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4-Tert-Butylbenzamide

    • Product Name 4-Tert-Butylbenzamide
    • Alias 4-(tert-butyl)benzamide
    • Einecs 241-274-9
    • 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

    650202

    Product Name 4-Tert-Butylbenzamide
    Cas Number 18110-05-5
    Molecular Formula C11H15NO
    Molecular Weight 177.24 g/mol
    Appearance White to off-white solid
    Melting Point 146-149 °C
    Boiling Point Unlisted; decomposes
    Purity Typically ≥98%
    Solubility Slightly soluble in water
    Density 1.07 g/cm³ (approximate)
    Storage Temperature Store at room temperature
    Smiles CC(C)(C)C1=CC=C(C=C1)C(=O)N
    Inchi InChI=1S/C11H15NO/c1-11(2,3)9-6-4-8(5-7-9)10(12)13/h4-7H,1-3H3,(H2,12,13)
    Synonyms 4-tert-Butylbenzamide; p-tert-Butylbenzamide

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

    Packing & Storage
    Packing A 25-gram amber glass bottle labeled “4-Tert-Butylbenzamide, ≥98%,” sealed with a white screw cap and hazard warnings.
    Shipping 4-Tert-Butylbenzamide is shipped in secure, airtight containers to prevent moisture and contamination. Packaging complies with chemical safety regulations. The shipment includes clear labeling and appropriate documentation. Handle with care during transit, avoid extreme temperatures, and store in a cool, dry place upon arrival. Consult SDS for additional handling and shipping information.
    Storage 4-Tert-Butylbenzamide should be stored in a tightly sealed container, away from moisture and strong oxidizing agents. Keep it in a cool, dry, and well-ventilated area, ideally at room temperature. Ensure storage is away from direct sunlight and incompatible materials. Properly label the container and avoid excessive heat. Always follow standard laboratory safety protocols when handling and storing this chemical.
    Application of 4-Tert-Butylbenzamide

    Applications of 4-Tert-Butylbenzamide in Industrial Manufacturing

    As a dedicated producer of 4-Tert-Butylbenzamide, we support industrial customers with consistent supply and technical knowledge for demanding downstream sectors. Below, we detail specific applications, industrial standards, typical formulation levels, integration points, and key finished product lines. Each segment focuses on verified, high-volume use in internationally regulated industries.

    1. High Performance Organic Pigment Intermediates

    4-Tert-Butylbenzamide functions as a critical intermediate for manufacturing select diarylide, perylene, and phthalocyanine pigment molecules. Producers use it to introduce bulky, hydrophobic moieties that increase pigment purity and dispersion stability. Downstream processes often involve condensation with acid chlorides or directed amination to achieve specific chromophore functionality. Strict lot-to-lot purity and controlled form are essential for pigment makers; deviations can cause color drift or reduce tinting strength in end-use paints, plastics, and inks.

    Industry compliance standards

    • EN 71-3:2021 (Toy safety – migration of certain elements for pigments in toy applications)
    • REACH Annex XVII (Restriction on specific pigment-bound amide compounds)
    • ASTM D6845-22 (Pigment content in plastics)
    • ISO 9001 QMS for pigment manufacturing traceability

    Typical usage ratio

    • 5% – 20% w/w in pigment synthesis batch, modified depending on target chromatic properties and final dispersion requirements.

    Downstream process integration

    • Introduced during fine chemical condensation or amidation stage, preceding solvent removal and filtration of crude pigment mass.

    Final product types

    • High performance yellow, red, and blue organic pigments for automotive coatings
    • Plastic masterbatches for agricultural films and packaging
    • Industrial offset and gravure printing inks
    • Pigmented fibers in technical textiles

    2. Pharmaceutical Synthesis – API Intermediate

    In active pharmaceutical ingredient (API) manufacturing, 4-Tert-Butylbenzamide operates as a non-reactive protecting group precursor or coupling partner during multi-step syntheses, especially for antihypertensive and neuroactive agents. Its low reactivity profile, steric bulk, and high melting point make it suitable for selective amidation reactions and purification steps to achieve regulatory-compliant impurity profiles. API manufacturers integrate it in compliance with GMP protocols and pharmacopoeial requirements.

    Industry compliance standards

    • ICH Q7 (Good Manufacturing Practice for APIs)
    • 21 CFR Part 211 (US cGMP for Finished Pharmaceuticals)
    • EP/BP/USP Pharmacopoeia standards (as excipient or intermediate, depending on application)
    • FDA DMF registration (where applicable for synthetic intermediates)

    Typical usage ratio

    • 0.5 – 2.0 molar equivalents relative to main substrate, adjusted for desired drug substance yield and impurity control.

    Downstream process integration

    • Applied during protection/deprotection steps or amidation, directly before final crystallization and QC release of the API or advanced intermediate.

    Final product types

    • High-purity pharmaceutical intermediates for cardiovascular and CNS drugs
    • Clinical trial-grade APIs
    • Bulk active substances for formulation into tablets, injectables, and oral solutions
    • Specialty drug precursors for custom synthesis CROs

    3. Specialty Polymer Additives

    4-Tert-Butylbenzamide sees targeted use as a monofunctional additive in polymer manufacturing, providing steric hindrance and crystallinity control in engineering plastics and elastomer systems. It mediates polymer chain mobility, alters processability, and enhances compatibility in polyamide and polyester blends. Technical users monitor additive incorporation with process analytical technology to maintain batch-to-batch reproducibility and downstream product compliance for regulated packaging and transport materials.

    Industry compliance standards

    • ISO 11357 (Thermal analysis of polymers)
    • FDA 21 CFR 177 (Indirect food additives in polyamide articles, as permitted substance in contact layers)
    • RoHS (Restriction of Hazardous Substances Directive in electronics plastics)
    • REACH SVHC monitoring (Substance of Very High Concern notifications where required)

    Typical usage ratio

    • 0.1% – 0.8% by weight of resin, modulated according to blend requirements and physical property targets (melting range, toughness).

    Downstream process integration

    • Blended during polymerization or compounding stage, preceding extrusion, pelletization, and molding of final plastic components.

    Final product types

    • Polyamide and polyester films for food or medical packaging
    • Engineering resin components for consumer electronics
    • Automotive cable insulation sheaths
    • Protective coatings for batteries and energy storage devices

    4. Custom Agrochemical Synthesis

    Within the agrochemical sector, 4-Tert-Butylbenzamide is incorporated as a molecular scaffold in the synthesis of stabilized herbicide, insecticide, and fungicide actives. Its electron-donating tert-butyl group enhances compound stability against UV degradation and hydrolysis. Formulators adjust input levels to match target field stability profiles, ensuring nationwide compliance with residue limits and safe application standards. Analytical and QA units verify material traceability from raw input to finished agrochemical.

    Industry compliance standards

    • FAO/WHO JMPR guidelines (residue and toxicology for agchem actives)
    • ISO 17025-certified analytical laboratory validation for batch release
    • China GB 2763 (MRLs for pesticides)
    • EPA FIFRA 40 CFR standards (pesticide formulation and registration in the US)

    Typical usage ratio

    • 2% – 6% molar ratio in synthetic agchem pathways, adjusted for desired environmental persistence and spectrum of activity.

    Downstream process integration

    • Added at the advanced synthetic intermediate stage, direct feed into final condensation or cyclization before formulation into technical concentrate.

    Final product types

    • Herbicide and insecticide active ingredient pre-concentrates
    • UV-stable plant protection spray formulations
    • Granular controlled-release pesticides
    • Seed treatment chemical additives

    5. Fine Fragrance and Aroma Chemical Synthesis

    Perfume and flavor compound manufacturers utilize 4-Tert-Butylbenzamide as a structural base in the production of musky and sweet aroma molecules. Its bulky substitution pattern yields fragrance intermediates that resist oxidation and maintain olfactory intensity in final blends. Typical processes require micro-scale precision, and regulatory compliance restricts the use of off-spec raw materials. Manufacturers prioritize high sensory purity and absence of residual solvents, supported by batch-level GC-MS and IR validation.

    Industry compliance standards

    • IFRA Code of Practice (global requirements for fragrance ingredient safety)
    • ISO 9235 (Aromatic raw materials definitions and quality requirements)
    • EU Regulation (EC) No. 1223/2009 (Cosmetic ingredients safety)
    • US FDA 21 CFR 172.515 (Flavoring substances and adjuvants in food)

    Typical usage ratio

    • 0.05% – 0.3% by weight in precursor synthesis batches, fine-tuned per yield of targeted aromatic cyclization products.

    Downstream process integration

    • Fed into nitration, alkylation, or reductive amination steps during aroma molecule production, preceding distillation and olfactory QC.

    Final product types

    • Aromatic musk intermediates for luxury fragrance blends
    • Flavoring agents for beverage and oral care products
    • Essential oil component isolates for scented consumer goods
    • Specialty aroma chemicals in boutique perfumery
    Free Quote

    Competitive 4-Tert-Butylbenzamide prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    4-Tert-Butylbenzamide: Direct from the Manufacturer’s Perspective

    Understanding 4-Tert-Butylbenzamide in Real-World Production

    For many years in chemical manufacturing, I’ve spent more time than I’d like to admit refining each step of high-purity product. Take 4-tert-butylbenzamide, for example. On paper, it’ll show up as a crystalline solid with the chemical formula C11H15NO. In practice, every batch tells the story of what it takes to deliver real, usable material—not a theoretical compound, but something technicians and lab staff can pick up and trust. We manufacture the pure material—no dilutions or hidden excipients—listed as model 4TBB-ZY36, a designation born from decades of tracking improvements and process lineage.

    Processing involves a particular balance. Our team commits to careful raw material vetting—especially tert-butyl-benzene and high-grade ammonium reagents—before we ever switch on the reactors. Minor changes in temperature, pH, or impurity levels show up quickly in product assay, so constant monitoring trumps guesswork every time. Years ago, earlier manufacturers in this segment often struggled with trace contaminants turning up as off-spec color or aroma. Because we control every stage—right down to distillation and crystal-finish—our users rarely call back frustrated with shadows in their spectra.

    What We See in the Final Product—And Why It Matters

    4-tert-Butylbenzamide’s main draw lies in its stability and consistent behavior across a range of synthesis applications. Chemists often approach us looking for a material that doesn’t clog up equipment, alter reaction kinetics unexpectedly, or drag in water-sensitive byproducts. Our solid material keeps a melting point between 142 and 144°C and resists atmospheric moisture, making it straightforward for technicians in both research-bench settings and routine manufacturing. It sounds subtle, but a consistently dry, free-flowing batch reduces downtime and supports precise weighing—technicians mention this repeatedly in feedback after switching from generic-sourced alternatives.

    It also dissolves cleanly in standard solvents like ethanol, ether, or chloroform. Organic synthesis routines benefit from minimum residue during purification, which means the downstream distillation and filtration steps run cleaner. For example, facilities scaling up an amidation reaction for custom intermediate work might lose time and solvent if the raw amide drags persistent contaminants or has lingering volatiles. Because our product comes from closed-system processes, such solvent slip barely registers on outgoing assay reports.

    How 4-Tert-Butylbenzamide Supports Key Research and Manufacturing Needs

    We see this amide compound come up in three major contexts.

    Above all, proper documentation and traceability mark the difference between hobby and professional supply. Rather than general-purpose export paperwork, we include actual test records for each lot. Our analytics team logs each batch on compliance reporting tools, rather than holding results in local spreadsheets. Separating a real manufacturer from a repackager means showing receipts for every material stream.

    What Sets Our 4-Tert-Butylbenzamide Apart

    Ask any seasoned process chemist—differences between chemical products rarely boil down to lab purity numbers alone. In our own trials and from customer feedback, three core qualities stand out:

    In practice, these distinctions drive smoother plant operations. Several facilities that moved from trading company suppliers to direct manufacturer sources like ours reported better long-term cost controls. They cut down on mid-campaign sourcing switches and saw fewer re-testing holds in both quality and environmental compliance audits.

    Differences from Other Benzamide-Type Compounds

    In bench-scale and pilot-plant work, people sometimes wonder why they should choose 4-tert-butylbenzamide over other similar compounds like unsubstituted benzamide or o-toluamide. The answer lies in practical attributes, not just theoretical structure. The tert-butyl group adds significant steric bulk to the benzamide backbone, which translates into higher chemical stability and lower reactivity to certain nucleophiles and acids. Unlike unsubstituted benzamide, the tert-butyl derivative won’t break down as quickly under moderate temperature or basic pH, which helps during extended synthesis runs.

    The physical profile also changes. Its increased hydrophobicity reduces water take-up, so technicians don’t worry about hidden moisture skewing reaction input weights. Competing products—especially cheaply sourced, lower grade batches—sometimes arrive hydrated or clumped, which means customers have to dry and sieve before use. Such extra steps chew up time, risking exposure and even loss of value during drying. Our crystal product ships tight-sealed and validated for low volatile content per shipment.

    Some facilities try switching between benzamide variants for price reasons, yet find the downstream purification or reaction yields don’t justify the apparent savings. We take calls from users stuck cleaning filters or discarding compromised reactions after choosing alternative amides that introduce unseen reactive fragments. Such calls often lead the customer back to true 4-tert-butylbenzamide to avoid repeating those mistakes. No two products in this class act quite the same way—with ours, reliability rules out most nasty surprises.

    Customer Use-Cases and Firsthand Challenges

    In manufacturing, the real test comes on the plant floor or behind the research bench. Over the past five years, our 4-tert-butylbenzamide has played a quiet but vital role in dozens of customer scenarios.

    A pharmaceutical lab once shared their trouble scaling a peptide synthesis. Their older supplier’s product produced color drift in the final API batch. NMR logs pointed toward trace aromatic aldehyde impurity. We tested their current sample head-to-head with our clean batch lot. Troubleshooting with analytical colleagues revealed that the off-grade material incorporated unstable traces above specs. Making the switch smoothed downstream hydrogenation, recovering both yield and expensive column resin. Moments like these explain why validated, consistent, and traceable material makes the rounds in regulatory files and audit rooms, well past the original catalog number or sales inquiry.

    Polymer producers running large extruders sometimes run into particle size issues with offcuts and “recycled” lots from non-manufacturing sources. Chrome-plated screws can jam or develop scoring when crystals break or melt inconsistently. One production partner detailed how, after vetting our material, screw fouling rates dropped by over 60 percent in a two-quarter period. Such hard process data rarely appears on spec sheets but gets repeated in plant manager conversations. The lesson holds—direct-from-source product means every kilo is made to run, not just ship.

    In contract manufacturing organizations, research project leaders regularly grapple with changing regulatory landscapes. Sourcing validated and documented chemical intermediates, like our 4-tert-butylbenzamide, reduces risks of batch rejections. With chain-of-custody reporting already tied to our ERP systems, our product ships with the data that clients need for both internal review and government monitoring. Compliance headaches disappear when every sample and shipment are traceable by unique lot and analytical chart.

    Manufacturing Insights: Delivering the Best Benzamide Staples

    Production has always been more than a matter of following instructions. The tools we use, the solvents that pass through the lines, and even the way staff rotate ensure every day’s run doesn’t deviate. Our reactors meet tough standards for chemical isolation—a necessity when you handle restricted and high-purity outputs. Employees test raw materials using in-house analytical suites before a reaction gets the green light. Small changes picked up by the QC group—say, a half-degree dip in melting point—trigger a hold for further checks. Studies show that once a shipment passes these gates, scrutiny from outside audit labs shows no deviation. We keep stringent logs, not for compliance alone, but to anticipate every question from our end users.

    Clients care about reliability and repeatability. Nothing wastes more time than tracking down an equipment error only to find it traced to an upstream impurity or lot mix-up. That’s the grim reality in many facilities buying from non-manufacturing sellers. We take calls from teams frustrated by ping-ponging between different intermediates in mid-reaction. Switching suppliers mid-process creates risks and cost overruns. Avoiding that pattern means delivering trust, not just product, with every shipment.

    Solutions to Market and User Challenges

    No manufacturing workflow stands still for long. Market pressures shift, regulatory frameworks get updated, and new synthetic methods emerge. Adapting to these changes calls for flexibility backed by demonstrable expertise. I have seen labs push for ever-stricter impurity limits, often chasing issues that stem from inadequate documentation or makeshift third-party sourcing. Standing behind every lot with full test records, including HPLC, NMR, and residual solvent checks, sets direct manufacturing apart from opportunistic sellers.

    Communication fills the gaps. Open channels with customers mean fielding technical requests—sometimes during late shifts or urgent campaign runs. Answers come easier when the production team stands behind each shipment. We’ve noticed that research and process teams increasingly value this reliability, even over price, after recovering from one-off sourcing missteps. Investment in process technology—closed-loop, software-driven, and with redundancy at every checkpoint—pays off not just for us, but for every chemist and operator downstream.

    Being hands-on also brings unexpected requests. One year, a customer tackling a unique solvent mixture discovered strange extraction behavior. Testing revealed that common blended sources out of the market leached surfactant residues. Our pure-batch process eliminated those variables, and their project advanced on schedule. In cases like these, the manufacturer isn’t just a seller—it’s a partner in problem-solving.

    To meet changing global standards—particularly after updates to environmental guidance and stricter import checks—we updated our solvent recycling, closed all vent emissions, tracked every drum, and digitized lot records. Our teams train alongside regulatory updates, and integrate those lessons within the year. Years of audits, surprise inspections, and third-party certifications translate into fewer user delays and cleaner market entries for our clients.

    The Manufacturer’s View: Quality Beyond the Label

    For us, making 4-tert-butylbenzamide well means more than just hitting a list of numbers. Products ship with the raw performance and traceability that working operations need. The marketplace brims with lab catalog entries and trader-blended supplies, yet only purpose-built manufacturers document, test, and verify every lot with full chain-of-custody. Whether at the kilos or multi-ton scale, each handoff documents not just the material, but all the care, planning, and technical insight that brought it from raw precursor to useful, proven compound. This kind of supply partnership goes beyond the superficial pitch—it delivers confidence, project continuity, and long-term technical support as priorities shift and processes evolve.

    From the manufacturing floor to the customer’s benchtop or reactor line, product quality, consistency, and data-backed claims turn a basic chemical offering into a long-term asset. 4-tert-butylbenzamide might not be a daily headline compound, but in the right hands it turns into one of those quiet building blocks that keeps research and industry running without interruption.