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HS Code |
451143 |
| CAS_Number | 7779-61-1 |
| Molecular_Formula | C16H18O2 |
| Molecular_Weight | 242.32 g/mol |
| IUPAC_Name | 3-phenylprop-2-en-1-yl 2-methyl-2-butenoate |
| Appearance | Colorless to pale yellow liquid |
| Boiling_Point | 338.6 °C at 760 mmHg |
| Density | 1.045 g/cm3 |
| Refractive_Index | 1.551 |
| Flash_Point | 151.3 °C |
| Solubility_in_Water | Insoluble |
As an accredited Cinnamyl Tiglate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Cinnamyl Tiglate is supplied in a 100g amber glass bottle, sealed with a screw cap, labeled with safety and product information. |
| Shipping | Cinnamyl Tiglate should be shipped in tightly sealed containers, protected from light, heat, and moisture. Use suitable, chemically resistant packaging and include appropriate hazard labeling if required. Ship according to local, national, and international regulations. Ensure documentation includes the chemical's name, CAS number, and relevant safety data for safe handling and transport. |
| Storage | Cinnamyl Tiglate should be stored in a cool, dry, and well-ventilated area away from direct sunlight and sources of ignition. The container must be tightly closed and kept in a chemical-resistant, labeled vessel to prevent contamination and leakage. This chemical should be isolated from oxidizing agents, acids, and bases. Proper personal protective equipment is recommended when handling the substance. |
Applications of Cinnamyl Tiglate in Industrial ManufacturingCinnamyl tiglate is a specialty ester applied in multiple fine chemical sectors, valued for its aromatic profile and functional properties. As a direct manufacturer, we ensure high purity, batch consistency, and supply flexibility tailored to industrial formulation and processing needs. 1. Fine Fragrance ManufacturingPerfume and fine fragrance producers utilize cinnamyl tiglate as a unique middle-note ingredient, appreciated for its floral-fruity nuance and lasting diffusion. QC teams typically subject each batch to GC-MS odor profiling to meet fragrance house specifications. Formulators blend the material at controlled temperatures to avoid ester hydrolysis, ensuring stability in alcohol-based, oil-based, and solid fragrance formats. Production includes direct blending into the composition’s heart phase, followed by aged maceration and filtration before final product compounding. Industry compliance standards
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2. Flavor and Food Aroma CompoundingFood-grade cinnamyl tiglate serves as a minor aroma ingredient in certain fruit, berry, and composite flavor blends. Food scientists employ the ester in matrix flavor systems to impart top notes or modify sweetness perception. The raw material’s purity is monitored by HPLC and taste panels. The loading level is controlled by sensory thresholds, adherence to FEMA limits, and formulation function. Process integration typically involves pre-mixing into glycol or alcohol carriers for even dosing in liquid flavors, then post-blending or spray-drying for finished flavor powder lines. Industry compliance standards
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3. Cosmetic Cream and Lotion Fragrance BasesPersonal care formulators add cinnamyl tiglate to creams and lotions for its complex yet soft sensorial appeal, supporting fragrance notes that withstand base formulation stress. QA specialists monitor the stability of cinnamyl tiglate under different emulsifier systems and storage conditions. Integration into the oil phase during cooled emulsification optimizes retention and prevents volatilization or degradation. Finished batches are subjected to stability testing under ISO protocols to validate long-term aroma preservation. Industry compliance standards
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4. Specialized Scented Detergents and Fabric CareManufacturers in household care incorporate cinnamyl tiglate as a high-impact aroma compound in premium fabric softeners and detergents, contributing to both fresh and long-lasting scent signatures. QC ensures ester purity and compatibility with anionic, nonionic, and cationic surfactant systems. The compound is dosed during perfume oil addition, where it is solubilized with encapsulation technologies to boost deposition on textiles. Downstream formulation steps include encapsulation, direct blending, and performance testing for scent retention post-laundering. Industry compliance standards
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5. Personal Care Bar Soap ScentingArtisanal and industrial soap producers rely on cinnamyl tiglate for imparting a nuanced, floral-citrus aroma that survives saponification and curing. Compliance includes full material traceability and verification of stability under alkaline conditions. Formulators add the compound to cooled soap base after trace, ensuring aromatic retention during molding and drying. Additional QC safeguards address allergen labeling and performance in final user conditions. Industry compliance standards
Typical usage ratio
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Competitive Cinnamyl Tiglate prices that fit your budget—flexible terms and customized quotes for every order.
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Walking through our production floor every morning, the hum of stainless steel tanks, the tangled yet purposeful lines of transfer hoses, and the experienced hands of our staff handling raw materials all leave a clear impression—every molecule here carries intention. Cinnamyl Tiglate is a product born from both chemistry and commitment. As folks who convert raw substances into reliable building blocks for other industries, we’re acutely aware of every variable and every decision behind each drum we ship.
Whenever our technical team examines new esters, we focus on how their structure impacts performance in flavor and fragrance applications. Cinnamyl Tiglate stands out. Its molecular design—melding the classic aromatic profile of cinnamyl alcohol with the esterified character of tiglic acid—results in a distinct, stable aroma. This balance opens doors in high-value formulations. The purity we achieve in production sits at the core of why it gets selected over similar esters.
Cinnamyl Tiglate carries a formula most chemists will recognize: a backbone of cinnamyl alcohol (phenylprop-2-en-1-ol) attached to the unsaturated nature of tiglic acid. Our own process avoids shortcuts. We source cinnamyl alcohol with a purity exceeding 99% and use tiglic acid that meets international standards. By employing precise esterification techniques under controlled temperatures and anhydrous conditions, yield improves, and byproducts remain minimal. Every batch, before filling, heads through both in-house GC-MS analysis and regular third-party validation.
Sitting next to a drum of cinnamyl acetate or cinnamyl propionate, Cinnamyl Tiglate distinguishes itself by its unique olfactory signature. The blend of sweet, spicy, and subtle green notes keeps perfumers coming back for it when they require more nuance than the commonly available alternatives. On the manufacturing side, its liquid form at room temperature streamlines transfer and blending, unlike some faintly solid esters that cause headaches in batch processing. The flashpoint, solubility behavior in alcohols and oils, and shelf stability contribute to smoother integration for manufacturers of personal care, fine fragrances, and specialty flavors.
Industry experience teaches a lesson that chemistry textbooks don’t always capture: reliable supply, consistent quality, and a clear understanding of downstream hurdles shape a chemical’s value. Perfumers might rave about the subtle difference Cinnamyl Tiglate brings to a delicate floral base, but we see its work long before it reaches a magazine advertisement or a high-end eau de toilette. Our batches go to both established global fragrance houses and regional manufacturers aiming for premium formulations.
The essence this ester brings makes it ideal for products striving to break away from overcrowded olfactory categories. Companies aiming to refresh their scent portfolio gravitate to the sweet, almost balsamic nuance Cinnamyl Tiglate provides. In our conversations with creative teams, they mention how it bridges classic and modern profiles—allowing surprising notes to peek through in both perfumes and flavored applications, such as gums or specialty fruit confections.
Handling practical concerns means dealing with regulatory compliance, traceability, and transparency. Food-grade applications set a higher benchmark. Our practice has always leaned toward disclosing every relevant physical and chemical certificate, and we maintain batches on a retain-and-review system for at least two years. Consistent performance—no sudden off-notes, no unexpected discoloration—builds the quiet trust that’s tough to measure but easy to recognize in repeat orders.
Manufacturers look for diversity in their palette—sometimes demanding subtlety, other times chasing boldness. Compared to cinnamyl acetate, which gives sharp, apple-like notes, or cinnamyl butyrate with its more pronounced pungency, Cinnamyl Tiglate does something different. It threads a subtle seam, delivering a hint of hay and spice with a floral push that feels less synthetic. For a formulator searching for differentiation, getting the right balance between familiarity and innovation is tough. This ester delivers that without overpowering, making it adaptable in both everyday and luxury lines.
Unlike some classic esters with volatility issues or reactivity with metal packaging, our product resists unwanted oxidation due to our strict handling protocols and final filtering before filling. Drums leave our site nitrogen capped when destined for long-haul transport. This keeps the ester crisp and dependable on arrival, trimming complaints about “off” barrels and helping clients maintain consistent standards through their own supply chains.
We don’t chase gimmicks or promise impossibilities. As a manufacturer, our job is practicality—clarity about what goes into the product, and honesty about what makes it tick. Cinnamyl Tiglate’s edge is as much about a reliable process as about the molecule itself. Cheaper imitations from unvetted sources often fall short in either purity or stability, undercutting the intended effect in finished consumer goods.
Years of feedback taught us which numbers end up mattering on the factory floor. Color consistency (measured with APHA or Gardner systems), olfactory threshold, and storage stability define value more than a list of obscure chemical properties. Our standard Cinnamyl Tiglate, Model CT-1865, delivers a near water-white color, a minimum purity of 98.5%, and proven ability to keep its intended scent profile beyond two years under recommended conditions.
While we test for acid value, refractive index, and specific gravity, real-world usage focuses most on how batches blend and perform. We run trial blends with common solvents and carriers—ethanol, MCT oil, and DPG—before sign-off. We stress each batch in heat/cool cycles and light exposure tests, spotting early if a material will fail under less-than-perfect warehouse conditions. By meeting specific, agreed tolerance standards batch after batch, unexpected headaches for our partners decrease.
Chemical manufacturing combines science with craftsmanship. Good people pay attention to the little things: precise weighing of raw materials, watching temperature spikes during esterification, careful distillation and polishing steps. Every operator in our plant knows the stakes. One overlooked cleaning step or a slight change in reaction time means weeks of follow-up work and, occasionally, wasted raw material.
We produce Cinnamyl Tiglate in stainless reactors dedicated to food-safe esters, not just for regulatory optics but for real prevention of cross-contamination. Distillation columns are optimized for the boiling points and to avoid clogging from trace impurities. We monitor for any signs of hydrolysis or color drift. Sometimes, a partner drops in for a plant visit—and nothing builds confidence faster than following a batch from raw drum to packed and palleted product. It’s not about a faceless chemical, it’s about complete control and accountability.
In the world of esters, price fluctuation and supply jitters upset plans for downstream industries. Natural sources for cinnamyl alcohol fluctuate due to harvest yields, while tiglic acid poses sourcing headaches in some years. We keep broad portfolios of suppliers, focusing on those who commit to transparency on origin and specification. If one lab falters, we have at least two backup options with validated flow sheets.
A growing number of customers now ask about the provenance of every component. We trace each raw material, documenting both the chemical and its journey as required by evolving REACH and IFRA updates. The market is also shifting away from so-called “mystery blends” toward disclosed, single-molecule solutions. Our Cinnamyl Tiglate comes with a full dossier, not just a generic data sheet. End users, especially those exporting to North America or the EU, demand this transparency to satisfy their own auditors and customers.
In recent years, the conversation shifted further toward environmental and health impact. Perfumers and food scientists alike ask if there are allergens or CMR substances lurking in the fine print of a material’s story. We supply exhaustive documentation to assuage these concerns. Continuous monitoring of global regulations allows us to preempt the need for costly product reformulations. In this sense, we serve as much as a compliance partner as a chemical producer.
Our technical team doesn’t just read off certificates or rely on remote testing. We run comparative panels with direct competitors. Our sensory evaluation panels catch subtleties that machines might miss. In fragrances, it’s often the elusive “back note” or tail that changes a product from ordinary to memorable. Some years ago, a client brought us a failed launch. Tweaking one component—their previous supplier’s Cinnamyl Tiglate had a faint but persistent fatty note—completely altered the outcome. Our higher purity, coupled with proper nitrogen blanketing, made the difference.
The food industry poses separate hurdles: flavor migration, impact on color, reaction with other actives. In-house food technologists run through every pH, matrix, and storage challenge. Our teams eat pilot-batch candies and gums, and if there’s a flavor drift or unwelcome aftertaste, we go back to production protocols. This hands-on, batch-by-batch adjustment builds more trust than spreadsheets or promotional handouts ever could. Clients see us as partners, not just as a source.
Raw material availability and sustainability define today’s chemical industry landscape. Land use, energy requirements, and process optimization figure into our every supplier conversation. We’re actively revisiting sourcing options to favor renewable feedstocks. In the plant, solvent recovery and recycling feature heavily in our day-to-day practice. Smaller batch sizes improve agility and minimize waste, especially for clients needing just-in-time supply instead of long-term stockpiling.
More customers now expect advanced QC documentation, not just COA conformity but proof of green chemistry in every step. We answer with open audits and third-party verification of process waste and emissions. Such transparency encourages others along the supply chain to follow suit. We’ve reduced our on-site energy consumption per batch by 17% over the last decade through targeted investments—swapping old distillation equipment, adding heat recovery, and routine staff training on energy stewardship. These advantages filter down into product reliability, price stability, and a lower environmental footprint.
Being a manufacturer, not just a warehouse or broker, changes how we approach customer calls. If a customer’s line shuts down due to clumping, color drift, or a regulatory question, we don’t shuffle the problem to someone else. We pull archived retention samples, run expedited tests, and partner with their team to work through solutions. A few years back, a personal care client reported unexpected polymerization in a high-end hair serum. Through bench testing and talking over application conditions, we traced the issue to another supplier’s carrier solvent—not the Cinnamyl Tiglate. Documenting this helped both our customer and another supplier avoid repeat errors across multiple plants.
Regular customer conversations loop back into production improvements. Few outside of manufacturing realize how feedback on “flow issues” or incompatibility with a specific preservative leads straight to process improvements—sometimes as straightforward as changing a filtration membrane, other times requiring a deep-dive into reaction mechanics.
Service doesn’t end at the shop door. Our logistics chain, from drum-coding to label durability tests, reflects the same care as the chemical process. Clients with strict inventory rotation schedules appreciate being able to trace each Cinnamyl Tiglate batch by both date and operator-led quality inspections.
Years of on-the-ground experience taught us that being a trusted manufacturer takes more than words. Every satisfied repeat customer, every emergency order filled on time, every small operator who grows into a bigger one thanks to hassle-free supply—those are the touchstones that define credibility. Internally, our teams keep logs of every anomaly, no matter how minor—learning keeps the plant running smoothly, and those learnings travel forward.
Prospective customers often start with a trial order and soon realize the difference that careful, hands-on manufacturing brings to their process. We answer every question—not out of formality but out of the simple belief that our product will do whatever job it’s asked, as cleanly and dependably as possible. That belief isn’t an empty promise. It’s the lived experience of a chemical manufacturer who sees every bottle and drum not only as lines on a spreadsheet, but as a bridge to something new—a fragrance, a flavor, an inventive formulation.
The world of specialty chemicals never sits still. Upstream shortages, shifting regulations, and end-user taste trends push the industry in new directions. We treat Cinnamyl Tiglate not as a static product but as a starting point for constant improvement. Our research group explores bio-based inputs and seeks ways to minimize byproducts. They run pilot batches under alternative conditions and share data openly with the production teams.
Customer demand sometimes pulls us outside our comfort zone, requesting reformulations or unusual blends. The flexibility built into our operations—dedicated lines for sensitive esters, modular packaging filling, redundant quality checks—allows us to adapt. At the same time, every adjustment runs through a cycle of internal validation and external consultation, not just to satisfy checklists, but to ensure the new lot behaves as predictably as the last.
Our approach to manufacturing Cinnamyl Tiglate illustrates a larger truth: progress doesn’t arrive from distant boardrooms or disconnected strategy teams. It comes from the teams who walk the factory floor, listen to customers, solve messy problems, and turn lessons into real improvements. The product’s reputation depends on those day-to-day decisions—balancing tradition and innovation, reliability and experimentation, caution and boldness.
In short, Cinnamyl Tiglate reflects the interplay of chemistry and lived experience. It does not show up on the market by chance. It’s a direct result of careful sourcing, people who watch every stage, and a willingness to stand behind every barrel that leaves our site. We don’t believe in magic molecules—only in the hard work of good manufacturing. This work takes place in real factories, by experienced operators, for real-world users who supply end consumers with products they trust. In this way, our Cinnamyl Tiglate keeps finding its way into new applications and new markets, shaped by a foundation of consistency, performance, and transparency.