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(5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One

    • Product Name (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One
    • Einecs 609-106-4
    • 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

    455752

    Iupac Name (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-trien-2-one
    Molecular Formula C18H30O
    Molecular Weight 262.43 g/mol
    Cas Number 4736-96-9
    Appearance Yellow oily liquid
    Boiling Point Unknown
    Melting Point Unknown
    Solubility Insoluble in water, soluble in organic solvents
    Density Unknown
    Pubchem Cid 5362454
    Smiles CC(CCCC(C)C=CC(C)C=CC(C)C=CC(=O)C)C
    Inchi InChI=1S/C18H30O/c1-15(2)11-8-13(4)10-9-12(3)7-6-14(5)16(19)17(15)18(20)21/h8-13H,6-7H2,1-5H3/b13-8+,15-11+
    Synonyms Sex Pheromone of Pink Bollworm, Gossyplure
    Refractive Index Unknown
    Storage Temperature Cool, dry place

    As an accredited (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle, 1 gram, tightly sealed with a screw cap, labeled with chemical name, formula, hazard warnings, and storage instructions.
    Shipping This chemical, (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-trien-2-one, ships in tightly sealed containers, protected from light, moisture, and extreme temperatures. Transportation complies with relevant chemical safety regulations, using appropriate hazard labeling if required. Swift handling ensures product integrity and timely delivery. Always check local and international guidelines before shipping this compound.
    Storage Store (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-trien-2-one in a tightly sealed container, away from direct sunlight, moisture, and sources of ignition. Keep in a cool, dry, and well-ventilated area, ideally at temperatures between 2–8°C. Ensure compatible storage with other chemicals and clearly label the container. Use protective equipment when handling to avoid inhalation or skin contact.
    Application of (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One

    Applications of (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One in Industrial Manufacturing

    As a direct manufacturer, we supply (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One to various industrial clients who use this specialty raw material in highly formulated downstream sectors. Our technical support team collaborates closely with formulators, process engineers, and quality departments to ensure reliable sourcing, compliance, and integration into complex manufacturing environments. Below are the most significant application sectors with real-world use cases, compliance requirements, dosage ranges, production workflows, and typical finished products.

    1. Fragrance and Aroma Compound Formulation

    Leading fragrance producers utilize this compound in high-end scent formulations, building long-lasting green, floral, or musk profiles in fine perfumes and personal care products. Perfume houses require high olfactive purity and traceability. The material enters blending under allergen-controlled conditions. We guarantee batch consistency for predictable aroma profiles, with supporting GC-MS QA documentation.

    Industry compliance standards

    • IFRA Code of Practice (latest amendment)
    • EU Cosmetics Regulation (EC) No 1223/2009
    • REACH Registration (as applicable for annual tonnage)
    • ISO 9001 for production process assurance

    Typical usage ratio

    • 0.01%–1.5% in final concentrate, adjusted during organoleptic evaluation by perfumers

    Downstream process integration

    • Blending during concentrate formulation phase, post-solvent selection, before bottling or further compounding

    Final product types

    • Eau de parfum and extrait de parfum
    • Premium niche fragrances
    • High-performance deodorant sprays
    • Luxury scented body lotions

    2. Flavor Ingredient Synthesis for Food and Beverage Applications

    Our material functions as a valuable intermediate in the synthesis of green, fruity, and musky flavorings for beverages and confectionery. Food ingredient manufacturers rely on strict traceability and pure input chemicals during high-temperature, controlled reactions. The compound must meet purity, migration, and residue requirements for incorporation into F&F blending, especially for products targeting export markets.

    Industry compliance standards

    • US FDA 21 CFR 172.515 (Synthetic flavoring substances)
    • EU Regulation (EC) No 1334/2008 (Flavourings and certain food ingredients with flavouring properties)
    • JECFA (FAO/WHO Expert Committee on Food Additives) flavor substance evaluations
    • GMP for food ingredient manufacturing (ISO 22000)

    Typical usage ratio

    • 0.001%–0.05% in finished food and beverage items; batch sizes and application rates set by regional flavor standards and sensory test outcomes

    Downstream process integration

    • Introduced during the controlled synthesis of aldehydic, musk, or green-note flavor ingredients, then included in F&F system blends for final product flavoring

    Final product types

    • Natural-like fruit flavor syrups
    • Ready-to-drink beverage flavors
    • Candy and confectionery flavors
    • Processed snack coatings and fillings

    3. Intermediate for Vitamin and Nutraceutical Synthesis

    Pharmaceutical and nutraceutical production facilities incorporate this material as a key intermediate in the synthesis of specific vitamins and carotenoids, particularly in pathways demanding sterically defined carbon chains. Our technical team supplies extended traceability documentation to support both local and export market requirements. Pharmacopoeial grade batches undergo spectral and chromatographic verification before customer acceptance.

    Industry compliance standards

    • EU Good Manufacturing Practice (GMP) for Active Pharmaceutical Ingredients (Directive 2001/83/EC, ICH Q7)
    • US FDA cGMP (21 CFR Parts 210/211)
    • Ph. Eur. / USP-NF specification (where applicable for intermediates)
    • ISO 9001 and ISO 14001 certified production processes

    Typical usage ratio

    • Process-dependent, typically 0.5–5% molar ratio relative to target vitamin or carotenoid output; optimized per synthetic route targeting purity and conversion efficiency

    Downstream process integration

    • Charged during semi-synthetic or total synthesis routes for C15 or higher-terpenoid vitamins, such as vitamin A acetate or structurally related carotenoids

    Final product types

    • Vitamin A supplements and premixes
    • Provitamin-enriched oils
    • Beta-carotene additives
    • Fortified food and feed formulations

    4. Fine Chemical Synthesis for Specialty Polymer Additives

    Chemical manufacturers use this compound to synthesize specialty additives that modify the thermal and optical properties of advanced polymers. The material reacts in condensation or copolymerization steps under tightly controlled conditions, providing extended chain length or tailored unsaturation to polymer backbones. All production lots meet strict purity and contaminant profiling to avoid detrimental effects on polymer performance.

    Industry compliance standards

    • ISO 14001 for environmental management during chemical processing
    • REACH registration (for volume and handling class)
    • OEM material compatibility standards for plastics (per downstream client or application)
    • RoHS Directive (2011/65/EU) for electrical/electronic polymer components

    Typical usage ratio

    • 0.2%–3% by weight in targeted specialty additives or prepolymer batches; fine-tuning based on compatibility and end-use performance testing

    Downstream process integration

    • Incorporated into copolymerization reactors for high-value polymer blending, often before final extrusion or molding

    Final product types

    • UV-stabilized engineering plastics
    • Thermochromic or photoreactive polymer films
    • Flexible coatings for electronics
    • Specialty elastomers with tuned pliability

    5. Precursor for Pheromone and Biochemical Marker Production

    Specialty life sciences firms apply the raw material in semiochemical synthesis, as a precursor for insect pheromones or biochemical markers in agricultural pest control. The process involves regioselective reactions to build target molecular species matching those found in nature. Manufacturers require traceable sourcing, high chemical purity, and low by-product risk, with thorough documentation to support regulatory submission for in-field use.

    Industry compliance standards

    • OECD Guidelines for the Testing of Chemicals (for field trial approval)
    • FAO/WHO International Code of Conduct on Pesticide Management
    • ISO 17025 certification for analytical validation
    • Local Ministry of Agriculture pest control substance registration (per application)

    Typical usage ratio

    • 0.1%–2% by mass in active pheromone blends, adjusted per trap dosage or biosensor calibration curves

    Downstream process integration

    • Fed into regioselective synthesis to generate species-specific pheromone analogues or biochemical marker systems prior to formulation into controlled-release devices

    Final product types

    • Sex pheromone lures for field traps
    • Chemical markers for pest monitoring
    • Behavior modifying agricultural formulations
    • Integrated pest management (IPM) products
    Free Quote

    Competitive (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Introducing (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One: The Manufacturer’s View

    Direct from the Factory: Bringing Innovation to the Fragrance and Flavors Industry

    In the field of aroma chemicals, few compounds have generated as much interest in recent years as (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One. This molecule, well-known among perfumers and formulators, offers an olfactory character that sets it apart from more common synthetic ingredients. Here at our manufacturing facility, we see the day-to-day impact this material has on creative work and industrial demand. Many customers in fragrance and flavor applications come to us looking for materials that can impart genuine warmth, complexity, and lasting character to their compounds. This keto-triene has proven to bring those sought-after qualities, backed by many years of research, engineering, and applied science.

    Production Quality Starts on the Factory Floor

    Our process focuses on achieving high purity and consistent isomeric profile, because even minor batch-to-batch deviations will alter aroma, threshold, and performance in final products. Raw materials matter at this level, and we select only refined precursors. Our staff monitor every synthesis step, not just relying on automation. The result—a clear, viscous oil with controlled volatility and stability, fit for formulators across the globe. Tanks run in clean, temperature-controlled rooms; analytical checks run in tandem with pilot-scale samples for every lot. These aren’t abstract quality claims. In our hands, (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One does not stay on a spreadsheet; it moves through glassware, reactors, and practical tests every week.

    Molecular Advantages: What Sets This Trienone Apart?

    Not every long-chain ketone serves the same function in scent creation. Many can overpower or fade out quickly in finished goods. The unique structure of (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One yields powerful green, fruity, and musky facets without harsh top notes or muddled backgrounds. Compared to other trienone isomers or closely related ketones, ours delivers a cleaner, more reproducible scent character, thanks in part to our control over double bond position and methyl group configuration. Professional perfumers often describe this ingredient as imparting a true "freshness boost" in both fine fragrance and functional goods, supported by persistent lift and radiance in applications as diverse as hair care and household cleaning.

    Expertise Rooted in Decades of Synthetic Chemistry

    Knowledge gained over decades shapes every batch that leaves our facility. Early work with homologous series and related terpenoids exposed us to myriad process pitfalls—byproduct formation, double-bond migration, loss of key isomer populations. We apply that experience here, choosing reaction conditions that steer away from common degradation pathways. Many customers approach us after discovering that poor isomer control from traders or rebuilders can alter fragrance balance and batch-to-batch performance. Our dedication to synthetic rigor sets us apart from outfits chasing volume over reproducibility.

    Modern Specifications by Chemists, for Chemists

    It’s no secret that industry standards have shifted in the last 10 years. Where a decade ago 80 percent purity offered access to most major applications, today’s buyers demand more than a label. Our in-process TLC and GC-FID oversight ensures a key target: at least 98 percent purity by weight, with typical isomer ratios well within ICH guidelines for reference standard compounds. Moisture, acidity, and color all play essential roles, so we test them with a battery of metrics developed in-house. These standards come not from arbitrary paperwork but from hard-won lessons in down-stream batch failures and real customer complaints.

    Handling, Storage, and Real-World Use

    Chemicals see rough conditions once they leave our gates—heat, time, mixing stress, and loads of co-formulants. We train our staff to anticipate actual user needs: oxygen exclusion, stable packaging, batch-specific storage guidance. Every drum and pail receives tamper-proof closures and inert gas blanketing, not just to satisfy some audit but because we’ve witnessed direct loss of quality at customer sites due to carelessness in transit. Even seemingly small details, like recommending storage at 15–25°C and away from direct sunlight, come from firsthand experience running trial blends and stability tests with customers who want to avoid waste or off-odors.

    End-User Insights: How Markets Respond

    Shortages in specialty chemicals bring pain up and down the supply chain. We remember the surge in demand after regulatory shifts on natural musk extracts. Brands needed a stable, ethically sourced molecule with a clean regulatory standing, and our (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One stepped in to fill the gap. Clients reported gaining not just product integrity but also better marketing flexibility, since the MSDS and REACH profiles allowed direct usage in E.U. and North American markets.

    Feedback from soap and personal care formulators often centers on ease of solubilization and the persistent freshness it brings to end products—qualities that separate this trienone from more volatile or less stable musk alternatives. Flavors teams point out the green-fruity undertones as being especially effective in apple, pear, and tropical profiles, where this ingredient rounds out artificial or muted fruity top notes. There’s a reason many flavorists and perfumers refer to it as a backbone ingredient: it fixes top notes and bridges base accords within both complex and minimalist blends.

    Comparative Outlook: Key Differences from Other Products

    People sometimes group this trienone with macrocyclic musks or linear ketones, but that misses the nuance. Macrocyclic musks tend toward powdery, laundry-like notes, while linear ketones lack the depth and clean finish this compound achieves. We see this difference amplified in performance testing. Macros lose lift in detergent matrices, and saturated ketones often resist emulsification or contribute lingering off-flavors. Our product, with its three isolated double bonds and methyl side chains, maintains clarity without dulling or muting more volatile co-ingredients.

    Customers sometimes experiment with structurally similar compounds, like our own in-house analogs with different methyl placement or chain lengths. Those often produce a waxier, more muted aroma in finished goods or run into regulatory limits due to impurity carryover. We use regular panel testing with professional noses and practical formulation tests—real soaps, body washes, flavor syrups—to confirm that our preferred model outperforms close relatives. Continuous investment in process optimization lets us tweak variables at scale, further cementing the organoleptic “clean, persistent freshness” that formulators seek.

    Supporting Clean Label and Regulatory Compliance

    Global rules and certifications continue to evolve, posing fresh challenges for manufacturers. Our regulatory and QA teams invest hundreds of hours each year navigating shifting E.U., U.S., and Asia-Pacific rules. Regular in-house screening for phthalates, elemental impurities, and residual solvents keeps our product clear of common red flags. We track every lot through a centralized ERP, which speeds up document supply for large multinational clients whose audits look beneath surface labels. Recent requests have included IFRA documentation, kosher/halal declarations, and full traceability from feedstock onward. Meeting those demands year-in, year-out has not been easy, but direct manufacturing ties let us control compliance from sourcing to bottling.

    Partnerships with End Users: Creating Value Beyond the Drum

    Chemicals gain value when they solve customer problems. Formulators reach out not for basic commodity musk or trienone, but for support through pilot projects, scale-ups, and troubleshooting batch complications. Some brands rely on our formulation lab to test the latest detergent bases or flavor/odor masking technologies before order commitment. Others ask us to advise on optimizing cost-in-use while keeping olfactory character intact. We respond with real-world formulations and test data, often sharing pilot samples and technical advice so teams can accelerate rollout to market.

    Our R&D and technical staff provide direct, hands-on support. They bring knowledge from years of navigating volatility, solubility, and stability challenges in highly regulated markets. Some customers have used our trienone to solve odor fade in baking applications, while others have integrated it into high-performance body care blends where off-notes from other ingredients present constant hurdles. Team-to-team collaboration pulls best practices out of the lab and into the manufacturing plant, shortening the time from brief to shelf-ready product.

    Sustainability and Supply Continuity

    Raw material sourcing is where sustainability comes to life. Over the last decade, we have transitioned away from early feedstocks with supply or ethical risk. Now, we use partners and verified vendors whose processes align with environmental mandates and local workforce protections. Our internal goal has been to reach a 95 percent renewable input baseline within the current business cycle—not because of external pressure, but because instability and short-term cost savings never deliver for us or our customers in the long run.

    Process waste minimization now runs alongside energy return monitoring and solvent recycling. By integrating up-to-date LC-MS checks for trace contaminants, we reduce on-site treatment loads and avoid rejected batches. Bulk logistics have shifted to reusable, sealed totes and rail delivery to major regional hubs, shrinking the carbon footprint per shipment. Our approach relies on tangible, measured steps rather than buzzwords—backed by performance audits and environmental reporting available for customer review.

    Innovation, Not Imitation: How We Stay Ahead

    The fragrance and flavor worlds change quickly, with trends and regulatory demands pushing deadlines and formula development ever faster. Instead of replicating what competitors ship, our team looks at predicted market swings, direct client feedback, and in-house panel findings. Last year’s investments in analytical equipment paid off, letting us reduce lead times as we monitored for isomeric drift and trace off-flavors at levels below one part per million. We have found that close attention to these “small” details prevents larger headaches when scaled products reach the consumer.

    New approaches to continuous process chemistry at our main plant now let us offer lead times as short as two weeks at commercial scale. Fast response matters: several clients reported recipe changes driven by consumer tests and retailer requirements with less than two months' notice. Our ability to tweak process settings, pilot recipes, and analytical screening side-by-side with customer benchmarks puts us in a unique position. These partnerships, grounded in technical trust, allow end-users to integrate our trienone rapidly and confidently.

    Challenges We Face: Real-World Problems, Real Solutions

    Like any specialty manufacturer, we run into challenges—raw material shortages, logistics bottlenecks, and the occasional regulatory surprise. There was one recent incident where a supplier’s feedstock contained an unexpected impurity, traced to changes in their own process upstream. Instead of hiding behind paperwork, we pulled product, sent technical bulletins, and worked with affected customers directly to replace lots and reset application tests. Those open responses, though hard at the time, saved clients significant time and money, earning long-term trust.

    Sudden regulatory or labeling changes remain a persistent hurdle, especially as consumer-facing goods land on thousands of retail shelves worldwide. To stay ready, our compliance group scans trade bulletins, submits advance notifications to authorities, and reserves production capacity for any supply recall or re-qualification runs. Our internal database—updated after every new incident—tracks not just composition, but batch history and corrective action sequences. Customers ask for transparency as regulations hop from voluntary to mandatory; we have found that proactive information-sharing often prevents lost sales and production delays.

    Looking Forward: Sustaining Value in a Crowded Marketplace

    Buyers and formulators today face a market with more choices than ever, but not all sources guarantee the same level of reproducibility, compliance, or technical partnership. We keep our focus on actual user needs—consistency, well-documented regulatory support, and a willingness to troubleshoot alongside our customers. (5E,9E)-6,10,14-Trimethylpentadeca-5,9,13-Trien-2-One stands as proof of what a direct manufacturing partnership can bring: purity measured by rigorous chromatography, sensory profiles guided by real human panels, and a product pipeline able to adapt as industry demands suite new trends or regulatory regimes.

    With markets moving toward greater transparency and ingredient scrutiny, every batch produced carries not just the fragrance or flavor signature formulators expect, but also the invisible guarantee that every step—from raw material check through process monitoring and after-sales technical support—meets the highest expectations. Our investment in people, process, and knowledge translates to fewer batch failures, better S&OP outcomes, and direct technical partnership at every step. As a manufacturer, we measure our impact not in volume shipped, but in the value customers gain in their everyday, on-the-ground work. That story, for us, begins with a molecule—but endures through relationships, expertise, and the trust earned one drum at a time.