Acetonedicarboxylate with molecular weight 216.21 g/mol is used in organic intermediate manufacturing, where the exact mass enables accurate stoichiometry in complex syntheses. Boiling point 284°C: Diethyl 1,3-Acetonedicarboxylate with boiling point 284°C is used in high-temperature esterification reactions, where thermal stability prevents decomposition and side product formation. Density 1.094 g/cm³: Diethyl 1,3-Acetonedicarboxylate with density 1.094 g/cm³ is used in liquid-phase extractions, where consistent physical properties allow predictable phase separation and recovery. Stability temperature up to 200°C: Diethyl 1,3-Acetonedicarboxylate with stability temperature up to 200°C is used in industrial catalyst production, where stable performance at elevated temperatures ensures process reliability. Melting point −20°C: Diethyl 1,3-Acetonedicarboxylate with melting point −20°C is used in cold storage formulations, where low-temperature operability maintains chemical integrity during transport and storage. Viscosity 2.8 mPa·s at 25°C: Diethyl 1,3-Acetonedicarboxylate with viscosity 2.8 mPa·s at 25°C is used in flow chemistry systems, where optimal viscosity enhances mixing efficiency and reaction consistency. Particle size <10 μm: Diethyl 1,3-Acetonedicarboxylate with particle size <10 μm is used in microreactor processes, where fine particle size improves reaction kinetics and product homogeneity. Hydrolytic stability >24 hours: Diethyl 1,3-Acetonedicarboxylate with hydrolytic stability >24 hours is used in aqueous-phase syntheses, where long-term stability prevents premature hydrolysis and maintains process yield. UV absorbance 280 nm: Diethyl 1,3-Acetonedicarboxylate with UV absorbance at 280 nm is used in analytical calibration standards, where reliable optical properties enable precise concentration determination.
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    Certification & Compliance
    More Introduction

    Introducing Diethyl 1,3-Acetonedicarboxylate: Insight from the Manufacturer's Floor

    The Chemical’s Place in Our Workshop

    Those who work with fine organic intermediates know that every bottle marks hours of dedication, planning, and attention to detail. Diethyl 1,3-acetonedicarboxylate—sometimes referred to simply by its role as a β-keto diester—has proved essential in many chemical synthesis processes. Our team takes pride in producing this compound at high purity, keeping its versatility and downstream application in mind throughout every batch.

    As a family of manufacturers used to handling high-performance chemicals, we recognize that the reliability of this compound directly shapes the results customers see in their research and production lines. In the lab, chemists want a product that behaves each time as expected—a transparent, colorless liquid that handles with ease and stands up to analytical scrutiny. That’s why, during our own product development, we invested in maintaining clear standards, consistent production parameters, and strict cleanliness in every run.

    Manufacturing Experience and the Value of Consistency

    Our experience spans decades of refining β-keto esters for exactly this reason. We commit to synthesis routes that minimize byproduct and side reactions, because time lost to purification ends up as cost—and no one wants that. Hydrolysis control, fine-tuned distillation, careful intervention when intercepting side reactions: each of these plays a part in how refined the final product looks, smells, and functions.

    Our technicians frequently examine batches using established analytical methods—GC, NMR, and Karl Fischer titration among them—to ensure the moisture is low, chemical makeup matches specification, and volatiles fall within defined ranges. Even subtle differences in technique or equipment can introduce impurities, so every team member brings both experience and a sharp eye for detail. This is not just quality control, it’s the work that helps researchers trust every shipment.

    Modeling the Standard: Product Features and How We Achieve Them

    Diethyl 1,3-acetonedicarboxylate, with the molecular formula C9H14O5, stands out as a foundational reagent in multiple branches of chemical synthesis. Our product typically leaves the reactor with purity exceeding 99 percent, water content after drying below 0.1 percent, and a neutral to faintly acidic odor that signals minimal contamination. We blend our technical and analytical knowledge to ensure that every drum or bottle keeps these characteristics from plant to dock.

    We favor specific packaging methods, matching the needs of end users—glass bottles for small lots, fluoropolymer-lined drums for scale orders—to prevent leaking, contamination, or volatile loss. Customer feedback plays a critical role; stories from researchers and pharmaceutical plants about evaporation or bottle breakage led us to invest in thicker-walled containers and desiccant packs, adjustments that continue to cut down on product loss and handling mishaps.

    On the Floor: Usage, Challenges, and Customer Goals

    As producers, we work closely with a wide community—pharmaceutical innovation centers, dye manufacturing lines, research and development labs, and industrial pilot plants. Diethyl 1,3-acetonedicarboxylate is never a finished product; rather, it’s a building block. Typical applications use this chemical as a key starting material in the synthesis of pyridine carboxylic acids, substituted pyrroles, barbiturates, and certain vitamins. It reacts well in Knoevenagel condensations and Michael additions, and shows stable behavior during prolonged reactions under both basic and acidic conditions.

    For those making specialized pharmaceuticals, each gram’s pedigree matters. Remaining trace metals, alternative isomers, or water concentration could all affect downstream biological tests or regulatory submissions. That’s why we reason that keeping our production batch logs open to client review—not just an attached certificate of analysis—removes the veil and steers clear of unwelcome surprises downstream. Clients have told us how this transparency lets their chemists troubleshoot, check for anomalies, or replicate our results. We see it as an extension of the work done on our factory floor.

    Quality Isn’t a Buzzword Here—It’s the Daily Reality

    It would be easy to claim chemical purity without backing it up. To keep our promises, each production lot passes through hands-on inspection and multiple instrument checks. Our best operators can catch faint color changes or mild odor shifts, indicators rarely flagged by automated testing. We use batch numbers to tie every vial back to its history—raw materials, operators, atmospheric conditions, and even vessel cleanliness. This data doesn’t just satisfy auditors; it tells returning customers they’ll receive the product they expect, every time.

    Some newcomers ask why our diethyl 1,3-acetonedicarboxylate carries a particular odor profile or has slightly different viscosity than a cheaper import. Experience says: not every synthesis route produces the same suite of minor impurities or byproducts. We regularly test commercial alternatives side-by-side in reagent-grade reactions. The differences aren’t always visible—sometimes it’s a clean NMR baseline, sometimes a stubbornly high melting point in a product made using a competitor’s lot. But every time, precision at the milligram scale matters. We won’t compromise on this, no matter the volume ordered.

    Safety and Workshop Wisdom

    Those making and handling diethyl 1,3-acetonedicarboxylate come to respect both its advantages and its hazards. This material, like many β-keto esters, can irritate skin and mucous membranes, and may present risks in poorly ventilated spaces. Our teams regularly update safety training and communication protocols; every operator learns not only the relevant safety data, but also firsthand tips from more experienced staff. When a customer calls us with questions about safe handling, waste disposal, or material compatibility, the advice comes from tested procedures, not word-for-word recitations of a technical bulletin.

    Over the years, we’ve seen that preparation trumps response. We keep sealed storage, maintain good separation from strong acids and bases, and rely on proven neutralization procedures for accidental spills. These details turn up seldom in glossy catalogs, but they matter to the people actually opening containers and transferring material at scale. We’ve minimized occupational hazards not just for compliance, but to honor the trust that workers and clients put in our products.

    Usage Differences from Related Chemicals

    Chemists often compare diethyl 1,3-acetonedicarboxylate with close relatives, such as ethyl acetoacetate or diethyl malonate. While each of these belongs to the class of β-dicarbonyl compounds, their chemistry plays out differently, experiment after experiment. Diethyl 1,3-acetonedicarboxylate grants users much stronger nucleophilicity in certain condensation reactions, allowing for more diverse substitution patterns. Subtle changes in reactivity help researchers craft molecules with increased complexity or more precise selectivity.

    In our shop, clients mention that switching from diethyl acetoacetate to our β-keto diester can improve product yields or help avoid unwanted isomerization during subsequent steps. Our own troubleshooting—often conducted side-by-side with customer research teams—shows that this compound’s chemical handle offers a distinct advantage in forming tetrasubstituted centers, a major hurdle in advanced synthetic work or active pharmaceutical ingredient development. For those developing new dyes or pigments, the specific reactivity profile of diethyl 1,3-acetonedicarboxylate enables pathways inaccessible with single ketoesters or simple dicarboxylates. Synthesis work isn’t paint-by-numbers; having access to more reactive sites or stable intermediates changes what’s possible.

    We keep an eye on how alternative suppliers manufacture related compounds. Production routes and impurity markers often differ: some vendors favor higher-throughput chemistries that save money at the cost of trace contaminants or broader isomer spreads. Over the years, we’ve fielded requests from companies frustrated by those issues, seeking out our product when side reactions crippled their previous process. Once, a polymer lab found that a subtle batch-to-batch change in a competitor's lot left their end material with varying color intensity; after switching to our diethyl 1,3-acetonedicarboxylate, the color stabilized and production hiccups stopped—a small real-world success story that reinforced our philosophy.

    Meeting the Best Standards—Not Just Checkmarks

    Quality standards today come shaped by constant feedback, regulatory shifts, and unexpected findings during application. Making diethyl 1,3-acetonedicarboxylate isn’t only about hitting assay and purity figures; the quiet factors—residual solvents, storage compatibility, or batch aging—matter just as much to us and our customers. We listen when pharmaceutical project leaders report new documentation needs. Our lab team stays ready to meet new customer-driven requirements, whether it’s a specialized analytical report, stability study over time, or a tailored packaging configuration.

    Customers routinely ask for lot-specific details, test reports, or shipping modifications. Rather than treat those as inconvenient one-offs, we’ve embraced the opportunity to share what we know and adapt new methods into our workshop. For one major client, we rerouted product through a newly validated clean room, cutting cross-contamination risk and satisfying both their auditors and their peace of mind. Every question makes us sharper, every success story makes the whole crew proud.

    From the Source: Real Impact on Scientific Work

    Our team makes a habit of following published research and patent filings that cite our diethyl 1,3-acetonedicarboxylate. Years ago, a small biotech firm reached out to share news of a new antihypertensive candidate shaped in part by our product. Their gratitude felt genuine. We felt pride in knowing our focus on strict process controls, high purity, and thorough traceability contributed at least a piece to that achievement. Sometimes customers in dye manufacturing or agricultural research send us progress updates, crediting our product with improved reaction yields or consistent colorfastness in formulations.

    Having a direct connection to end-users shapes every decision we make. Unlike distant traders or bulk middlemen, we see the inside of reactors, feel the material in hand, and watch it take part in an experiment’s breakthrough or setback. Every failed batch, every unexpected anomaly in reactivity, arrives at our desk as a puzzle to solve, a lesson to weave into production runs. Our research partners appreciate this; many have stayed with us for years, not just for the chemical, but for the people and knowledge behind each bottle.

    Potential Solutions and Ongoing Innovations

    Challenges never stop. Supply chain jolts, regulatory updates, customer-specific testing needs—each day brings something new. Turning these challenges into opportunities has defined our story. Tracing raw materials with precision, we built direct supplier relationships that weathered distribution shocks or shortages. Establishing an in-house lab for advanced impurity profiling helped us react quickly to new compliance targets or tricky isolation requirements. Clients have visited our facility to see tests in action, confirming that our claimed purity lines up with hands-on chemical behavior.

    For those in research, sticking to proven processes often isn’t enough. Our R&D team stands ready to tweak formulations, refine drying, or shift production scales based on evolving customer targets. When a pharmaceutical process changed their required impurity ratios for regulatory reasons, we responded by adjusting our distillation profiles and drying cycles, sending test lots for pilot-scale validation. Problems only stay problems as long as no one listens; we see every client call as a chance to innovate.

    A Commitment Rooted in Experience

    Every bottle or drum of diethyl 1,3-acetonedicarboxylate leaving our facility reflects layers of care—chemistry, logistics, communication, learning. Forming partnerships with customers, investing in better materials and processes, meeting unexpected hurdles with open ears and open notebooks: this creates true product confidence on both sides. People who use our product know the work that goes into it, and that every question, complaint, or piece of advice builds the next generation of what we make.

    As chemical manufacturers, we understand that value isn’t just a number on a certificate, but a bond forged in workshops and labs, validated by results, and sustained through transparency. We look forward to seeing what breakthroughs our partners craft next with our diethyl 1,3-acetonedicarboxylate—and to tackling the next production challenge together.