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Cinnamyl Phenyl Acetate

    • Product Name Cinnamyl Phenyl Acetate
    • Alias Cinnamyl phenylacetate
    • Einecs EINECS 225-898-5
    • 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

    895473

    CAS Number 103-54-8
    Molecular Formula C17H16O2
    Molecular Weight 252.31 g/mol
    Appearance Colorless to pale yellow liquid
    Odor Floral, sweet, balsamic, honey-like
    Boiling Point 370.2 °C at 760 mmHg
    Density 1.07 g/cm³ at 25 °C
    Refractive Index 1.567 – 1.573 at 20 °C
    Flash Point 168 °C
    Solubility Insoluble in water, soluble in alcohols and oils

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

    Packing & Storage
    Packing Cinnamyl Phenyl Acetate 100g is packaged in a sealed amber glass bottle with a screw cap, ensuring protection from light.
    Shipping Cinnamyl Phenyl Acetate should be shipped in tightly sealed containers, protected from light and moisture. Handle with care, following standard chemical shipping regulations. Transport according to local, national, and international guidelines for non-hazardous chemicals. Ensure clear labeling and include Safety Data Sheet (SDS) during shipment for reference and safety compliance.
    Storage Cinnamyl phenyl acetate should be stored in a tightly sealed container in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible materials such as strong oxidizers and acids. Protect from direct sunlight and moisture. Ensure storage area is equipped with proper ventilation and is designated for chemicals. Keep container properly labeled and handle in accordance with good laboratory practices.
    Application of Cinnamyl Phenyl Acetate

    Applications of Cinnamyl Phenyl Acetate in Industrial Manufacturing

    As a direct manufacturer of cinnamyl phenyl acetate, we supply this material to specialty segments where its aromatic characteristics and stability enable high-value downstream product formulations. Below, we present major industry applications supported by verified compliance requirements, accurate dosage references, process positioning, and the prevalent end goods produced using this molecule.

    1. Fine Fragrance Compounding

    Global fragrance houses incorporate our material as a key modifier in developing premium perfumes and eau de toilette blends, thanks to its intense floral-fruity note and long-lasting stability. Perfume compounders select cinnamyl phenyl acetate primarily for heart-note and base-note enhancement in luxury market launches and to formulate signature accords that comply with rigorous safety reviews. QC teams conduct sensory evaluation alongside chromatographic purity checks at the blending stage to ensure compliance with any market launch specification.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards and Amendments
    • EU Cosmetics Regulation (EC) No 1223/2009, Annexes II, III
    • REACH Registration and SVHC Restriction
    • US FDA 21 CFR 73.250 (as fragrance additive)

    Typical usage ratio

    • 0.05% to 2% in final perfume concentrate formulas, adjusted by olfactory profile, market, and regulatory guidance per finished product use

    Downstream process integration

    • Added to pre-mix alcohol dissolution during the compounding phase, before filtration and bottling; sequence may vary between oil and water-based systems and by finished product category

    Final product types

    • Designer and niche perfumes (EDT, EDP)
    • Luxury personal care fragrances
    • Fine fragrance bases for aerosols
    • High-end home fragrance oils

    2. Flavor Formulations for Food & Beverage

    Regulatory-cleared food and beverage flavorists use cinnamyl phenyl acetate to achieve complex fruity and honey-like profiles, most notably in bakery, confectionery, and select beverage draft flavors. The GRAS (Generally Recognized As Safe) classification allows controlled use in composite flavorings. Flavorists precisely monitor addition levels, as overshooting acceptable limits can alter sensory acceptability and breach statutory residue tolerances, especially when formulating for export to the EU or Japan.

    Industry compliance standards

    • US FDA 21 CFR 172.515 (Flavoring Substances and Adjuvants)
    • EU Commission Regulation (EU) No 1334/2008 (Flavourings and Food Ingredients with Flavouring Properties)
    • JECFA (Joint FAO/WHO Expert Committee on Food Additives) Specifications
    • FEMA GRAS database (FEMA No. 2060)

    Typical usage ratio

    • 2–30 ppm in finished food or beverage formulas; adjusted by target product matrix, sensory goals, and compliance testing for cumulative daily intake

    Downstream process integration

    • Blended into liquid or powder flavor premixes during the initial formulation step; dispersed using food-compatible solvents prior to incorporation in final production batches

    Final product types

    • Bakery flavors for cakes and cookies
    • Fruit and honey flavorings for confectionery
    • Carbonated drink flavors
    • Chewing gum flavorings

    3. Functional Household Cleaning Products

    Global homecare manufacturers utilize cinnamyl phenyl acetate in custom-formulated air fresheners, liquid cleaners, and fabric sprays where fragrance stability and gradual volatility are prized. Its controlled release profile works particularly well in slow-evaporation systems and water-based surfactant formulas. Process engineers dose the material after initial neutralization, closely monitoring batch homogeneity to uphold both consumer safety and VOC emission requirements.

    Industry compliance standards

    • EU Regulation (EC) No 648/2004 (Detergents Regulation)
    • REACH Annex XVII for SVHC and restricted substances
    • California Air Resources Board (CARB) VOC standards for consumer products
    • IFRA Standards for NOAEL (No Observed Adverse Effect Level) in household applications

    Typical usage ratio

    • 0.02% – 0.3% in ready-to-use cleaning formulas; level tailored according to evaporative profile and region-specific VOC/odor thresholds

    Downstream process integration

    • Incorporated at the fragrance oil solubilization stage after surfactant dissolution but prior to batch pH adjustment; ensures stable dispersion throughout end-user storage and application

    Final product types

    • Room and linen sprays
    • All-purpose household cleaners
    • Gel-based air fresheners
    • Odor-neutralizing liquid detergents

    4. Personal Care & Cosmetic Emulsions

    Formulators in the cosmetic industry value our material as a secondary fragrance component in high-grade creams, lotions, and specialty anhydrous products. Its miscibility with silicone and ester bases allows for smooth incorporation into complex emulsion systems, while precise dosing limits potential irritancy. Regulatory coordinators validate batch records against region-specific cosmetic ingredient restrictions at each lot introduction.

    Industry compliance standards

    • EU Cosmetics Regulation (EC) No 1223/2009
    • China GB 7916-1987 “Hygienic Standards for Cosmetics”
    • US FDA Voluntary Cosmetic Registration Program (VCRP) guidance
    • IFRA Standards for Dermal Sensitization, leave-on and rinse-off cosmetics

    Typical usage ratio

    • 0.01% – 0.1% in standard cream and lotion compounding; limit set by intended dermal exposure, product type (leave-on/rinse-off), and regional regulatory thresholds

    Downstream process integration

    • Added during the oil phase preparation step before high-shear emulsification; order of ingredient introduction may vary for hot vs. cold process emulsions

    Final product types

    • Facial and body creams
    • Premium hand lotions
    • Perfumed body butters
    • Luxury cosmetic serums
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    Certification & Compliance
    More Introduction

    Cinnamyl Phenyl Acetate: A Closer Look from Our Production Floor

    The Craft in Making Cinnamyl Phenyl Acetate

    We’ve been working hands-on with cinnamyl phenyl acetate for years, following each batch from raw material sourcing all the way to end packaging. This compound catches the nose with a soft, floral-fruity aroma that blends natural cinnamon notes into a gentle sweetness layered over a warm base. Every day, as the reactors bubble and mixers churn, we monitor reaction times and temperature curves because even minor deviations in the process can throw off the final odor profile.

    We manufacture Cinnamyl Phenyl Acetate with a purity standard above 98%, validated using gas chromatography. Controlling moisture content and acidity matters just as much as hitting the right composition, since excess water or trace acids can speed up degradation or introduce off-notes in applications. Our plant uses continuous distillation for purification, pulling out minor residuals to keep color and clarity high—important for both fragrance and specialty industrial customers.

    Seeing Through the Chemistry: What Sets This Ester Apart

    Cinnamyl phenyl acetate stands out because its structure twists two aromatic rings—cinnamyl and phenyl acetyl—linked by an ester group. This linkage creates an interesting balance: high stability under most storage conditions, but still enough volatility to release a fragrance slowly in solvent-based or water-based systems. Chemists in our team appreciate its resistance to acid-catalyzed hydrolysis compared to simpler esters. Our QA staff spends real time testing every lot, since aesthetic properties like faint yellow hue and low viscosity can mark the difference between a batch fit for fine perfumery and one destined for simple industrial blends.

    Oddly enough, the ester’s shelf stability and compatibility also make it easier to formulate compared to other natural-inspired fragrance chemicals such as cinnamyl alcohol or benzyl acetate, both of which oxidize faster or can leave lingering unwanted notes. Cinnamyl phenyl acetate avoids that harshness, slotting smoothly into both premium fragrances and soaps where clarity and stability are prized.

    Everyday Uses from Our Perspective

    On a daily basis, we ship drums of this compound as a core ingredient for fragrance houses, home care products, and even high-end cosmetics. Formulators like coming back to cinnamyl phenyl acetate because the character blends well with floral, spicy, or woody bases, and doesn’t mask subtle natural extracts. Its solubility in ethanol and many fixed oils streamlines the compounding process in both lab and industrial scales.

    We hear feedback from buyers who add it to air fresheners and household products. The unique scent profile helps mask harsh chemical odors without overpowering the room, striking a balance that repeated use in brand-name products has proven out. In cosmetics and fine fragrances, the compound acts as a subtlety enhancer, carrying top notes while providing complexity in the drydown. We’ve seen particularly high demand in mask formulations intended for premium soaps and body washes, where it rounds out the sharpness of cleaning agents.

    Differences from Other Fragrance Esters

    Within our portfolio, cinnamyl phenyl acetate holds its own. Take benzyl acetate, for example: widely used, but the synthetic nature can dominate a blend, skewing too sweet or floral. In contrast, our cinnamyl derivative delivers more depth and warmth, fitting easily into modern perfumery trends where users expect sophistication and a sense of luxury.

    Compared to the more volatile cinnamyl alcohol, storage tests in our facility show our acetate resists discoloration and rancidification much longer, especially when sealed in inert atmospheres. This makes it a safer bet for customers shipping globally or holding inventory in less-than-ideal conditions—a common challenge for small and mid-sized brands.

    There’s also a functional edge in terms of skin feel and compatibility. Some esters tend to cause irritation in rinse-off products, or break down faster in alkaline environments (think soap bars, detergents). Our cinnamyl phenyl acetate handles both better, reducing complaints and lowering loss rates over multi-month storage and transport cycles.

    Why Quality Matters to Us

    By the time a customer receives our Cinnamyl Phenyl Acetate, it has passed through at least four levels of inspection. Our batch records backtrack every input to tested lots, full traceability from seed to drum. We take pride in rejecting raw cinnamon oils if there’s any sign of oxidation or adulteration, since even percentage points in trace content can shift the scent and stability.

    We see value in investing in better control, not only for the sake of certification or customer confidence, but because minimizing variability means fewer customer complaints and faster repeat orders. The feedback cycle loops directly into our methods; a rejected lot means real cost for us, so we don’t cut corners on solvent purity or inert gas purging.

    Sustainability and Supply Chain Realities

    Sourcing cinnamyl supplies responsibly presents its own set of challenges. Price spikes and supply interruptions from changing climate conditions—especially in tropical cinnamon-producing regions—have compelled us to diversify our supplier pool. We favor suppliers who document their harvesting and processing methods, so we can track each kilo to an ecologically sound source. Our technical staff visits origin suppliers to check on working conditions and ask about their chemical handling practices, since what happens upstream impacts the integrity of the esters we produce.

    Handling the environmental impact counts every bit as much as quality in today’s market. We recycle solvents used in extraction and separation, directing residues for energy recovery rather than landfill. Effluent is treated intensively before discharge; even highly diluted aromatic wash water passes through multiple filtration stages before leaving our facility. Feedback from major brand customers tells us clean sourcing and lower carbon footprints increasingly influence buying decisions in both EU and North American markets.

    Process Safety and Worker Knowledge

    Over the years, our safety record has improved as crews have gained experience dealing with esters. Processes involving cinnamyl phenyl acetate demand tight controls on flammable solvent vapors and on the handling of acids and bases used for reaction adjustment. Shift leaders train new hires on hazard recognition—spills, vapor leaks, equipment fouling—with regular drills and real-incident reviews. Each line worker knows what to watch for, and we update our equipment whenever data shows superior containment or real-time monitoring will help.

    The move to batch automation cut down not only on minor incidents, but also increased reproducibility across production runs. Operators now access process controls through secure interfaces, logging batches out with individual credentials so we can backtrack the cause of deviations down to a person or process. These measures mean we catch off-spec material before it leaves the plant, and solve quality issues at the source.

    Customer Experience and Applications in Practice

    Our direct relationship with customers—ranging from boutique fragrance designers to large-scale FMCG manufacturers—brings information back to our lab. Users experimenting with cinnamyl phenyl acetate have developed products that extend from fine-mist perfumes to hard-surface cleaners and even insect-repellent blends. Soaps made with our material lather more smoothly, with a subtle base fragrance that persists even after rinsing. In air care, dispersion tests show a more controlled release compared to simpler aromatics, maintaining a consistent profile over hours rather than spiking and fading abruptly.

    Clients sometimes face solubility questions, especially when working with non-standard solvent systems or unusual essential oil mixes. Our technical support team routinely tests compatibility, feeding back blend ratios or pH adjustment advice drawn from our own production trials. It’s not unusual for us to recommend specific stabilizers or antioxidants based on what we’ve learned mixing thousands of experimental batches through the years.

    On the export front, shelf-life and transport stability often crop up. We’ve benchmarked packaging types and seals under various climates, and continue to switch up materials to reduce swelling and leaching even in hot, humid environments. This hands-on approach has cut claims and improved feedback from customers whose supply chains stretch through less-controlled storage and customs environments.

    Challenges We Encounter

    No chemical process runs without the unexpected. Batch-to-batch differences in raw phenyl acetic acid sometimes force us to tweak reacting conditions on the fly. We keep extra analytical support on hand to screen out odd contaminants. Raw cinnamon alcohol often carries trace organosulfur compounds that drag down odor quality and create difficult-to-remove haze. Our prep team learned to pre-treat raw material lots, running small test reactions before committing to full-scale runs.

    We track changes in regulatory expectations too. Increased scrutiny on aromatic esters has ramped up demand for detailed impurity profiles and more granular traceability. Our QC teams upgraded analysis capabilities to screen for nitrosamines, phthalates, and micro-contaminants that could enter at any stage from raw material to packaging resin. We meet these with transparency, offering batch-level certificates that customers trust as authentic.

    Innovation and the Future of Cinnamyl Phenyl Acetate Manufacturing

    We aren’t content to rest on established methods. Ongoing dialogue with academic partners and industry consortia helps us spot shifts in fragrance trends and underlying chemical preferences. Trial runs in continuous flow reactors have improved yields by eliminating side-products, and green chemistry initiatives are starting to bear fruit—catalyst optimization has trimmed waste generation and cut cycle times by over a third.

    The emergence of ‘clean label’ formulations in perfume and home care products shapes both how we source and how we communicate with customers. Traceable sourcing, minimized allergen content, and rapid responses to change requests define our role not as bulk supplier, but partner and problem solver.

    Lessons from the Factory Floor

    Nothing replaces daily interaction with the substances we make. Cinnamyl phenyl acetate, beyond its numbers and paperwork, stands as a benchmark for what happens when detailed attention compounds over time—carefully selected raw inputs, precise reaction tuning, and relentless focus on user needs. Each drum leaves our floor carrying months of lab development, spirited debate between engineers and perfumers, and honest feedback from clients trying to craft a memorable scent or a stable household cleaner.

    For us, the story of cinnamyl phenyl acetate plays out in the details. Whether it’s refining a distillation curve or catching slight shifts in ultraviolet absorbance that signal an impurity, each improvement we make multiplies downstream gains for those blending and marketing the final product. The difference between a standard batch and one crafted with genuine care shows up not just in the nose or colorimeter reading, but in customer loyalty and a supply chain that works as promised.

    Final Reflections from the Manufacturer’s Bench

    With every challenge—raw material volatility, evolving regulation, shifting market demands—we refine both process and product. Cinnamyl phenyl acetate deserves real attention, crafted with skill by people willing to tweak and test until the standard lifts for everyone involved. That’s the story as we see it from inside our factory—one built on hard-won experience, a strong nose, and an open line to every customer who values substance over surface.