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HS Code |
395207 |
| Cas Number | 7493-78-5 |
| Molecular Formula | C11H12O3 |
| Molecular Weight | 192.21 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Boiling Point | 145-147°C at 13 mmHg |
| Density | 1.083 g/cm3 at 25°C |
| Refractive Index | 1.533 - 1.537 at 20°C |
| Flash Point | 117°C |
| Solubility | Insoluble in water, soluble in organic solvents |
| Odor | Floral, sweet |
As an accredited Allyl Phenoxyacetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Allyl Phenoxyacetate, 500g, packaged in a sealed amber glass bottle with tamper-evident cap and clear hazard labeling. |
| Shipping | Allyl Phenoxyacetate is shipped in tightly sealed, chemical-resistant containers to prevent leaks and contamination. It should be kept in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances. Proper labeling and adherence to local, national, and international transport regulations are essential to ensure safe transit. |
| Storage | Allyl Phenoxyacetate should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from sources of ignition, heat, and direct sunlight. It should be kept away from incompatible substances such as strong oxidizers and acids. Ensure all storage is clearly labeled and follow relevant regulatory and safety guidelines for handling and storage of chemicals. |
Applications of Allyl Phenoxyacetate in Industrial ManufacturingAllyl Phenoxyacetate serves as a functional raw material in the synthesis of specialty chemicals. Its unique molecular structure supports downstream performance targets in regulated segments. The following are key industrial applications and technical standards relevant to its use in our clients’ operations. 1. Fine Fragrance Formulation for Personal CareMajor fragrance houses employ this raw material as a specialty ester in designing modern perfumery accords, often for use in body sprays, colognes, and skin-safe personal care scents. Its aroma character supports transparent floral top notes and enhances long wear on skin-type substrates. Our manufacturing partners adapt the raw material’s reactivity profile during blending to ensure batch consistency, compliance with regional allergen restrictions, and support of proprietary olfactory signatures in final compositions. Industry compliance standards
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2. Industrial Solvents and Coatings AdditivesChemical formulators utilize this ester in select resin-containing coating systems and specialty industrial solvents. Its balance of polarity and volatility helps modify flow, enhance substrate wetting, and tailor gloss profiles during solvent-based coating application. Performance labs monitor batch-to-batch purity and undertake QC evaluation specific to downstream polymer matrices and anticipated application conditions, including industrial safety standards for occupational exposure and flammability. Industry compliance standards
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3. Flavor and Aroma Intermediate for Food Additive SynthesisAuthorized flavor houses and food additive manufacturers procure this ester as a certified intermediate during the synthesis of specific aroma compounds. Regulatory authorities require certified purity, documented traceability, and strict analysis of residual solvents and stereoisomer content. Production lines rely on validated batch incorporation methods suited to downstream food contact materials and flavor ingredient synthesis under food-grade GMP. Industry compliance standards
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4. Polymer Additive for Engineering PlasticsProducers of high-performance engineering plastics incorporate this compound as a specialty additive, modifying compatibility between aromatic polymer matrices and other functional additives. Typical use includes polycarbonate and polyester blends, where the ester structure supports impact resistance and dimensional stability under thermal processing. Quality control teams monitor incorporation to align with international standards for polymer additives and migration in food-contact or technical-grade plastics. Industry compliance standards
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5. Pharmaceutical Intermediates SynthesisPharmaceutical ingredient manufacturers utilize this compound as a starting material or esterification agent in the synthesis of selected APIs and molecular scaffolds, particularly in research and development of aroma-modified active compounds. Traceability and process audit records remain critical for GMP-compliant production, and QC screens for elemental impurities and residual solvents. Strict adherence to pharmacopoeial monographs and validated cleaning procedures is maintained throughout every production run. Industry compliance standards
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6. Specialty Lubricant Base Stock ModifierManufacturers of advanced synthetic lubricants dose this material to optimize solubility, stability, and temperature performance in esterified base stocks for targeted machinery and process environments. The chain structure enhances lubricity and supports controlled volatility in specialty hydraulic and compressor fluids. QC protocols review interaction profiles with detergent additives, antioxidants, and viscosity modifiers to secure formulated performance while upholding safety and industrial quality programs. Industry compliance standards
Typical usage ratio
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Building something for everyday use means paying attention to every step involved, especially in the specialty chemicals business. Allyl Phenoxyacetate bears the CAS number 7493-74-5 and is something we’ve worked with for years. Our process runs under careful conditions, and we keep everything traceable, from raw materials to the packaging seal. Our team doesn’t just follow a recipe. Over time, we have tweaked reaction parameters, watched for impurities, and invested in equipment upgrades, because no batch deserves indifference.
The finished material holds a clear, slightly viscous appearance. From an operator’s perspective, you can judge the quality by its clarity and stability over time—no haze, no odd tint. The chemical’s structure, with an allyl group attached to a phenoxyacetic acid backbone, delivers both reactivity and stable fragrance molecules.
We track content, acid value, moisture, and color at every production cycle. Typical purity by GC often lands above 98%—but we hold off on sending it out if any lot doesn’t meet the numbers we expect. Most of our staff could spot a deviation by scent or sight after working with this compound day in and day out. Batch records document the process, but personal accountability finishes the job.
Clients look for consistency, that’s the baseline. There’s more at stake, though. Manufacturers blending fragrance bases count on the same character, shipment after shipment. One slug of off-spec material can slip a whole production run. Our experience with quality control has shown even small pH shifts or a distillation cut a few degrees off can alter the olfactory note, creating a harshness that lingers through the end product.
Direct from our plant, each drum of Allyl Phenoxyacetate reflects not just the technical specification, but a hands-on understanding of what customers notice. Unlike stock bought through layers of brokers, our product avoids exposure to temperature swings, multiple decantings, or the potential for accidental contamination. We deliberately limit storage time, both for safety and for freshness; what leaves our warehouse rarely sits long.
Our old records show that using older-generation glass-lined reactors sometimes gave minor carryover from prior fragrances, something we corrected through capital investment. We switched to dedicated vessels, supported by regular deep cleans and strict line separation. Years back, a mislabeled drum on an external contract cost us time and a customer’s trust—we handled that directly and revamped our barcoding system, rolling out double-checks on every shift.
This molecule works as a middle note in fragrances meant for personal care, detergents, and niche industrial cleaners. As a manufacturer, we watch companies experiment with blends. We’ve received feedback from clients that value the material’s stable, floral-woody note, able to persist through alkaline washes and extended shelf life. Some of our long-standing customers turn out shower gels or shampoos; others blend for fabric refreshers or fine fragrance bases. Distinct from the more volatile acetates, this chemical exhibits a slow-release property, letting scent linger.
Our laboratory found the material compatible with common fixatives and solvents used across different geographic markets. In soap production, our Allyl Phenoxyacetate demonstrates resilience—no breakdown, and the odor survives both cold and hot process cycles. Formulators in the cleaning sector approached us about complaints with lesser esters hydrolyzing too fast, resulting in a loss of character. Our material has stood up to accelerated aging studies, run right on-site in our own environmental chambers.
One flavor and fragrance chemist told us the crispness allows them to round out fruit accords. Perfume houses want something that doesn’t distort as the formula matures. We’ve spent time with these experts, understanding how ingredient breaks can lead to fluctuating output year to year. That led us to prioritize shelf life and proper capping at the fill line. It’s the little things, such as switching out gaskets in pump heads to avoid flavor taint, that only long-term manufacturing can teach.
Some clients previously substituted Benzyl acetate or Phenoxyethyl acetate, aiming for a similar effect at a lower cost. From our talks, these options didn’t quite last as long, especially in tougher formulations. What sets Allyl Phenoxyacetate apart, judging by headspace analysis and real-world testing, is how it holds up under alkaline and heat-accelerated conditions. We compared hydrolytic and thermal stability directly in our QC labs and observed that loss rates from off-brand or inferior allyl acetates were higher, leaving end products flat or prematurely faded.
Looking back through our R&D notebooks, we have experimented with mixed ester formulations and even blends sourced elsewhere. The conclusion always comes back to purity and handling. Lower-grade imports or recycled streams often contained trace acids, sulfides, or unexpected polymerization residue. Our crew’s hands-on experience, running each batch with fresh reagents and closely monitored temperature profiles, makes a difference you can’t replicate with shortcuts.
We maintain a database of customer testimonials and field returns. Most complaints on substitutable materials stemmed from unexpected odor changes after storage or shipment. In one case, a personal care manufacturer noticed fogging in transparent soaps traced to a minor impurity present only in one shipment from another supplier. After troubleshooting together, our facility isolated the root cause—a trace contaminant below 0.2%—and adjusted our column selection accordingly. We incorporate every lesson learned into our routine, refusing to treat any issue as a minor one.
Another practical consideration is blending. Some lower-grade products foam or haze as soon as they hit a mixing tank, slowing down production and eating away at efficiency. Allyl Phenoxyacetate produced in our plant pours smoothly, without the microbubbles or haze that often appear in less controlled environments. Our operators observe the filling process at every stage. Any batch giving off-smells, off-colors, or inconsistent pour rates is held back for further investigation.
Each manufacturing run has its own story. Temperature swings in reaction or even modest variances in feedstock quality bear tracking. Our plant engineers have installed additional in-line monitors, not just at reaction completion, but before and after each system transfer. Inline GC checks, refractometers, and odor panels using experienced noses remain standard here. Sometimes a chemical supplier will talk up equipment specs, but years of troubleshooting and working on the floor show where a system breaks down. Complacency brings batch failures; attention to detail ensures a product that matches its promise.
We source key raw materials directly from primary producers and keep their supply chains under periodic audit. No incoming material enters production without a full certificate of analysis and, when possible, a retained sample for later comparison. Our crew records each batch chronologically, logging every deviation, no matter how minor. Continuous improvement has meant developing better titration methods and, on several occasions, discarding whole runs to protect the integrity of the finished product. Customers value trust, and that builds from not cutting corners at any level.
Our packaging strategies also bear the weight of field experience. Early on, we had a few instances of cap leaks or contamination from unlined steel closures. We responded by shifting to food-grade lined drums, double-sealed under nitrogen blanketing when necessary. Feedback from a client shipping their product to extreme climates pushed us to adopt UV-blocking outer wrap for longer shelf stability. Rather than waiting for repeated complaints, we act after a single credible issue.
Handling, too, reflects real-world concerns. We coach downstream partners on how to store and decant. Each label provides concise storage tips—not a shelf’s worth of legal copy, but real advice boiled down from our own mishaps. By staying close to end-users, we gain insight into how the product survives storage, transport, and even exposure to less-than-ideal conditions.
Producing a high-value ester like Allyl Phenoxyacetate is not a matter of shipping drums and closing sales. The relationship often starts with a technical call, reviewing specs and queries about compatibility. We view technical support as ongoing. When a fragrance house wanted to boost longevity in a new laundry scent blend, we invited their team to watch a trial batch—sharing not just analytical results but blending techniques and practical troubleshooting steps.
Field issues crop up. A formulator mixing for new detergents reached out after running into foaming at dosages higher than normal. Our technical team reviewed their process, reran blending trials in our own lab, and homed in on subtle changes in pH from local water supplies. We delivered a practical workaround, helped verify it on their line, and adjusted a production parameter in the next campaign to further minimize issues. Such cases reinforce the importance of technical agility and a willingness to share what we know.
We put real effort into feedback loops. When a long-term partner reported slightly altered organoleptic results, we traced a part-per-million drift in allyl content back to a catalyst supplier’s batch inconsistency. Transparent exchange with vendor partners and routine impurity tracking let us resolve it swiftly, and we keep the lessons in-house for training new staff. An operator who discovers a process breakthrough gets credited and their method adopted across production.
In development, our R&D group works hands-on with innovators creating new fragrance profiles. We lend them samples, share candid data, and create small custom lots under controlled conditions for stability testing. Sometimes a result doesn’t match a customer’s goal right away. Instead of spinning it as a feature, we share the facts and keep improving, striving for transparency at every turn.
Years of experience taught us that new regulations can arrive fast, changing what customers expect from a product. Regulations, particularly those around allergens and purity in personal care and fragrance products, shape both how we process and what we promise to clients. Our compliance team monitors updates from major markets, and our adjustments reflect not just legal obligations but practical utility for end-users.
Ingredient origin, residual impurities, and safety data all factor into both procurement and sales. We participate in industry working groups to keep up with shifting standards—learning not just what’s coming down the pike, but how best to prepare. We keep our product’s impurity levels below industry thresholds and support users in answering questions from their own clients. Supply chain security also influences how we forecast demand and manage component safety stocks to shield customers from unexpected shortages.
Market shifts require a direct response. As consumer tastes change or green chemistry trends strengthen, we work up alternative sourcing scenarios for key feedstocks and review new synthesis routes for efficiency and reduced waste. Not every “sustainable” claim translates to better chemistry, but we keep options open and only introduce them after rigorous bench testing and pilot-scale validation. We never shift process parameters solely to meet a marketing narrative; the product’s functional character comes first.
Sourcing, producing, and delivering Allyl Phenoxyacetate at scale demands more than technical knowledge. Field mistakes, customer input, and direct interaction with the end application influence every innovation. Our internal post-campaign meetings always include time for discussing what the last batch taught us—what worked, what didn’t, and why incremental improvements matter even when performance meets target.
We involve everyone, from the newest operator to the most senior chemist, in feedback loops. Nobody downplays quality slips, and small improvements—such as recalibrating filling equipment or specifying new drum liners—bring bigger benefits over time. Staff take pride in knowing our material finds its way into formulations recognized around the world. That responsibility never feels abstract; every drum reflects a direct connection to both the process and the people using what we make.
It’s not unusual for a new use case to push us to examine old assumptions. We welcome test batches for specialty applications and openly discuss expected outcomes and limitations. Sometimes that honesty means recommending a competing material when it suits an end formula better—that trust comes back to us later down the line.
The specialty chemicals industry offers plenty of opportunities to cut corners, but credible, consistent manufacturing stands apart over the long term. Our reputation stands on every drum and every response to a customer concern. Experience shows that open, technical collaboration, thorough traceability, and quick action on feedback build reliability, while shortcuts eventually catch up with you.
Allied teams in formulation labs, procurement, and production have helped us evolve our own processes. The benefit of being a direct manufacturer is clear—we see every stage, have direct control, and correct issues with speed and transparency. Staff learn from both positive and negative experiences, accumulating knowledge that shapes not just the product, but the whole supply chain dynamic. Our firm belief is that customer loyalty results from a pattern of honest engagement, proven reliability, and steady innovation.
Producing Allyl Phenoxyacetate is a practice refined across years. The commitment starts at the raw material dock and finishes with each container shipped. Feedback loops, technical troubleshooting, and adaptation to new requirements thread through everything we do. We trust the results, because our experience—good and bad—built each improvement into the fabric of production. For formulating fragrance, personal care, and specialty cleaning products, our version brings reliability, proven stability, and a focus on doing things right the first time. Clients who visit our plant see a team invested in the process and in their results, not just in a product specification sheet. That difference shapes every batch and builds confidence down every link in the supply chain.