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2',4'-Dimethylacetoacetanilide

    • Product Name 2',4'-Dimethylacetoacetanilide
    • Alias Oracet Blue B
    • Einecs 228-365-7
    • 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

    953612

    Chemical Name 2',4'-Dimethylacetoacetanilide
    Molecular Formula C12H15NO2
    Molecular Weight 205.25 g/mol
    Cas Number 89-68-9
    Appearance Yellow powder
    Melting Point 108-110°C
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in ethanol, acetone
    Density 1.12 g/cm³
    Purity Typically ≥98%
    Synonyms Acetoacetanilide, 2',4'-dimethyl-

    As an accredited 2',4'-Dimethylacetoacetanilide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing A 500g amber glass bottle labeled "2',4'-Dimethylacetoacetanilide," sealed with a screw cap, features hazard and safety information.
    Shipping 2',4'-Dimethylacetoacetanilide should be shipped in tightly sealed containers, protected from moisture, heat, and direct sunlight. It must be clearly labeled as a chemical substance and transported according to local, national, and international regulations for safe chemical shipping. Appropriate documentation and safety data sheets should accompany the shipment.
    Storage **2',4'-Dimethylacetoacetanilide** should be stored in a tightly sealed container, kept in a cool, dry, and well-ventilated area away from moisture, heat, and incompatible materials such as strong oxidizers. Store at room temperature and protect from direct sunlight. Ensure proper labelling and avoid sources of ignition. Follow all relevant safety and regulatory guidelines for handling and storage.
    Application of 2',4'-Dimethylacetoacetanilide

    Applications of 2',4'-Dimethylacetoacetanilide in Industrial Manufacturing

    As a chemical raw material producer, we supply 2',4'-Dimethylacetoacetanilide to specialized sectors where its technical properties deliver reliable performance in established industrial processes. Our focus is on primary markets with well-documented downstream demand, ensuring all application recommendations support compliance, formulation accuracy, and consistent product quality for end users.

    1. High-performance Pigment Intermediate for Organic Yellow Dyes

    2',4'-Dimethylacetoacetanilide functions as a crucial coupling agent in the synthesis of monoazo yellow pigments, predominantly C.I. Pigment Yellow 12, 13, 174, and closely related analogues. The tight quality control for use in pigment intermediates is driven by color purity and thermal stability requirements from ink, plastic, and coatings manufacturers. During pigment synthesis, our material undergoes diazo coupling with aryl amines, maintaining shade consistency across large-scale batches.

    Industry compliance standards

    • EN 71-3:2019 (Toy safety, migration of certain elements in pigments for toys)
    • REACH Regulation (EC) No 1907/2006 for chemical registration and restricted substances
    • ASTM D3722 (Standard Test Method for Pigment Yellow 12)
    • ISO 1248:2020 (Pigments — Specifications and methods of test for organic pigments used in paints)

    Typical usage ratio

    • Intermediate input: 1.0 – 1.1 molar equivalents per azo dye target compound; slight stoichiometric excess compensates for minor process yield loss.

    Downstream process integration

    • Added directly to the diazotization vessel after in-situ generation of diazonium salt, serving as a coupling component in continuous or batch synthesis systems.

    Final product types

    • Pigment Yellow 12, Pigment Yellow 13, Pigment Yellow 174
    • Printing ink colorants
    • High-durability plastic masterbatches
    • Industrial and automotive organic coatings

    2. Colorant Component in Polyolefin and PVC Compounding

    Major polymer processors utilize 2',4'-Dimethylacetoacetanilide-based pigments to achieve consistent yellow shades in polyolefin blends, PVC compounds, and technical resins. The loading and dispersion requirements differ by carrier resin and pigment system, with specific migration limits and lightfastness performance forming part of QA protocols. Only pre-qualified downstream applications employ this component due to strict compliance screening in children's products and food contact goods.

    Industry compliance standards

    • EU Regulation (EU) No 10/2011 on plastic materials and articles intended to come into contact with food
    • US FDA 21 CFR 178.3297 (Colorants for polymers)
    • ISO 11469 (Generic identification and marking of plastics products)
    • OEKO-TEX Standard 100 (Annex 4 restricted dyestuff requirements for textiles and polymers)

    Typical usage ratio

    • Pigment concentrate typically contains 10–30% pigment by weight; pigment input into final resin: 0.05–0.5% w/w, depending on shade strength and final opacity targets.

    Downstream process integration

    • Introduced as a pre-dispersed pigment powder or masterbatch at the compounding phase, directly prior to extrusion or injection molding; continuous mixing optimizes dispersion uniformity.

    Final product types

    • Color-masterbatch granules for polyolefin and PVC
    • Extruded sheets and films for packaging
    • Injection-molded automotive and electronic housings
    • Consumer plastic goods, compliant with food or toy standards where relevant

    3. Printing Ink Formulation for Commercial and Security Prints

    Commercial ink manufacturers employ 2',4'-Dimethylacetoacetanilide-based pigments to develop high-opacity yellow ink systems for offset, flexographic, and gravure printing. Formulators must balance color strength, dispersibility, and regulatory certification, especially for applications such as food packaging, children’s books, and security printing substrates. Compliance and process integrity start from pigment manufacture, with testing for heavy metal migration and lightfastness through the full lifecycle of end-use exposure.

    Industry compliance standards

    • Swiss Ordinance SR 817.023.21 (Printing inks on food contact materials)
    • EuPIA GMP (Good Manufacturing Practice for Printing Inks for Food Packaging)
    • Toy Safety Directive 2009/48/EC (migration limits in printed toy goods)
    • ISO 2846-1 (Color and transparency testing in offset inks)

    Typical usage ratio

    • Pigment load in ink concentrate: 10–20% by weight; ink-to-pigment ratio and final let-down adjusted according to print process (offset, flexo, gravure) and substrate absorption properties.

    Downstream process integration

    • Dispersed into varsols, resins, or aqueous carriers within bead-milling or high-shear mixing equipment at the pigment preparation stage, prior to final blending and ink let-down for print application.

    Final product types

    • Offset and flexographic printing inks for packaging and publishing
    • Security inks with lightfast requirements
    • Sustainable inks for children’s educational materials
    • Specialty inks for non-absorbent and technical substrates

    4. Pigmented Coatings for Industrial and Architectural Finishes

    Manufacturers of high-durability industrial and decorative coatings rely on monoazo pigment intermediates such as 2',4'-Dimethylacetoacetanilide to develop yellow shade formulations with consistent weather-resistant and chemical-resistant performance. The compound supports stringent batch-to-batch shade control in large-volume applications such as automotive basecoat finishes and exterior architectural paints. Strict adherence to coatings regulations, particularly regarding heavy metal content and outdoor durability, governs every batch’s qualification prior to scaled-up application.

    Industry compliance standards

    • RoHS Directive (2011/65/EU) for limitation of hazardous substances in electronic coatings
    • Directive 2004/42/CE (VOC reduction in paints and varnishes)
    • GB/T 1725-2007 (Determination of non-volatile content in coatings)
    • ISO 787/16 (Pigments and extenders — Lightfastness determination in organic coatings)

    Typical usage ratio

    • Pigment load in binder systems: 2–8% by weight for typical industrial coatings; wall paints and acrylic-based finishes: 1–3% by weight, depending on required opacity and UV resistance.

    Downstream process integration

    • Pigment is added after resin dispersion and preliminary blending, incorporated via attrition milling followed by filtration to achieve target viscosity and particle size specifications for subsequent application.

    Final product types

    • Automotive body basecoats and refinish paints
    • Industrial machine and appliance coatings
    • Exterior architectural wall coatings
    • Protective coatings for infrastructure and industrial flooring
    Free Quote

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    Certification & Compliance
    More Introduction

    2',4'-Dimethylacetoacetanilide: True Value from Direct Production

    Understanding Our Commitment to Purity and Performance

    At our plant, 2',4'-Dimethylacetoacetanilide is not just a chemical on a shelf. Our team oversees every step from raw material selection through final packaging, focusing on consistency batch after batch. Over the years, we have refined each detail of the synthesis pathway so our customers receive material they can trust for precision-driven tasks. As manufacturers, we don’t just supply a product; we see ourselves as responsible for the outcomes in your processes, whether you’re involved in pigment synthesis, agricultural formulation, or specialty intermediates.

    This compound, known for its use in the production of high-performance organic pigments, benefits from a structure that offers a combination of robust stability and distinct reactivity at the para-positions. Its reputation rests on proven results when used as an intermediate in dyes like Pigment Yellow 12 and Pigment Yellow 13. Our technical team closely follows industry developments and each order is backed by thorough production records and straightforward transparency—no guesses, no gaps.

    Our Model: Focusing on Quality and Usability

    Our 2',4'-Dimethylacetoacetanilide comes as a stable, crystalline powder with consistent purity exceeding even the benchmark standards. Moisture content stays tightly controlled, and each shipment reflects our commitment to low impurity levels. Particle size distribution comes directly from the cutters and sieves in our processing hall, so each lot holds uniformity from start to finish. We deliver in sealed fiber drums or heavy-duty bags, based on your throughput needs and storage capacities.

    Many people at our facility have decades of hands-on experience with the quirks and demands of this product. They know the trade-offs between quick reaction times and controlled temperature ramps. This product doesn’t just roll off an assembly line; each output is checked by eye, machine, and in-lab test for melting point, appearance, and residual solvent traces. The product you receive carries the handiwork of those who understand what’s at stake with every kilogram.

    What Sets 2',4'-Dimethylacetoacetanilide Apart in Practice

    In pigment manufacturing, minor changes in intermediate quality impact everything downstream. Our close work with end-users, especially those producing azo pigments, has taught us that small impurities in the starting material lead to off-color batches or flawed dispersions. The para orientation of the two methyl groups makes this molecule a top choice for producing brilliant yellow shades. Factories running on strict toll production schedules rarely tolerate surprises, so we prioritize material that holds steady through every process cycle.

    End-users have remarked on the predictable behavior of our 2',4'-Dimethylacetoacetanilide in large-scale reactors, especially during coupling reactions with diazonium salts. Lower levels of byproducts translate into less downstream purification. We keep up with changes in pigment regulations as required by major markets, tracking purity and ensuring freedom from regulated nitroaromatic residues or excess heavy metals.

    Applications: Where Real-World Outcomes Matter

    Producers of organic pigments turn to this compound for its key role in achieving clarity and chroma in final products. In azo pigment synthesis, both color strength and dispersion stability link directly to the quality of intermediates. Many ink and paint companies demand raw materials that enable their finished products to pass rigorous weather and lightfastness tests. By producing 2',4'-Dimethylacetoacetanilide in-house, we can confirm each stage—from acetoacetanilide condensation to final drying—meets the standards your applications demand.

    This product also finds use as an intermediate for certain agricultural chemicals and pharmaceutical research. Researchers appreciate the sharp melting point and low ash content in their trial preparations. Over time, we’ve collected user feedback pointing out faster filterability and improved downstream yields compared to off-specification or blended material. The consistent quality year-round removes the headaches that come from switching suppliers or chasing after certificates that don’t reflect reality.

    Navigating Technical Challenges and Industry Pressures

    Producing 2',4'-Dimethylacetoacetanilide at scale brings unique challenges. In our experience, cooling rate during crystallization decides whether the product forms transparent plates or dull, granular particles. These differences change how well the compound dissolves during pigment coupling or agricultural manufacturing. Dust control in the packing hall is not just an afterthought; it determines operator safety and final moisture values. We’ve built practical solutions—closed transfer hoppers, dust capture units, strict housekeeping routines—to meet these needs.

    Supply chain fluctuations have taught us the value of securing certified sources of dimethylaniline and acetoacetic ester. Working directly with upstream vendors and maintaining our own solvent recovery systems allows us to stay stable and competitive, even when market conditions shift or regulatory rules tighten. Up-to-date monitoring tools in our labs—such as GC, HPLC, and advanced titration—provide data our customers can audit without hesitation. Years of batch records and process logs offer added confidence for long-term partners.

    Environmental and Worker Safety—A Daily Responsibility

    Chemical production always involves risk, but real reductions in exposure come from ground-level efforts. Our team works hands-on with safety systems every day, not just on audits. Closed reactors, reliable air handling, and frequent spill drills are part of our everyday routine. We strictly comply with all regulatory guidelines limiting emissions, handling waste, and preventing contamination. Used solvents go through multiple recovery cycles, and our operator training takes place right on the shop floor.

    Product quality starts with care for workers and the environment they operate in. We install emission capture systems above reactors and downstream tank farms, cutting VOC releases and noise. Regulatory teams check our management of process water before every discharge. We avoid shortcuts in exothermic steps and make regular improvements, even details like secure pallet stacking or correct PPE stock levels. Trust is built through everyday commitment—customers who’ve personally visited our site often mention how these practices influence their purchasing decisions.

    Addressing Concerns About Adulteration and Supply Integrity

    Reports of adulterated or mislabelled acetoacetanilide derivatives have grown in parts of the market. Each time we hear from a pigment factory about a failed batch due to incorrect starting material, we see the cost not just in lost revenue, but also in delayed shipments and strained end-customer relationships. Because of this, we never source intermediates or finished product from unknown traders. Our supply chain remains as direct as possible—and every drum can be traced back to its production lot.

    Clients deserve clarity. Our technical support team encourages customers to verify each shipment, cross-checking against our retention samples and historical COAs. This transparency has made our 2',4'-Dimethylacetoacetanilide a preferred choice for those who value reliability over risky cost savings. Inconsistent supplies threaten high-throughput pigment plants, which operate at full capacity and run on tight delivery deadlines. We work with logistics partners who understand chemical handling—not general cargo companies—because a missed or delayed batch can mean shutdowns or costly cleanups.

    Market Trends Shaping the Future of 2',4'-Dimethylacetoacetanilide

    Pigment and agrochemical markets keep tightening demands for lower impurities, more detailed documentation, and proven traceability. Over the years, we have witnessed customers place more value on direct manufacturer supply over trading networks. Material provenance, batch-to-batch consistency, and supply continuity form the backbone of long-term customer relationships. As global regulations change, our ability to track and respond to new requirements stands out. In recent projects, major coatings companies have asked for enhanced monitoring of trace residue profiles, raising the bar for everyone.

    Sustainability and regulatory compliance link directly to purchasing decisions now. European and North American customers require detailed disclosures on the use of restricted substances and evidence of waste minimization at the manufacturing site. Regular plant upgrades, frequent third-party audits, and thorough employee training remain non-negotiable. As a direct producer, we can provide supporting evidence and insight into our process—something consolidated traders with opaque supply chains cannot offer. Certification bodies and customer auditors have full access to our handling, record keeping, and process controls.

    How 2',4'-Dimethylacetoacetanilide Differs from Related Materials

    Customers often ask how this product compares to alternative acetoacetanilide derivatives. Our variant, with methyl groups at both the 2' and 4' positions, brings distinct physical and chemical benefits. The structural modifications affect both reaction kinetics in azo pigment formation and the stability of the final product. Our testing shows that pigments derived from this material display greater colorfastness and fewer issues with particle agglomeration, key factors in commercial pigment operations.

    Other intermediates—such as 4'-methylacetoacetanilide or unmodified acetoacetanilide—produce differences in hue, tinting strength, or processing robustness. Production lines that rely on consistent performance benefit most from the specific characteristics of the 2',4' configuration. Substitutions often trigger costly reformulation, unplanned downtime, or final product rejection. We guide users through technical comparisons and provide application testing support, so the leap from specification to actual production stays smooth.

    Ongoing Collaboration and Future Improvements

    Every order brings new lessons. Our R&D group meets with customers and technical partners to review challenges, such as solvent management or improving yield in pigment coupling. We’ve expanded our on-site analytical capabilities, so unusual impurity peaks or color drift patterns can be explored and resolved. Direct feedback from industrial pigment makers and lab chemists has helped us optimize both batches and logistics patterns, making sure deliveries land as promised.

    We invest in process digitalization, allowing better data capture and real-time monitoring at key points in synthesis and drying. As customers request more detailed records—sometimes even by kilogram, not just by lot—our system adapts to those needs. New hiring programs bring in people trained in safe handling and analytical chemistry, closing the gap between process controls and the realities of export compliance or customer-driven audits.

    Our work does not end at the end of the production line. In-house pilot units test new ideas, from recovery loop designs to improved emissions control or alternative solvent systems. Any gains in process efficiency, reduced waste, or better product properties feed directly back into the material supplied to our customers. Our commitment means listening closely to user feedback and industry signals, then putting improvements in place on our own manufacturing floor.

    Real Results, Real Accountability

    Customers trust in the material because each step, from base chemicals to packing, carries our reputation. Our staff remains proud of the role they play—not just in keeping the production campaign going, but in finding practical answers to customer concerns as they arise. Whether new pigment lines or growing regulatory obligations push the need for change, our in-house team adapts, offering direct information and technical support. We keep building lasting partnerships on the foundation of traceable quality, proactive adaptation, and respect for the operators who make it all work.

    In a market crowded with channels and claims, we stand by what we make, not what we promise on paper. Customers who value direct relationships, site visits, and open records know they are investing not only in a product, but in the people behind each shipment. At every turn, from practical formulation help to consistent shipping practices, our commitment to quality and safety shows up where it matters—right in the results our customers see on their own production lines.