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4-Methoxybenzamide

    • Product Name 4-Methoxybenzamide
    • Alias p-Anisamide
    • Einecs 216-481-9
    • 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
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    Specifications

    HS Code

    659838

    Chemical Name 4-Methoxybenzamide
    Cas Number 619-57-8
    Molecular Formula C8H9NO2
    Molar Mass 151.16 g/mol
    Appearance White to off-white crystalline powder
    Melting Point 154-157 °C
    Density 1.22 g/cm3
    Solubility In Water Slightly soluble
    Synonyms p-Anisamide, para-Anisamide
    Structure Methoxy group at para position of benzamide ring
    Inchi Key NQIHRVFDTZXLPG-UHFFFAOYSA-N

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

    Packing & Storage
    Packing The 25g 4-Methoxybenzamide is packaged in a clear, airtight glass bottle with a white screw cap and labeled for laboratory use.
    Shipping 4-Methoxybenzamide is shipped in tightly sealed containers, labeled according to chemical safety standards. It is transported under dry, cool conditions to prevent degradation and ensure stability. Packaging complies with regulations to avoid leaks or contamination. Handling instructions and safety data are provided with each shipment for secure delivery.
    Storage 4-Methoxybenzamide should be stored in a tightly closed container, in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as strong oxidizers. Protect the chemical from light and moisture. Store at room temperature, ideally between 15°C and 25°C, and ensure that the storage area is clearly labeled and secure.
    Application of 4-Methoxybenzamide

    Applications of 4-Methoxybenzamide in Industrial Manufacturing

    4-Methoxybenzamide serves as an essential intermediate and auxiliary component for several specialized downstream industries. As a chemical raw material manufacturer, we supply this compound to various sectors that prioritize established processing routes, documented regulatory requirements, and demanding final product specifications. Below, we outline key application scenarios, including their specific compliance obligations, practical dosage ranges, integration stages, and typical finished products.

    1. Pharmaceutical Intermediate for Active Ingredient Synthesis

    Our clients in pharmaceutical manufacturing rely on 4-Methoxybenzamide as an intermediate molecule in the multistep synthesis of select APIs. It frequently appears in the synthetic pathways for drugs in the analgesic and CNS agent categories due to its favorable substitution pattern, which facilitates downstream amidation and acylation reactions. Technical teams validate each lot to meet stringent impurity profiles to support registration and tech transfer to regulated markets. The compound integrates at early synthetic stages and undergoes further transformation before API isolation.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP and EP monographs for related APIs
    • FDA 21 CFR Part 211
    • Certificate of Suitability (CEP) requirements for Europe

    Typical usage ratio

    • Used at 1.2–1.5 molar equivalents relative to starting material in multistep organic synthesis; ratio may adjust per stoichiometry of target API.

    Downstream process integration

    • Charged in the intermediate transformation stage, immediately after initial aromatic substitution reaction.
    • Further processed under anhydrous conditions with controlled temperature and pH for amidation or cyclization as required by the target molecule.
    • Subjected to multi-solvent purification steps to achieve low residual solvent and impurity content.

    Final product types

    • Central nervous system (CNS) agents APIs
    • Analgesic API intermediates
    • Anti-inflammatory API intermediates
    • Specialty pharma intermediates exported for contract manufacturing

    2. Agrochemical Synthesis for Selective Herbicides

    Formulators and agrochemical companies utilize 4-Methoxybenzamide as a core building block in the synthesis of certain amide-functional herbicides exhibiting selectivity towards broadleaf weeds. Its substitution profile enhances coupling efficiency and confers key biological activity. Each batch undergoes off-gassing and residue screening to align with environmental and food safety norms. The product integrates in controlled coupling reactors at a defined stoichiometric ratio, resulting in downstream active ingredient formats.

    Industry compliance standards

    • FAO/WHO Food and Agriculture Organization pesticide specification
    • ISO 9001:2015 Quality Management for Agrochemical Manufacturers
    • REACH registration for European market shipments
    • US EPA 40 CFR Part 180 (tolerance for residues in food)

    Typical usage ratio

    • Incorporated at 0.9–1.1 molar equivalents in the amide bond formation step, with adjustment based on targeted herbicide molecule and yield optimization.

    Downstream process integration

    • Added directly after initial chlorination of aromatic precursor under nitrogen atmosphere.
    • Subjected to high-shear mixing for 2–4 hours, followed by in-line extraction and crystallization.
    • Extracted intermediates purified by phase separation, solvent removal, and column chromatography as required.

    Final product types

    • Pre-emergent broadleaf herbicidal active ingredients
    • Contract-manufactured herbicide intermediates
    • Custom amide herbicide formulations for row crop protection
    • Exportable technical-grade actives

    3. Dye and Pigment Intermediate for Specialty Colorants

    The dye and pigment sector purchases 4-Methoxybenzamide as a tailor-made intermediate in the synthesis of methoxy-substituted azo and anthraquinone dyes. Its controlled reactivity and stability under diazotization and coupling conditions make it indispensable for fine color tuning. Our manufacturing process ensures each shipment meets colorimetric purity and trace heavy metal thresholds critical to end-use coating and textile regulations. The material typically enters the reaction train during the early condensation step.

    Industry compliance standards

    • EN 71-3 Safety for Toys (relevant heavy metal content in pigments)
    • OEKO-TEX Standard 100 for textile colorants
    • ISO 9001:2015 certified pigment supply chain
    • REACH Annex XVII: Restrictions on certain hazardous substances

    Typical usage ratio

    • Employs 0.8–1.0 molar equivalent per mole of diazonium salt; modulated as necessary to achieve specified hue and yield in colorant synthesis.

    Downstream process integration

    • Introduced at the initial aromatic amination or acylation phase.
    • Reacts with a primary diazo component under temperature-controlled conditions for efficient coupling and enhanced color yield.
    • Subjected to post-reaction acid/base workup to remove byproducts.

    Final product types

    • Specialty azo dyes for plastics and coatings
    • Methoxy-anthraquinone dye intermediates for textile applications
    • Custom pigments for automotive plastics
    • High-purity colorants for writing inks

    4. Fragrance Intermediate for Fine Chemicals Sector

    Fine chemical manufacturers process 4-Methoxybenzamide as a functionalized aromatic intermediate in the controlled synthesis of musk, floral, and sweet-scented aroma compounds. Its methoxy group enhances volatility and sweet olfactory nuances, making possible downstream esterification and reductive transformations. The product conforms to safety and purity benchmarks required by the flavor and fragrance industry, entering at the early condensation and amidation stages.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards
    • ISO 9235:2013 (Aromatic Natural Raw Materials Definition)
    • EC Regulation No 1223/2009 on cosmetic products (for fragrance use in cosmetics)
    • HACCP systems for food-contact fragrances

    Typical usage ratio

    • Utilized at 5–12% by weight in the fragrance intermediate reaction mixture; level selected for desired aroma profile and volatility control.

    Downstream process integration

    • Blended at the condensation or esterification step in the aroma chemical synthesis route.
    • Participates in sequential reaction with alcohols or acids to build complex fragrance molecules.
    • Batch processed with continuous GC monitoring to assure olfactory quality.

    Final product types

    • Musk aroma intermediates
    • Synthetic floral scent molecules
    • Cosmetic and personal care fragrance bases
    • Flavored food additives (where permitted by local law)

    5. Polymer Additive Manufacturing for Specialty Polyamides

    Compounders in specialty polymers incorporate 4-Methoxybenzamide as a chain-modifying additive during polyamide and polyester synthesis. Its functional structure modulates crystallinity, thermal stability, and mechanical behavior of engineering plastics. Incoming batches are validated for residual solvent, trace elements, and consistent melting point to assure reproducible compound properties. The additive enters the melt blending or reactive extrusion line and customizes final polymer performance for high-end applications.

    Industry compliance standards

    • UL 94 Flame Classification for plastics
    • ISO 527 (Mechanical properties of plastics)
    • RoHS Directive 2011/65/EU (heavy metal content restriction)
    • US FDA 21 CFR 177.1500 (Indirect food additives: polyamide resins, where applicable)

    Typical usage ratio

    • Dosage normally 0.1–1.0 weight% based on total monomer charge; adjusted according to end-use property targets and processing temperature profiles.

    Downstream process integration

    • Added into the reactor alongside base polyamide or polyester monomers during pre-polymerization.
    • Dispersed via twin-screw extrusion at elevated temperature to ensure complete molecular integration.
    • QC assessment includes melt flow, thermal stability, and residual additive analysis.

    Final product types

    • Glass fiber reinforced polyamide parts
    • High thermal resistance polyester compounds
    • Specialty automotive and electronic housings
    • Custom performance-modified plastic granules
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    Certification & Compliance
    More Introduction

    4-Methoxybenzamide: Quality from Direct Manufacture

    A Closer Look at 4-Methoxybenzamide from the Source

    Experience in synthesis, years in the reactor hall, plenty of hands-on responsibility, all shape how we view specialty chemicals like 4-Methoxybenzamide. This compound comes up often in pharmaceutical and fine chemical projects, so expectations run high. Our team handles every batch from raw materials through to purification, and we bring that thoroughness into each drum and bag that leaves our warehouse. Laboratories and production departments want reliability, not uncertainty. They demand material that’s consistent from the first kilogram to the last—one odd impurity or unexpected moisture spike can set back an entire schedule. That direct accountability feeds our motivation to keep controls tight and hold every process stage to known parameters.

    Plenty of shops pass around 4-Methoxybenzamide, often swapping between suppliers or diluting traceability in a tangled supply chain. Not here. We know the origins of our aniline source; we oversee each methylation run and handle temperature and pH trending ourselves. Once reaction ends, filtration and recrystallization aren’t left as afterthoughts. Grain size consistency, color, odor—these minute details all add up when you’re scaling up past the research stage.

    Why 4-Methoxybenzamide Matters in Applied Chemistry

    On paper, 4-Methoxybenzamide sits within the benzamide family, but subtle features set it apart. The methoxy group at the para position pushes electron density toward the ring, shifting how this molecule behaves in downstream reactions. You’ll find this property useful in synthesis of APIs and related intermediates where selectivity and reactivity hinge on such fine details. Solid-state purity counts, but it’s not just about numbers on a certificate of analysis. Experience in the lab has shown that even tiny fluctuations in particle size or trace byproduct levels can change how a batch runs on a HPLC, or how a solid forms crystals with a coupling agent. Direct manufacturing authority gives us a feedback loop between what the bench needs and how production operates. We can tweak drying cycles or solvent ratios based on real use cases.

    Some projects demand patience: batch timelines stretch, analytical requirements tighten up, regulatory expectations shift. We keep every run of 4-Methoxybenzamide in a strict tracking system, updating methods as the field evolves. A researcher synthesizing a new analgesic candidate or a process engineer swapping in an aromatic amide for scale-up both get the benefit of our historical data and firsthand insight. If a separation issue crops up on a chromatogram, or if a filtration step starts misbehaving, knowledge from our process chemists comes back to help troubleshoot. We’ve seen first-run surprises and successfully solved bottlenecks in the production environment, so our support doesn’t end at shipment.

    Understanding Specifications in the Real World

    Our standard model for 4-Methoxybenzamide focuses on the crystalline grade that balances ease of handling with chemical stability. Melting point, purity by HPLC, residual solvents, water by Karl Fischer: all measured for every lot—without compromise. Feedback from regular clients in API research and pigment synthesis led us to tailor our post-synthesis purification for optimal filtration. We grind to an average mesh range aimed at smooth dissolution and minimal dust-off during transfer. No guesswork. Our team chooses packaging that blocks moisture ingress and restricts light exposure, keeping the amide stable from dispatch to bench.

    Some buyers get tripped up by products relabeled or recombined by traders. Our batches never blend old and new stock, so a specification isn’t just paperwork. Every container can be tracked directly to a production date and QC sheet. If a deviation ever shows up, we open the records—no confusion, no third-party runaround. This directness reduces the uncertainty for teams further down the supply chain and protects both productivity and compliance.

    Specification shifts for a reason. One R&D customer needed a cleaner chromatogram for formulation development. Another flagged solvent residue on a dew point test. We adjusted dryer parameters and upgraded our vacuum distillation section as a result. These detail-driven changes stick because they come from our own results—not passed down anonymously from a paper trail. We connect what the data says with what material scientists and analytical chemists actually experience, so results keep improving.

    How This Product Serves Daily Laboratory and Manufacturing Needs

    Work in small-scale synthesis or kilo-lab scale brings different priorities than a bench-top study. Research chemists often request small packs with detailed COAs, itemizing low-level impurities, and batch-specific traceability. Scale-up chemists require larger drums where stability during transit and anti-contamination seals become more critical than cosmetic appearance. We don’t force one format for all. Flexibility is possible because we control the process, not a distributor.

    Handling 4-Methoxybenzamide shouldn’t throw curveballs. Open the drum—you expect a white or near-white crystalline powder, free-flowing but not friable, and no clumping under normal warehouse conditions. Sourcing direct from the manufacturer means consistency in pour, solubility, and filtration every time. We take care with the last meters of production—dedicated packing rooms with tight humidity controls, custom liners for every shipment, and protocols for every level of storage temperature.

    Talking to researchers running Suzuki couplings or multi-step transformations, a handful of practical matters always come up: solubility in polar versus apolar media, side reactions caused by minor acyl impurities, and chain-of-custody proof for regulatory checks. We address these right at production. Batches get controlled storage before shipment, and analytical data isn’t just a checkbox—it’s part of an ongoing record followed by both labs and QA.

    Comparing with Other Amides: What Sets Ours Apart

    The benzamide field covers a lot of ground. Plain benzamide, ortho-methoxy, and N-methylated versions all appear in various supply lists. Yet, the practical differences manifest clearly when you run actual reactions or formulate at a bench. The para-methoxy substitution in our product boosts reactivity for electrophilic aromatic substitution, while avoiding the steric hindrance that can cripple ortho derivatives in coupling steps. This seems small, but for those running precision syntheses, such as pharmaceutical NCE development, these molecular traits translate into measurable yield increases and cleaner reaction profiles.

    Benzamide derivatives often arrive with too much color, off odors, or invisible contaminants after months in storage. Our direct supervision of the process has kept color and physical properties inside a narrow band. Teams making downstream sulfonamides, polymers, or dyes need consistency in melting point, lack of micro-particulates, and predictable dissolution—all influenced by how cleanly the chemical comes off the line. Competitor samples sometimes fail tests for trace acid content or deliver residual solvents that cause slowdowns in later distillations. Tight internal process control builds trust—not just on paper, but under real analytical scrutiny.

    Direct Feedback from Real Customers Drives Our Process

    Over the years, calls and emails from customers have prompted process improvements that wouldn’t come from a distributor’s order form. Working with clients doing life-science R&D, we realized that a lower permitted residual of certain solvents made downstream purification far easier. An industrial pigment producer flagged the need for rapid dissolution and prompt, clean filtration—so we adopted a new granulation method and upgraded our filtration hardware.

    Direct feedback also led to improved tamper-evident seals, helping contract manufacturers quickly spot the difference between a factory-sealed drum and something repacked through a second channel. We pay attention to these on-the-ground details, knowing that, at scale, minor variability leads to wasted time and higher costs. Our own process engineers regularly visit customers’ plants, not just to sell but to understand, diagnose problems, and iterate. This keeps our own technical team grounded in how the material gets used—not just how it looks on a COA.

    Fitting Into Tight Regulatory and Quality Environments

    Many of our 4-Methoxybenzamide lots end up in pharmaceutical intermediate pipelines requiring strict documentation—allergen tracing, batch retention samples, and documented cleaning validation. Our control runs deeper than a distributor filling in blanks on a template. Full analytical profiles accompany each lot, and results for all regulated solvents and heavy metals go into our digital database. Auditors visit our site regularly, and transparency is not a courtesy, it’s a core practice.

    Safe manufacturing is something we take seriously. We comply with current guidance on amide handling—from operator exposure protocols to solvent emission controls and compliant waste neutralization. Our local monitoring equipment gives immediate feedback during production. Traceability doesn’t just stop at our door; we maintain a record of every lot shipped, with all data accessible for regulatory review, making audits routine rather than disruptive. Meeting ICH Q7 or GMP standards becomes easier thanks to full documentation and hands-on process control.

    Solving Common Issues for Downstream Users

    Unreliable supply can cripple an entire project. We maintain both safety stocks and backup raw material sources, so customers never face last-minute delays. If there’s a transportation hiccup or local customs snag, our logistics team steps in directly. Years of experience handling customs paperwork and last-mile delivery for chemicals classed as low-toxicity, non-scheduled goods mitigate sudden holdups.

    Some process development clients experienced issues with unexpected solubility or crystallization during formulation. Drawing on our own experimentation, we provide direct advice—adjusting pH, checking solvent ratios, or offering guidance on filtration aids that preserve yield. In the rare event of a batch deviation, we share the underlying production data and support root cause analysis, building trust with each engagement. By maintaining this client-manufacturer feedback loop, we keep raising our own quality bar while helping customers optimize their process.

    Focus on Sustainability and Process Safety

    Working as a direct manufacturer of 4-Methoxybenzamide brings a deeper sense of responsibility—both environmentally and with respect to staff safety. Our waste minimization strategies and closed-loop solvent recovery systems evolved from day-to-day practice, not from checklists. Keeping solvent emissions and energy use down doesn’t just serve compliance, it pays off in lower running costs and keeps our team safe.

    We continually review new purification technologies and green solvents that can replace older, high-impact reagents. Our in-line monitoring and early-warning spill protocols give operators the tools to catch deviations early, reducing both product loss and environmental footprint. We commit to regular training and external audits, ensuring all staff—from line chemists to warehouse handlers—work safely.

    Looking Back and Forward: Building Long-Term Confidence

    Having spent decades navigating shifts in analytical expectations, tighter compliance, and variable application demands, our perspective on 4-Methoxybenzamide is practical and rooted in experience. We make no promises that rest on generic claims. Instead, every batch and every interaction aims for real, measurable improvement—whether that means tweaking a process step or adapting packaging for a customer’s specific line.

    Future product development emphasizes cleaner processes, ongoing customer dialogue, and faster feedback loops from real-world use. As supply chains globalize and regulations tighten, direct manufacturing accountability ensures we remain a reliable, knowledgeable partner. Labs and factories might change, but the need for stable, verified, predictable chemicals remains. Having our hands on every stage from synthesis to shipment means our 4-Methoxybenzamide always starts—and ends—with quality you can see and measure.