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HS Code |
365906 |
| Chemicalname | Ethyl 3-Methoxyphenylacetate |
| Molecularformula | C11H14O3 |
| Molecularweight | 194.23 g/mol |
| Casnumber | 24697-74-9 |
| Appearance | Colorless to pale yellow liquid |
| Boilingpoint | 292 °C |
| Density | 1.09 g/cm3 |
| Refractiveindex | 1.507 |
| Solubilityinwater | Insoluble |
| Smiles | CCOC(=O)Cc1cccc(OC)c1 |
| Flashpoint | 126 °C |
| Purity | Typically >98% |
| Storagetemperature | Store at room temperature |
| Odor | Mild, aromatic |
As an accredited Ethyl 3-Methoxyphenylacetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 250g clear glass bottle, securely sealed with a black screw cap, labeled with chemical name, CAS number, and hazard warnings. |
| Shipping | Ethyl 3-Methoxyphenylacetate is shipped in tightly sealed containers to prevent leaks and contamination. It should be packed according to standard regulations for organic chemicals, protected from moisture, heat, and direct sunlight. Proper labeling and documentation, including safety data, are required to ensure safe transport by air, road, or sea. |
| Storage | Ethyl 3-Methoxyphenylacetate should be stored in a tightly closed container in a cool, dry, and well-ventilated area, away from sources of heat, sparks, or open flame. Protect it from direct sunlight and incompatible substances such as strong oxidizers. Proper labeling is essential, and the storage area should comply with safety and chemical hygiene guidelines. |
Applications of Ethyl 3-Methoxyphenylacetate in Industrial ManufacturingAs a core chemical intermediate produced in our manufacturing facility, Ethyl 3-Methoxyphenylacetate finds specialized uses across several downstream sectors. With its aromatic ester structure, this raw material supports controlled synthesis of advanced molecules and high-value finished goods in regulated industries. Below are key industrial application tracks, each with unique process, compliance, and end-product requirements. 1. Fragrance Compound Blending for Fine Perfume ProductionLeading fragrance houses source this ester for use as an aromatic middle note in complex perfume formulations. Its subtle floral and slightly fruity character allows master blenders to construct olfactive accords that demonstrate persistence and appeal across premium lines. Production environments must maintain high batch reproducibility, low impurity background, and allergen profiles conforming to market entry conditions in multiple regions. Batch protocol specifies staged addition at controlled temperature and the use of non-reactive vessels to protect note clarity. Industry compliance standards
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2. Synthesis of Pharmaceutical Building BlocksPharmaceutical contract manufacturers integrate this ester early in the creation of analgesic, anti-inflammatory, or central nervous system compound scaffolds. The molecule acts as a masked phenylacetic acid derivative in multi-step organic syntheses, supporting ester hydrolysis and subsequent amide bond formation under cGMP controls. All batches require precise traceability with validated analytical verification and impurity profiling per global pharmacopeial requirements. Industry compliance standards
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3. Manufacturing of Flavor Additives for Food & Oral CareFood ingredient and oral care formulators include this ester to impart mild, sweet, and floral aroma notes in high-value applications where thermal loading remains moderate. Regulatory dossier must be prepared for GRAS affirmation in the United States and aligned with EU flavoring regulation. Manufacturing processes implement strict cross-contamination avoidance, low VOC emissions, and full batch record archiving. Typical dosing supports flavor masking or enhancement in products where artificial flavor thresholds apply. Industry compliance standards
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4. Fine Chemical Intermediary for Agrochemical ActivesAgrochemical active ingredient manufacturers apply this ester for the construction of advanced phenyl-based pesticide and herbicide intermediates. Laboratories design process routes using the ester as a key starting material for specific substitution reactions, delivering selectivity necessary for modern crop protection agents. Regulatory submissions require full synthetic route disclosure and low-level impurity mapping according to local and transnational standards. QC laboratories employ chromatographic and spectroscopic verification after ester integration in synthesis chains. Industry compliance standards
Typical usage ratio
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Competitive Ethyl 3-Methoxyphenylacetate prices that fit your budget—flexible terms and customized quotes for every order.
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Our path to producing Ethyl 3-Methoxyphenylacetate starts with raw materials that meet exacting standards. Skilled technicians handle each part of the synthesis, drawing from years of practice with aromatic esters, ensuring consistency throughout every batch. From the very first distillation to the final filtration, every stage runs under practical eyes—those used to working with organic acids and alcohols, those who have handled tricky refluxes on long days and balanced plenty of glassware on the bench.
Experience in real-world laboratories makes a difference. We do not imagine what customers ask for; we listen to what R&D teams in fragrances and pharmaceuticals demand. Our teams have dealt with surprises—gritty batches, off-odors, color tints that hint at impurities. Quick, honest problem-solving keeps these issues from reaching your loading dock.
Ethyl 3-Methoxyphenylacetate stands out among phenylacetate derivatives because of its subtle aroma profile and solubility. Chemists value it for the gentle ether scent layered with a faintly floral thread, which sits softer compared to the sharper notes of unsubstituted phenylacetates. Making it means careful attention to side reactions. Those who have run this type of esterification know the importance of excluding moisture and using only quality solvents.
We tune our process to reduce unwanted byproducts. As a result, the product we collect after the final distillation offers low residual acidity and a color clarity that passes the most critical chromatography tests. When someone in perfumery or medical synthesis specifies this molecule, they expect minimal variance from lot to lot. Having handled shipment after shipment, we have seen how a poorly refined ester can knock entire formulation runs off-spec. Our track record leans on deep quality control and experience.
Manufacturers in flavors, fragrances, and intermediates keep asking about Ethyl 3-Methoxyphenylacetate because it does more than just mix well. Its mild scent complements brighter citrus or green bases without overpowering the blend. Formulators in fine fragrance labs use it to add roundness to bases that otherwise lag in diffusion. Those mixing with less reactive esters look for smooth integration, and we have seen more than a few chemists quietly switch to our brand when inconsistencies with mass-produced alternatives start eating up development time.
Pharmaceutical chemists reach for our Ethyl 3-Methoxyphenylacetate when building complex intermediates—often in multi-step syntheses where even a trace impurity will cascade into problems down the line. Our clients taught us long ago that product recalls and batch blunders cost more than the difference between a carefully managed process and a cheap shortcut. We draw from those hard lessons in every kilo we ship.
Those who work with esters every day know: consistency under the microscope matters. Our Ethyl 3-Methoxyphenylacetate offers a narrow purity range, monitored by gas chromatography and tested using in-house reference standards created during multi-batch runs. Many factories trust us not because we promise, but because after running our samples through their own QA, they keep coming back.
We have stood behind our process even when the market pulled in a different direction, producing at our own scale and pace instead of chasing bulk figures. Other phenylacetate esters—such as those lacking the methoxy substitution—don’t deliver the same balance between volatility and fixative power in fragrance design. That small difference in the molecular structure gives perfumers more room to shape olfactory impressions without crowding the composition.
Over the years, we witnessed the margins get squeezed and more volume orders go to traders and re-packers who talk about lowered prices without talking about the purity downgrades that come along for the ride. Formulators who have suffered from trace contaminants or batch-to-batch drift know the difference true manufacturing makes. We’ve welcomed back more than a few customers burned by that experience.
Our teams work with glassware and steel tanks, not spreadsheets. Ethyl 3-Methoxyphenylacetate lands in bins and barrels after a line of steps that must be actively managed at every stage. Transporting flammable organics means more than checking boxes—this responsibility stays with us from the distillation setup to loading the finished product onto the truck.
Waste disposal, raw material recalls, and regulatory audits don’t just fall on distributors or desk-based buyers. We have to face these issues—and we document our practices not to win certifications, but because this protects our workers and the communities around our plants. We welcome safety inspectors and regulatory authorities, sharing records rather than hiding behind product codes or batch secrets. Some competitors have moved sections of their process off-site to hide the manufacturing details. We have kept our lines open and our books visible. This builds something more robust than a certificate—it builds actual trust.
Handling aromatic esters often makes it easy for those who don’t see production labs to ignore the subtle issues: air-quality controls, the right choice of non-metallic seals, solvent recovery for sustainable operations. We have improved our procedures over the decades by bringing together the feedback of chemists who noticed a yellow tinge or an unfamiliar impurity signal and wanted a change right at the source. The knowledge from those dozens of small tweaks makes our Ethyl 3-Methoxyphenylacetate reliable run after run.
Fragrance blenders and API builders need repeatability that goes beyond spec sheets. We have worked hand-in-hand with those who perform the weighings and the mixing, not just the buyers. When someone phones to discuss a technical concern, they reach people who know how the manufacturing line actually operates—not an outsourced call center. This direct feedback lets us troubleshoot and also improves the next batches.
Our crew keeps a log of the performance differences customers have flagged in their applications. Over the years, this builds a knowledge pool thicker than any sales talk. For example, we record how our Ethyl 3-Methoxyphenylacetate performs under high-shear mixing or unusual pH conditions. Some flavor houses have taught us tricks for enhancing the top notes by modulating heating ramps, and we work those observations back into our own recommendations. Years of this kind of dialogue show up in more robust, resilient product choices.
Often, buyers confuse esters that look similar on paper. Ethyl 2-Methoxyphenylacetate or Methyl 3-Methoxyphenylacetate get proposed as substitutes, but those working with real world formulations see issues almost immediately. Altering the alkyl chain or the substitution site shifts volatility and changes odor thresholds. Those who have experimented with such switches tell us about altered persistence, off-key aroma shifts, or downstream synthesis failures.
By focusing on perfecting Ethyl 3-Methoxyphenylacetate, we avoid drifting into “almost good enough” territory. Our approach sets the product apart because our reactors, filtration steps, and raw material sources were dialed in for this composition and this composition alone. Cross-contamination, inconsistent boiling points, or unrefined color plagues factories that split their lines too many ways. We have chosen to do one thing well, then stand behind that result.
Over the years, testers have come to expect particular melting and boiling points, color ranges, and solubility profiles from us. Even the specifications set by buyers grow out of real-world lab and plant requirements: will it dissolve at the correct rate in a given solvent, will it respond stably in specific reaction schemes, does the clean odor profile hold up over weeks in storage?
Our batch records stretch back decades, and we track statistical trends in yields, end-of-run purity, and impurity levels. We share this data upon request—no hiding behind data sheets padded with unrealistic figures. Customers who require detailed analytical support for scale-up projects receive actual raw findings, including chromatograms, rather than prettified marketing charts.
You’ll notice the difference in every flask and every finished product your own technicians check: fewer unknown peaks on chromatography, predictable physical properties, simple and accurate documentation. That’s only possible when the manufacturer runs the line, lot after lot, year after year, without changing hands.
We learned over time that adapting a process is not as easy as swapping out a reagent or changing a temperature. Even trace metals from lines, slight variations in vacuum pressures, or the order of chemical additions can change the outcome. Our leadership includes a good share of bench chemists who understand the rhythm and logic of hands-on synthesis. That matters because we can spot problems early and take corrective measures before they become widespread issues.
Some buyers call asking about custom grades: higher purity, tailored residue limits, tighter color index. Our answer draws from our flexibility as the manufacturer. We keep reserves of high-purity fractionations and keep documentation open, so it’s possible to offer genuine custom runs. Working closely with customers—rather than delegating to anonymous tollers—controls quality and allows for creative solutions in tricky projects.
Those who have stuck with our Ethyl 3-Methoxyphenylacetate for years appreciate more than just the chemical itself; they value reliability. Many chemists and buyers initially arrive by recommendation, then stick around after they’ve seen smoother lab performance, faster approvals, and fewer disruptions on their own lines.
Many markets now chase lower prices and mass production, and we watch trends shift toward resellers rebranding intermediates without documentation of real origin. These practices confuse traceability and accountability. Real manufacturing integrity means not hiding the pain points. We have stepped up to answer technical crises, share batch records, and support extra validation. The proof appears every time a partner avoids a costly redo or speeds up time-to-market because trusted ingredients integrate seamlessly.
Every barrel and drum that leaves our gate reflects the choice to keep focused expertise alive in a sector crowded by middlemen. Our longest-standing relationships don’t come from repeated “lowest price” guarantees, but from showing up, crisis to crisis, until the job gets done and the chemistry holds together as promised.
Decades of making Ethyl 3-Methoxyphenylacetate have done more than keep our lines running: they have honed our sense of what matters. Finicky reactions, difficult isolation steps, and the need to manage both purity and odor subtlety have all shaped our approach. We know how much work lies behind every kilogram that reaches another manufacturer’s plant.
Most competitors haven’t seen as many technical crises as we have navigated. That lived experience allows us to address each batch as a new opportunity to refine, to correct, to deliver what was actually promised and needed. We keep improving each cycle, not because standards demand it, but because survival as a manufacturer depends on genuine mastery of our craft.
Whether you are using Ethyl 3-Methoxyphenylacetate for a high-volume fragrance, a unique intermediate in drug synthesis, or a specialty fine chemical line, trust in this: the care built into each run shows not only in test results, but in the quieter, practical business of smooth scale-up, confident formulation, and successful launches downstream. That’s what genuine manufacturers bring to the table, every single day.