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2-Benzoylacetanilide

    • Product Name 2-Benzoylacetanilide
    • Alias N-Phenyl-3-oxo-3-phenylpropanamide
    • Einecs 218-742-9
    • 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

    604485

    Chemicalname 2-Benzoylacetanilide
    Casnumber 85-22-3
    Molecularformula C15H13NO2
    Molecularweight 239.27 g/mol
    Appearance White to off-white solid
    Meltingpoint 115-117°C
    Solubility Slightly soluble in water, soluble in organic solvents
    Smiles O=C(CNC(=O)Ph)Ph
    Inchi InChI=1S/C15H13NO2/c1-2-7-13(8-3-1)15(18)11-16-14(17)12-9-5-4-6-10-12/h1-10H,11H2,(H,16,17)
    Synonyms N-Phenyl-2-benzoylacetamide
    Storagetemperature Store at room temperature

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

    Packing & Storage
    Packing Sealed amber glass bottle containing 100 grams of 2-Benzoylacetanilide; labeled with product name, CAS number, hazard, and handling precautions.
    Shipping 2-Benzoylacetanilide is shipped in tightly sealed, chemical-resistant containers, clearly labeled per regulatory standards. It is handled as a non-hazardous solid, protected from moisture and excessive heat. During transit, standard safety precautions are maintained to prevent spills or contamination. Shipping complies with national and international chemical transport regulations.
    Storage 2-Benzoylacetanilide should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from incompatible materials such as strong oxidizing agents. Protect it from light and moisture. Properly label the storage container and keep it in a chemical storeroom or designated area, out of reach of unauthorized personnel and sources of ignition.
    Application of 2-Benzoylacetanilide

    Applications of 2-Benzoylacetanilide in Industrial Manufacturing

    2-Benzoylacetanilide serves as a key intermediate in several specialized industrial chemical syntheses. Our in-house production supports high-purity standards and traceable quality for advanced applications in pharmaceuticals, dyes and pigments, agrochemical actives, and specialty polymer additives. Explore below the precise industrial contexts in which this compound integrates into downstream processes, with formulation details and regulatory references relevant to each field.

    1. Pharmaceutical Intermediate Synthesis (Antipyretic and Analgesic APIs)

    Pharmaceutical manufacturers deploy this material predominantly as a critical intermediate during the synthesis of certain antipyretic and analgesic active pharmaceutical ingredients (APIs) such as phenacetin derivatives. Its molecular framework enables the introduction of both benzoyl and acetanilide motifs under controlled reaction conditions. Quality requirements demand strict adherence to pharmacopeial standards, with manufacturing integration focused on safe conversion within multi-step organic synthesis lines.

    Industry compliance standards

    • USP (United States Pharmacopeia) General Chapter <1078> Good Manufacturing Practices for Bulk Pharmaceutical Chemicals
    • ICH Q7 Good Manufacturing Practice Guidance for Active Pharmaceutical Ingredients
    • Chinese Pharmacopeia (ChP) for chemical API intermediates
    • EU EudraLex GMP guidelines for medicinal products

    Typical usage ratio

    • 0.85–1.15 molar equivalent vs. target API synthesis batch; fine-tuned by batch yield, purity, and downstream reaction stoichiometry

    Downstream process integration

    • Used after initial alkylation steps as a condensation intermediate, entering at the reductive amination or acylation phase of API manufacturing

    Final product types

    • Antipyretic drug actives (e.g., phenacetin analogues)
    • Intermediate APIs for pain relief medications

    2. Dye and Pigment Manufacturing (Azo, Anthraquinone Pigments)

    Dye and pigment producers apply 2-Benzoylacetanilide in synthetic reactions to yield high-stability azo and anthraquinone-based colorants. Used as a coupling component, it contributes key structural elements for high tint strength and excellent lightfastness. It typically participates in diazotization-coupling or acylation reactions within standardized pigment preparation workflows.

    Industry compliance standards

    • EN 71-3: Safety of Toys – Migration of Certain Elements (for pigments in children’s products)
    • ISO 9001: Quality Management Systems for pigment production
    • REACH Regulation (EC) No 1907/2006 on Registration, Evaluation, Authorisation and Restriction of Chemicals
    • DIN 55943: Testing of organic colorants for industrial applications

    Typical usage ratio

    • 3–8% w/w based on total batch mass of pigment preparation; optimized for desired chromatic intensity and target shade development

    Downstream process integration

    • Incorporated at the coupling or acylation step after formation of diazonium salts, prior to pigment precipitation and milling

    Final product types

    • Azo pigments (used in inks, plastics, textile dyes)
    • Anthraquinone pigments for coatings and specialty printing inks

    3. Agrochemical Active Ingredient Precursor (Herbicide Synthesis)

    In the agrochemical sector, manufacturers utilize this compound as a precursor in synthetic routes leading to selective herbicide actives. Its structural features allow for further functionalization—particularly halogenation or nitration—facilitating the construction of molecules with targeted phytotoxic effects. Process controls address not only yield but also regulatory traceability and residual impurity limits established in agricultural chemical production.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products (FAO/WHO PPP)
    • ISO 9001 for agrochemical manufacturing
    • China GB 2763: Maximum Residue Limits for Pesticides in Food
    • EPA 40 CFR Part 152 for pesticide registration (United States)

    Typical usage ratio

    • 0.90–1.10 molar equivalent per target herbicide molecule; adjusted depending on conversion efficiency and byproduct control

    Downstream process integration

    • Charged during the core functionalization stage, typically before ring chlorination or amide coupling in multichemical synthesis platforms

    Final product types

    • Selective herbicide technical concentrates
    • Precursor blends for water-dispersible granule (WDG) and emulsifiable concentrate (EC) formulations

    4. Specialty Polymer Additive (Thermal Stabilizer Preparation)

    In customized polymer additive manufacturing, 2-Benzoylacetanilide functions as an intermediate for preparing arylamide-based heat stabilizers. These stabilizers protect engineered polymers from thermo-oxidative degradation during processing and end-use. Producers rely on this compound during the synthesis of high-molecular-weight additive molecules designed for integration into polyamide, polyurethane, and related resins, with attention to the regulatory framework for plastics in food contact and medical device applications.

    Industry compliance standards

    • FDA 21 CFR 177.1810: Polyamide resins for food contact applications
    • EU Regulation (EU) No 10/2011 for plastic materials and articles intended to come into contact with food
    • ISO 21461: Determination of antidegradants in polymers
    • RoHS (Restriction of Hazardous Substances) for electronic polymer parts

    Typical usage ratio

    • 0.2–1.5% by polymer resin weight; dosing based on polymer type, processing temperature, and final product specification

    Downstream process integration

    • Introduced in the additive masterbatch blending phase, prior to melt compounding and extrusion in polymer production lines

    Final product types

    • Heat-resistant polyamide components
    • Thermally stabilized polyurethane elastomers
    • Plastic masterbatches for consumer packaging and automotive parts
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    Certification & Compliance
    More Introduction

    2-Benzoylacetanilide: Shaping Precision in Chemical Synthesis

    Craftsmanship in Every Batch

    Working with 2-Benzoylacetanilide never feels routine, even after years spent on the production floor. The decisions behind every batch—from solvent ratios to temperature holds—shape the final product’s character. This compound, known for its role as a key intermediate, gives chemists a reliable scaffold whether they’re steering toward pharmaceuticals, advanced materials, or specialty dyes. Much research has spotlighted its versatility, but true consistency only comes from careful control at each stage, drawing on hands-on experience rather than just textbook recipes.

    Our Product Model and Nature

    We produce 2-Benzoylacetanilide (C15H13NO2) under the model designation BA-01. After refining our process for more than a decade, we’ve learned the importance of tight temperature control during acylation, eliminating trace impurities that tend to complicate downstream reactions. Each lot comes with a guaranteed purity of 99.5% minimum, confirming its suitability for high-stakes synthesis environments. Other manufacturers in the industry may offer various grades, but we always keep trace side-products and residual solvents below 0.2%, based on rigorous in-process and final testing.

    Physical Specifications: Basics that Count

    Some look at 2-Benzoylacetanilide and see just an off-white powder, but getting that consistent grain matters more than most expect. Our crystalline form has a typical melting point of 113–117°C, with uniform particle size ranging from 60 to 120 microns. This size range ensures easy handling and precise dosing in both small and bulk operations. Moisture content stays under 0.1%, based on real-world packaging and storage experiences—humidity in production rooms rarely gets a break, so we use vacuum-sealed drums and constant monitoring. Reliable packing prevents caking and preserves the quality over months, meeting the practical needs of buyers who demand stability from the start to finish of their projects.

    Shaped by Use: Why Applications Rely on Consistency

    2-Benzoylacetanilide isn’t a stand-alone star, yet it anchors countless synthetic schemes. Over the years, our long-term clients have leaned on its reliability, especially in preparing analgesics, antipyretics, and a spectrum of fine chemicals. Each application values consistency: pharmaceutical labs commonly halve the time spent on purification when starting with our lot, compared to batches sourced elsewhere. We focus on reproducibility, so every barrel holds to the analytical values promised. Whether the compound ends up as an intermediate for active pharmaceutical ingredients or in an R&D pipeline, we see that downstream teams keep their processes humming.

    Compared to Other Intermediates: The Character of 2-Benzoylacetanilide

    Many ask whether 2-Benzoylacetanilide outpaces simpler acetanilide derivatives on the market. Hands-on work has taught us that it brings better selectivity in acylation and condensation reactions, especially where ring-functionalized targets matter. Its unique structure enables clean coupling with carboxylic acids, while minimizing unwanted by-products. Where methyl or nitro substitutions create hazards or complicate purification, benzoyl substitution keeps reaction profiles sharp. Other acetanilide variants sometimes leave teams stuck with stubborn tars or low conversions, but the purity and reactive sites in 2-Benzoylacetanilide steer work toward higher yields and fewer headaches.

    From Pilot Line to Full-Scale Production

    Our shift from kilo-lab runs to multi-ton scale carried its hurdles. Operating reactors at scale, we found that residue in glassware or polymer buildup during transfer could trigger off-spec results, even after flawless trials on bench scale. Over time, we increased turnaround schedules for equipment and installed in-line monitoring, which shaved down impurity spikes and safeguarded against contamination from previous batches. Detailed records from process engineers, not just QA logs, help trace back every blip in color or melt behavior to its origin, so the next run tightens up further.

    Real-World Users Speak

    Clients who use our product in non-pharmaceutical applications, like pigment manufacturing, have told us that switching to our BA-01 model reduced by-product levels in their final dispersions by more than ten percent. In the industrial dye field, stable purity cuts the need for extra runs of recrystallization, altogether changing project timelines. Within specialty polymers, 2-Benzoylacetanilide’s defined melting range and particle size play a part in ensuring uniform polymer matrix formation, based on data shared directly from polymer chemists in collaborative trials. These real-world touches push us to improve every cycle, beyond what industry standards require.

    Sourcing and Raw Materials: Building Quality at the Start

    Tight quality starts upstream. We learned early that raw acetophenone quality, often bought “on spec,” can be a silent cause of recurring inconsistencies. After failed attempts to fix recurring purity drops through process tweaks, we began measuring acetophenone lots ourselves, rejecting any that showed trace sulfur impurities or off-color. This strategy paid off year-on-year, driving down batch failures and allowing our purchasing team to focus on partnerships instead of firefighting. Our benzoyl chloride supplier participates in joint audits, not because of paperwork, but out of a shared drive to cut chain issues before they cross the receiving dock.

    Environmental and Safety Considerations

    Operating a chemical plant brings responsibilities beyond the product itself. We keep solvent recovery rates over 90%, both for economic and environmental reasons. Methanol and toluene—mainstays in acylation and recrystallization—get distilled and reused, reducing waste and emissions. Our workforce knows that accurate documentation isn’t just bureaucracy; every event gets written down from actual hands-on experiences, whether it’s a minor spill or an equipment quirk. Routine hazard reviews, driven by process operators, shape our equipment upgrades, leading to fewer incidents and better peace of mind on the production floor.

    Packaging and Delivery: Preventing Trouble Before It Starts

    Shipping to climates ranging from humid seaports to arid interior labs has shown where packaging shortcuts cost real money. Standard steel drums with double-seal liners remain our choice, after trials with more lightweight materials led to perfume-like odors and caking during transit. A decade of feedback tells us customers want to see the lot data, moisture readings, and trace impurity levels on every label, and we deliver on this with every shipment. Timely deliveries matter more than ever, so our logistics team plans for buffer stocks and weather delays, keeping supply steady for teams who rely on uninterrupted flow.

    Supporting Our Customers: Real Engagement, Not Empty Promises

    We see customer support not as a remote helpline, but as direct access to our development chemists. During scale-up projects, it’s common for a customer’s team to consult ours about reaction bottlenecks, alternate reagents, or troubleshooting unique conditions. Several customers in the pharma sector have returned for guidance on regulatory filings, since detailed batch histories and full traceability help them meet audit expectations. Every new project uncovers insight—from improved filtration methods to more effective impurity removal—and we push these upstream, into the next run.

    Industry Shifts and 2-Benzoylacetanilide Demand

    Global shifts in pharmaceutical innovation, advanced materials development, and dye technologies continue to impact the call for reliable intermediates. Based on direct dialogue with purchasing managers and project heads, unpredictable price swings in upstream precursors force many to reconsider sourcing strategies. Consistency in 2-Benzoylacetanilide output provides production planners with one less variable to manage. Volatile markets test every supplier’s resilience, yet our focus on direct manufacturing and reinvestment into solvent recovery, process streamlining, and analytical technology keeps production robust through cycles of boom and slack.

    Continuous Improvement: Staying Ahead with Evidence

    We’ve never shied away from innovation grounded in shop-floor experience. Several years ago, we introduced in-line FTIR monitoring, driven by findings that off-spec acylations started with subtler deviations in reaction kinetics than our standard batch endpoint checks revealed. That investment soon proved itself, trimming process variance and improving right-first-time yields. Periodic sessions with our analytical chemists dig through accumulated data from across dozens of reactor runs, aiming to identify, not just patch, recurring issues. Yearly upgrades in filtration and drying hardware come straight from this root-cause mindset.

    Pushing Boundaries Through Collaboration

    Collaboration forms the backbone of advancement, whether it’s partnering with university labs for targeted impurity profile studies or joining industry consortia on best safety practices. Our track record includes joint research into alternative solvents for greener processing—a response to both regulatory pressure and demands from eco-conscious clients. This willingness to adapt, test in real production settings, and embrace new approaches stands behind the steady quality seen in each shipment. Several collaborative projects have led us to reduce water and energy use, with results benchmarked against peer manufacturers, not just our historic norms.

    Looking Forward: Anticipating Tomorrow’s Requirements

    Markets never remain static. Shifts toward high-potency pharmaceuticals and stricter impurity limits demand that every 2-Benzoylacetanilide batch achieves new heights in reproducibility. Regulatory scrutiny no longer stops at the threshold of active ingredients, pulling intermediates like ours deeper under the microscope. Staying ahead means reviewing not only analytical data but also taking feedback from routine users—bench chemists, process engineers, and logistics crew—who spot trends before they filter up through executive reports. By prioritizing data-driven refinement, we respond to change with practical steps.

    Challenges: Facing Supply Chain and Regulatory Shifts

    Recent disruptions, including global raw material shortages and evolving import/export rules, underscore the limits of relying on abstract standards. Speaking directly with shipping crews and material handlers revealed pressure points on safe and traceable transport—so investments went straight into tamper-proof seals and GPS-enabled tracking, not just paperwork compliance. Regulatory staff work closely with operations to adapt REACH and FDA filings based on incoming policy changes, informed by dialogue, not guesswork. These measures allow us to steer clear of sudden market bottlenecks and regulatory snags, delivering on promises made to customers.

    No Substitute for Experience

    Real improvement always starts with lessons learned on the production floor rather than from boardroom theory. Whether wrestling with a stubborn recrystallization or streamlining solvent recovery, every efficiency and every safety practice comes from repeated cycles of observation, data-keeping, and improvement. We’ve watched client projects succeed on the back of small upgrades—tighter specs here, clearer communication there—each supported by actual results, not marketing gloss. Over time, this system builds trust, which in the world of complex intermediates matters far more than slogans or price points.

    The Bottom Line: Why 2-Benzoylacetanilide Deserves Attention

    Teams in need of a reliable intermediate choose 2-Benzoylacetanilide not because it’s flashy, but because, batch to batch, it gets the job done. What sets ours apart comes down to consistent purity, real engagement from our process team, and a focus on making every part of the experience work smoothly—from order to application. Whether your goal is a novel drug, a brilliant pigment, or new materials, that kind of performance doesn’t happen by accident. Our effort, shaped by years in the trenches of chemical manufacturing, brings you a foundation you can trust project after project.