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HS Code |
482483 |
| Iupac Name | 1-(3-acetamidophenyl)ethanone |
| Cas Number | 15445-53-3 |
| Molecular Formula | C10H11NO2 |
| Molecular Weight | 177.20 g/mol |
| Appearance | White to off-white crystalline solid |
| Melting Point | 130-134°C |
| Solubility In Water | Slightly soluble |
| Smiles | CC(=O)C1=CC(=CC=C1)NC(=O)C |
| Purity | Typically ≥ 98% |
| Storage Conditions | Store in a cool, dry place; keep container tightly closed |
| Pubchem Cid | 36503 |
As an accredited 3'-Acetamidoacetophenone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 250g of 3'-Acetamidoacetophenone packaged in an amber glass bottle with a secure screw cap and tamper-evident seal. |
| Shipping | 3'-Acetamidoacetophenone is shipped in tightly sealed containers, protected from moisture and light. It is classified as a non-hazardous chemical, but standard chemical handling protocols apply. Packages are clearly labeled and cushioned to prevent damage during transit. Ensure compliance with local and international regulations for chemical transport. Store at room temperature upon arrival. |
| Storage | 3'-Acetamidoacetophenone should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from sources of ignition, heat, and incompatible materials such as strong oxidizers. Protect it from direct sunlight and moisture. Store at room temperature and ensure that the container is properly labeled. Follow all relevant safety guidelines and local regulations for chemical storage. |
Applications of 3'-Acetamidoacetophenone in Industrial Manufacturing3'-Acetamidoacetophenone is a trusted intermediate serving several specialized sectors. As an experienced producer, we detail real-world integration of this raw material into industrial downstream workflows. Below are its primary application fields, each reflecting distinct compliance, formulation, and processing protocols. 1. Pharmaceutical Intermediate for Antipyretic Analgesic DrugsThis compound acts as a key intermediate in the synthesis of antipyretic and analgesic pharmaceuticals, including certain acetaminophen derivatives. Its acetylated aromatic amide structure supports targeted synthesis steps for small-molecule APIs. Our production lots ensure minimal impurity levels to satisfy direct regulatory pathway involvement. Typical use involves reductive acetylation or subsequent functionalization reactions forming the core pharmacophore structures in finished drugs. Downstream operators demand consistent batch reproducibility for regulatory dossier submission, especially during scale-up for commercial tablet or injectable formulations. Industry compliance standards
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2. Fine Fragrance and Aroma Compound SynthesisMany leading perfumers and flavor manufacturers use this specialty intermediate to introduce sought-after delicate sweet, slightly floral notes into consumer and functional fragrances. The ketone-acetamido structure allows for further transformation into complex aroma molecules via acylation or steffen-rearrangement steps. In flavor systems, strict odor profile and traceability must be assured for global ingredient clearance. Our plant delivers lot trace certificates and low residual solvent, supporting end-user testing panels and regulatory applications in R&D and scale-up aroma ingredient design. Industry compliance standards
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3. Advanced Dye and Pigment IntermediateThis raw material sees active use in the production of specialty dyes and pigments, especially those incorporating acetamido and aromatic motifs for textile and plastics coloration. It enters coupling reactions to introduce chromophoric elements or as a blocking agent for improved stability under UV or chemical stress. Textile and pigment producers set strict limits on heavy metal and by-product content. Our analytical team supports qualification batches for low residual and robust chroma consistency, key for stringent customer QC acceptance in specialty dye lines. Industry compliance standards
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4. Chemical Intermediate for Agrochemical SynthesisProducers of high-value crop protection compounds integrate this aromatic intermediate into their synthetic sequences for select herbicide and pesticide molecules. The protected amide function allows for specific substitution steps without unwanted side reactions, important in multi-step active ingredient manufacture. Regulatory audit trails strictly govern feedstock identity, and lot number referencing forms an essential part of registration licensing. Our facility maintains backward traceability and supplies supporting purity and contaminant reports to facilitate global agrochemical pre-registration and export documentation. Industry compliance standards
Typical usage ratio
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For those who work shoulder-to-shoulder with chemicals every day, 3'-Acetamidoacetophenone earns a spot as a trusted building block. On our production floors, we treat this compound with respect, knowing that purity and consistency make all the difference in a customer’s final product. Every batch begins with carefully sourced raw materials, which get handled using reaction protocols we’ve refined over years of hands-on experience. Our models for this compound deliver high assay rates, with actual figures vouched for by in-house and third-party GC/HPLC analysis. We know that clients expect the assay to clock in at no less than 98.0 percent, so we keep a close eye on every processing stage.
Our production history teaches us that tiny changes in chemical profile or trace impurity can bring entire downstream operations to a halt. 3'-Acetamidoacetophenone stands out for its controlled melting range and low residual solvent content. The product maintains a consistent appearance, clarity, and flow—what you see doesn’t change from drum to drum. We record moisture and impurity data on every lot, not just for bragging rights, but because we have seen what a stray percent or two of water can do to sensitive coupling steps. The internal laboratory double-checks every batch for trace isomers and heavy metals. If a drum shows something unexpected, we pull it and find out why rather than risk passing on any problems.
Behind the chemical name sits a real synthesis: a streamlined acetylation and amide functionalization process carried out at scale. We design our model SKUs around industry priorities: monochromatic distribution, low residuals, and easy solubility in key organic media. Each specification evolves over time, shaped by customer feedback and changing regulatory thresholds in Europe, North America, and Asia. Many of our long-term clients come from the pharmaceutical and specialty intermediate space, where trace byproducts and lot-to-lot variation prompt immediate questions. We win that business by showing full traceability for every kilogram.
3'-Acetamidoacetophenone often ends up forming part of more complex molecules. Downstream polymer, dye, and medical research workflows all put their own demands on purity. We listen and talk through the challenges with technical staff on both sides, making changes on our lines to hit those hard-to-reach targets. For instance, requests from pigment manufacturers for ultra-low color numbers led us to install new filtration banks in 2019, reducing batch color variance to nearly undetectable. On the other hand, pharma clients depend on documentation showing PAH, aromatic amine, and solvent residue levels far below global limits. As a producer, we don’t just write specs—we incorporate their feedback into our synthesis and QC approach.
Many compare 3'-Acetamidoacetophenone to related acetophenone or acetanilide derivatives, but the unique meta-position acetamido group here comes from precise control during the acylation stage. That means it stays stable under conditions where other isomers start to degrade or isomerize. For physical characteristics, our batches flow as free-cutting white to off-white crystals, resisting clumping even under seasonal humidity swings. That comes from experience—years spent tinkering with anti-caking and packaging solutions for a range of climates, and plenty of phone calls with end-users seeking support.
We see 3'-Acetamidoacetophenone go into a wide array of applications, but the pattern never stands still. Some years, demand from the pharmaceutical side leads, usually for use as a key intermediate or starting material in more complex projects. Manufacturing in this space means keeping an eye on not just purity, but also on regulatory filings—REACH registration, DMF status, and customer-specific documentation. Our chemical serves as both a scaffold and a modifying unit in heterocyclic synthesis and targeted APIs.
Colorant and dye producers often order larger quantities, asking for assurance on the specific color index and particle morphology. It gets put to work in the synthesis of dispersed dyes, high-stability pigments, and custom chromophores. Their end-products bring strict requirements for lightfastness or spectral response, both of which can hinge on the precursor’s stabilizer level and impurity profile. We’ve worked through these requirements with dye chemists, sometimes making small tweaks to our washing steps or crystallization runs to hit their desired outcome.
Research and development labs order 3'-Acetamidoacetophenone by the kilo—but scrutiny can go even deeper here. Academic groups highlight the importance of trace metals, unknown peaks on the chromatogram, or background CLP hazard classification. We stay ready to supply batch-level data and spectral scans from FTIR or NMR for those who need thorough verification. Their feedback has shaped our documentation style and pushed us to validate new frequency methods.
We’ve learned that end-use varies not just by sector, but by region. Our European customers driven by regulatory compliance look for expanded heavy metal data and multi-year supply agreements. US customers pay attention to cGMP statements. Asian firms tend to ask about capacity and forward delivery scheduling, focusing on just-in-time performance. We keep our operations adaptable to fit these evolving markets and expectations.
Years of chemical manufacturing highlight the real-world differences between 3'-Acetamidoacetophenone and close cousins such as 2'- or 4'-substituted analogs. Structural variation changes both processability and suitability for certain reactions. By managing all synthetic and crystallization steps under one roof, we have greater control over isomer purity. For research teams working on new ligands or biologically active cores, the exact substitution pattern in this molecule means unwanted side reactions stay out of the way, and yields stay higher.
We also know that purity doesn't always speak only to the primary assay number. Our internal tracking measures multiple impurity classes—organic residues, trace mineral content, and secondary amides. The production process has to be robust against seasonal swings and raw material variance. That’s where in-house process engineering steps in: every change in supplier or plant configuration brings a barrage of re-validation, so surprises don’t enter the final drum or bag.
Differences show up in applications, too. Acetanilide, acetophenone itself, and their isomers may find application as solvents, starting materials, or even in veterinary research, yet they rarely deliver the fine-tuned function required in targeted syntheses. Our chemists run comparative screens and stress tests on every new lot, trying out reactions ranging from Mannich condensations to peptide couplings. If an off-grade intermediate threatens the outcome, the project halts until we troubleshoot it. Years ago, a customer pointed out that trace 4'-isomer below the reporting threshold fouled a downstream catalyst. We tracked the root cause in our process, reinforced our distillation equipment, and invited their staff to audit the change. That decision kept their contract and built a relationship that still holds.
On the production floor, theory meets practice. Everyone knows that scale-up changes the game. A reaction that runs smoothly in a glass flask at 100 grams can yield scattered impurities or color changes at the ton scale. Operators get trained to spot the tiniest off-note in odor or hue, recalling batches for review if anything strays from the standard. It’s not just lab numbers—real chemical workers trust their eyes, noses, and experience.
Handling 3'-Acetamidoacetophenone means dealing with strong odors and occasional dusting, especially during grinding and sieving. Our engineering team retrofitted extraction systems to manage fugitive emissions, making the plant safer for workers and cleaner for the environment. Years spent dealing with local safety audits convinced us to invest in dust and air monitoring, even before regulations demanded it. Before any bag leaves our warehouse, it passes through double-sealed packaging lines so that transport to the customer remains incident-free, even across longer routes in humid climates.
Logistics play an equally important part. We laid out our packaging protocols not just based on theory, but after fielding customer complaints about caking or accidental spills during shipping. Tamper-evident seals, extra-thick liners, and clear lot labeling all surfaced because our customers asked for them. Local distributors come on-site to inspect every pallet before international delivery, so that paperwork and physical inspection support one another.
Over years of production, we’ve hit challenges large and small. Each time, useful solutions come from investigating the process at ground level. During one hot summer, batch crystallization started bringing in haze and slow filtration. Nightshift operators realized tiny shifts in water content and ambient temperature were the issue. With some process adjustments and insulated piping, we ironed out the trouble.
International compliance remains a moving target. Toxicological and environmental limits change faster than ever, so our people keep up with evolving REACH requirements and local standards. We keep a compliance tracker on-site that flags adjustments in reporting and batch documentation. We don’t see paperwork as a box-ticking exercise—solid compliance records keep our product in markets where customers expect zero surprises at customs or during audits. Responding quickly to new documentation demands, rather than waiting for a customer alert, keeps us reliable in the eyes of our long-term partners.
Scaling up or innovating in formulation brings different challenges. Over several recent years, more customers want granular or micronized 3'-Acetamidoacetophenone. The move from larger to smaller particle sizing revealed unexpected static issues in packaging and flow, so our engineering crew trialed antistatic liners and new bagging options until the powder handled safely at every point of the supply chain.
Customers occasionally ask why we don’t outsource bottleneck processing steps or buy in from third-party tollers. Experience shows that full in-house manufacturing control beats any saving you get from splitting up the production workflow. One mismanaged purification or batch blending step risks the entire order. Responsible stewardship relies on full visibility, so sourcing, synthesis, filtration, drying, and packing all stay in-house. Every audit and customer visit confirms this is the right approach for those who put reliability above lowest available pricing.
Personal connections help chemicals flow more smoothly than any supply chain report or ERP system. Account managers and QC chemists from our side talk directly with technical contacts at the customer’s site. We learn about problems, outlier data, and shifting formulation demands firsthand, not through layers of intermediaries. Over time, these conversations highlight what really matters—the smallest details that might never appear in standard technical sheets, but which determine real success for chemical users.
We encourage customers to visit the site, look over records, and follow the journey from raw input to finished product. Hearing feedback directly leads us to better understand how the material gets handled and what improvements are needed—sometimes in labeling, sometimes in container selection, and sometimes reaching back to adjust reaction parameters for a cleaner, faster synthesis.
Market requirements don’t stand still. In lean years, streamlining helps control cost, while boom markets give us the budget to try out new analytical gear or scale up improved filtration lines. We invest in sustainability where possible—installing solvent recovery arrays and energy monitors over the last decade. Focusing on waste reduction and responsible sourcing lets us assure customers they aren’t just buying quality—they’re partnering with a producer who wants to operate responsibly for years ahead.
Anyone can print a specification, but in our business, reputations run on follow-through. Lab certificates mean less when sample and scale batches don’t align. By holding ourselves to tighter controls, supporting customers through troubleshooting, and boasting traceability from input to drum, we help chemists, formulators, and scale-up teams hit their goals with less worry.
3'-Acetamidoacetophenone reflects our focus on making fine chemicals that do more than check boxes—they give creators and manufacturers the margins and reliability they need at every stage. Customers—whether crafting a single kilo for R&D or moving tons into global production—deserve absolute clarity on what’s inside each bag. By keeping our hands on every part of the production, listening carefully, and adapting to the real needs of people using these chemicals, we continue building something more valuable than just a product: we offer trust and peace of mind, batch by batch.