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Cis-Selinen-4-Ol

    • Product Name Cis-Selinen-4-Ol
    • Alias Cis-Selinen-4-ol
    • Einecs 635-472-5
    • 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

    102151

    CAS_Number 19870-46-3
    Molecular_Formula C15H26O
    Molecular_Weight 222.37 g/mol
    IUPAC_Name (3R,4S)-4-Isopropyl-1,6,6-trimethyl-3,4,5,6,7,8-hexahydro-2H-naphthalen-3-ol
    Appearance Colorless to pale yellow liquid
    Boiling_Point 285°C
    Density 0.94 g/cm3
    Refractive_Index 1.495 - 1.505
    Odor Woody, earthy
    Solubility Insoluble in water; soluble in alcohol and oils

    As an accredited Cis-Selinen-4-Ol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Cis-Selinen-4-Ol is packaged in a 25g amber glass bottle with secure screw cap, labeled with chemical details and safety information.
    Shipping Cis-Selinen-4-ol is shipped in sealed, chemical-resistant containers to ensure stability and prevent contamination. The chemical is stored under cool, dry conditions and protected from light. Shipping complies with all regulations for organic compounds, including proper labeling and documentation. Safety data and handling instructions accompany each shipment for safe transportation and storage.
    Storage Cis-Selinen-4-ol should be stored in a tightly sealed container, protected from light and moisture. Keep it in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible materials such as strong oxidizers. Avoid prolonged exposure to air, and ensure proper labelling. Refrigeration is recommended to maximize shelf life and maintain chemical stability.
    Application of Cis-Selinen-4-Ol

    Applications of Cis-Selinen-4-Ol in Industrial Manufacturing

    Cis-Selinen-4-Ol is a high-purity sesquiterpene alcohol produced through selective plant extraction and refined isolation. As a manufacturer, we support industries with strict source control, technical documentation, and reliable quality for each sector detailed below.

    1. Fragrance Compounding for Fine Perfumery

    Fragrance houses use this ingredient for its woody, herbal, and slightly spicy aroma profile in mid to base notes. Strict formulation controls mandate technical consistency and low allergenic potential. Processing includes cold blending with other aroma chemicals and stabilization under inert atmosphere to avoid oxidation during storage. Perfumeries require detailed supply chain documentation and compositional traceability for IFRA compliance.

    Industry compliance standards

    • IFRA Standards (current amendments)
    • EU Cosmetic Regulation (EC) No 1223/2009
    • REACH registration (EC) No 1907/2006
    • Allergen declaration per SCCS/1459/11

    Typical usage ratio

    • 0.05%–1.0% in fine fragrance concentrate depending on desired olfactive impact; perfumers adjust loading according to note persistence and product safety assessment.

    Downstream process integration

    • Added during concentrate compounding stage prior to alcohol dilution; inert gas layers used in tank transfer to preserve aroma integrity; stored in amber glass or stainless steel to prevent polymerization.

    Final product types

    • Eau de parfum
    • Eau de toilette
    • Luxury candles
    • Room sprays

    2. Aroma Ingredient for Flavors in Food & Beverage

    Specialty food and beverage manufacturers utilize the natural aroma character of this molecule for alcoholic and savory formulations. Food scientists rely on its GRAS status in certain jurisdictions for natural or “nature-identical” flavors. Direct blending techniques require strict dosage control, with batch release testing for residual solvents and contaminants. Traceability from plant raw material through final flavor blend is mandatory under food safety protocols.

    Industry compliance standards

    • FEMA GRAS Status (FEMA No. 3454)
    • US FDA 21 CFR 172.515
    • EU Regulation (EC) No 1334/2008
    • ISO 22000 Food Safety Management System

    Typical usage ratio

    • 1–15 ppm in finished beverages or savory seasonings; flavorists fine-tune loadings based on matrix interaction and regulatory threshold levels.

    Downstream process integration

    • Incorporated during liquid flavor blending; homogenized into emulsions or dissolved into alcohol carriers before dosing into final product lines.

    Final product types

    • Gin, botanical spirits
    • Herbal liqueurs
    • Savory snack seasonings
    • Complex food essence preparations

    3. Functional Ingredient in Personal Care Formulations

    Personal care manufacturers incorporate this alcohol for its sensory and antimicrobial attributes in selected fragrance-driven hygiene products. Formulating chemists strictly evaluate compatibility with surfactants and emulsifiers to ensure product stability. Only analytically proven batches enter GMP-compliant production to minimize batch deviations and consumer risks. Microbial challenge testing verifies the final antimicrobial function, and compliance with cosmetic directives is strictly auditable.

    Industry compliance standards

    • EU Cosmetic Regulation (EC) No 1223/2009
    • ISO 22716 (Cosmetic GMP)
    • China GB 7916-1987 (Cosmetics Hygienic Standard)
    • Preservative challenge test validation per ISO 11930

    Typical usage ratio

    • 0.02%–0.2% depending on required olfactory note and preservation profile; lower limits apply for dermatitis-safe certified products.

    Downstream process integration

    • Added to aqueous or oil phase during formulation compounding; emulsification at 30–50°C ensures homogeneous integration; filled under filtered positive pressure in controlled environments.

    Final product types

    • Premium soaps
    • Liquid handwash
    • Shampoo and conditioners
    • Facial cleansers

    4. Active Agent in Botanical Pesticide Formulations

    Agrochemical formulators employ this sesquiterpene alcohol for its insect-repellent and plant-protectant effects in biobased crop sprays. Precise weighing and solubilization into carrier solvents maximize efficacy while limiting plant phytotoxicity risks. Consistent active purity and absence of banned residues are required for marketing authorization. Registration dossiers must include field residue data and ecotoxicological safety assessments per the local agrochemical legislation.

    Industry compliance standards

    • FAO/WHO specifications for plant protection products
    • EU Regulation (EC) No 1107/2009 (placing plant protection products on the market)
    • US EPA FIFRA Standards
    • OECD Principles of GLP

    Typical usage ratio

    • 0.5%–2.5% by mass in formulated pesticide concentrate; agronomists select application rate based on crop and target pest population density.

    Downstream process integration

    • Pre-mixed with botanical extract carriers, then diluted for field application; processed in closed-system mixing to ensure operator safety; stored in UV-protected drums to maintain stability.

    Final product types

    • Herbal insecticide concentrates
    • Crop spray emulsions
    • Greenhouse fumigant solutions
    • Seed treatment coatings

    5. Precursors for Synthesis in Flavor & Aroma Chemical Manufacture

    Chemical manufacturers use this intermediate for controlled transformation to specialty aroma molecules and chiral derivatives. Route design considers complete conversion, minimal side-product generation, and maximum yield under catalytic conditions. Quality assurance includes in-process NMR and GC-MS analysis for structural verification. Downstream customers require certificate of analysis (CoA) to fulfill food, fragrance, or cosmetic regulations at molecule-specific levels.

    Industry compliance standards

    • ISO 9001:2015 (Quality Management for chemical synthesis)
    • FSSC 22000 for food-grade intermediates
    • REACH substance registration
    • Hazardous chemicals licensing according to product class

    Typical usage ratio

    • Variable, ranging from equimolar loading in reaction to excess according to process scale-up; optimization based on downstream target yield during pilot validation.

    Downstream process integration

    • Enter batch or continuous reactor after pre-purification; followed by catalytic transformation, solvent work-up, and distillation.

    Final product types

    • Nature-identical sesquiterpene derivatives
    • Specialty aroma chemical building blocks
    • Chiral auxiliaries for pharmaceutical synthesis
    • Value-added food flavoring substances
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    Certification & Compliance
    More Introduction

    Cis-Selinen-4-Ol: A Closer Look from the Manufacturer’s Perspective

    Introduction to Cis-Selinen-4-Ol

    Cis-Selinen-4-Ol has earned its place among sesquiterpene alcohols through its nuanced profile and reliable performance in flavor, fragrance, and specialty chemical formulations. As a team that oversees every facet of bringing this molecule from synthesis to delivery, we witness the journey of each batch. There are no shortcuts in our approach—from selecting raw materials through to purification, we anchor our process in documented evidence and traceability, recognizing the responsibility that comes with supplying a substance that enters value chains from fine fragrance to complex industrial intermediates.

    Model and Specifications: What Stands Behind the Name

    Manufacturing Cis-Selinen-4-Ol is not only an exercise in chemistry but also in precision. Our product emerges through distillation and selective hydrogenation routes, producing the cis-isomer in an enrichment above 97%. This distinguishes it in olfactive profile and chemical purity. Our specifications, documented through in-house chromatographic data, maintain strict controls on secondary isomers, delivering a product as close as possible to a single molecular identity.

    Every lot undergoes GC-MS and IR assessment, confirming the integrity of its sesquiterpene backbone and the absence of non-target volatiles. Water content stays below 0.3% measured with Karl Fischer titration. Color, a frequent indicator of stability, is kept in check thanks to our post-synthesis refinement—what leaves our dock has a pale, almost water-like clarity. Residual solvents barely show up in test reports, always far below regulatory thresholds. We believe there's no point waiting for a regulatory recall when process control eliminates problems in advance.

    Breadth of Application: Manufacturing Insight on Usage

    Perfumers and flavorists seek out Cis-Selinen-4-Ol for its woody, floral character with hints of violet leaf and celery seed. It doesn’t overwhelm, but it adds structure and depth to blends where aging-wood and green nuances bring value. Our clients in the fragrance industry often ask for advice on dosage and stability—based on our analytic feedback and hands-on trials, it holds up without polymerizing or yellowing during storage. Natural isolates can swing wildly in olfactory behavior, so the high-purity synthetic variant often takes precedence for creative consistency. Soap and detergent formulators also encounter fewer formulation hurdles compared to using raw or impure selinane distillates.

    Some ingredient buyers request Cis-Selinen-4-Ol as a reference material for regulatory compliance, especially under IFRA and REACH guidelines. The documented analytical fingerprint that comes with our shipments shortens their audit process. We have seen the volume of inquiries grow in the aromatherapy and personal care sectors, as the ingredient slots smoothly into terpene-rich blends supporting wellness narratives without introducing instability into water-based formulations or emulsions. No batch leaves the plant without assurance that it will remain true to character, whether it ends up in fine fragrance bases or health and beauty launches.

    Differences from Other Similar Products—Manufacturer’s Perspective

    Cis-Selinen-4-Ol’s relation to other sesquiterpene alcohols calls for clear distinction. Isoforms often share some structural overlap but diverge quickly in behavior under formulation stress and olfactory evaluation. Chemically, the cis-isomer delivers a more harmonized, fresh greenery that does not edge toward overly herbal or woody dryness seen in trans- counterparts. The trans-form can carry a more assertive bitterness and less volatility, often leading to a heavier note that persists in mixtures where subtlety is required. As a supplier, we maintain small pilot stocks of several isomers for clients to try side by side. The feedback reinforces our own observations: cis-selinenes work better in lighter profiles, and achieve softer diffusion in candles, room sprays, and luxury toiletries.

    Many early stage perfumers approach selinenols thinking they are interchangeable, but application testing reveals otherwise. In soap applications, Cis-Selinen-4-Ol remains stable to saponification, where other positional isomers may degrade or shift aroma over shelf life. High-performance detergents and industrial cleansers with oxidizing chemistries barely affect our product, while natural or mixed selinenol fractions brown or separate under similar stress. Observing these patterns directly in application partnerships, we share documented stability datasets with customers so their lab teams aren’t starting from scratch. Fewer surprises mean smoother product launches for them, and greater confidence in recurring orders for us.

    Manufacturing Process and its Direct Effects on Quality

    We take pride in owning every step of transformation—from the start with selected farnesene-rich feedstock, most sourced local to our facility, through successive distillations and hydrogenation runs. The people on the line understand how a small deviation in temperature or catalytic loading shifts the product out of spec, costing time and resources in rework. Years ago, we relied on semi-batch processes with higher energy footprints, but improvements in reaction control and in-line analytics upgraded yield and purity. The result is a reduction in energy use per kilo, documented through yearly site audits, with output tracking to every operator and shift.

    We committed early to eliminating any non-compliance with environmental and workplace standards. Our solvent stripping and gas scrubbing units are designed above local regulation—our chemical engineers built in margin for safety and sustainability. The product carries a chain of custody all the way from initial feed, through finished bottle-tested lots. Sometimes this means longer lead times, but in exchange, our partners count on what’s inside every drum. Feedback from downstream users backs up those choices, with fewer returned lots for odor deviation or unanticipated reactivity.

    Real-world User Experience: Challenges and Solutions

    We keep lines of communication open with each brand builder, technician, or creator using our Cis-Selinen-4-Ol. A recurring discussion topic touches on stabilization and long-term shelf life under various storage conditions. Some clients haul intermediate fragrance blends through high-heat or high-humidity warehouses. Others need assurance that trace elements from packaging materials won’t skew the profile at end use. To address these, we’ve established a program where sample bottles age under simulated climate zones. Monthly analytics from these bottle pulls inform tweaks—sometimes needing improved closure liners, sometimes a silica gel pack to combat humidity drift.

    Production scale plays another role. Artisanal formulators often purchase in small packs and need direct advice on mixing, dilution, and compatibility with natural extracts. We spend time walking through real tests carried out within actual base matrices—not just theoretical blending ratios, but practical challenges like haze formation or scent flattening in alcohol-based or water-heavy applications. For manufacturers at larger scale, bulk delivery safety, drum seal integrity and validated cleaning protocols at tanker level all matter to keep the product true to its promise.

    Supporting Claims with Real Data

    We believe knowledge grows best through transparent record sharing and establishment of upfront quality baselines. Certificates of analysis sent with every order include not only purity and physical properties but also recent batch-specific odor panels compiled from our in-house evaluators. In solving a scent deviation reported by a legacy client, referencing three months of GC-MS profiles pinpointed trace oxygen ingress. This confirmed a cap supplier’s seal batch was faulty, leading us to audit every closure before the next shipment. That practice now standardizes shipping protocols for all clients, reducing incidence of cross-contamination.

    Our work with research partners extends to deeper chemical understanding—such as mapping out minor impurity evolution during long-term storage, or documenting volatility in different blend matrices. This attention to supporting facts, over claims, allows us to reconcile client sensory data with chemical analytics. Our technical bulletins draw from these findings, so no one is left guessing about best use case or foreseeable shelf life scenarios. It is this fact-based approach that cements trust with our community of users.

    Potential Solutions to User Challenges

    Some challenges seem inherent to terpene chemistries—a notable one is the tendency for self-polymerization in exposed air or under light. We responded by reformulating our stabilization protocol, incorporating extra steps for micro-filtration and inert gas blanket before product fill. Customers who’d previously reported minor instability posted notably fewer complaints after switching to the upgraded version, confirming the benefit of field observation-driven process tweaks.

    Preserving the character of Cis-Selinen-4-Ol in blends with highly aggressive bases, such as in bleach or peracetic acid formulations, requires more than just chemical purity. We run parallel aging trials in relevant conditions, openly sharing outcomes with client development labs. This helps direct formula modifications, like adjusted dosing or custom-built encapsulates, that protect the molecule’s integrity on the shelf or through cleaning cycles. Our team is ready to discuss formulation techniques proven effective, rather than just point to the product specification. By documenting method and outcome together, we give partners the practical tools to resolve recurring hurdles.

    Commitment to Responsible Manufacturing and Transparency

    Yearly, we review how our production aligns with regional and international guidance, both from an environmental and a safety perspective. Audit teams—not only from inside but visiting quality assurance organizations—sit alongside our chemists to trace every batch. Any improvement shown to reduce waste, water use, or emissions gets moved into the next run. Staff are empowered to halt a process should metrics slip, and these cases are logged as part of our quality story. Instead of waiting for complaints or relying on marketing gloss, we solve issues alongside the people who know the plant best.

    Our open policy invites onsite review of operation for long-standing industry partners. We believe few things develop trust like seeing your own blend ingredients made in real time, viewed through the lens of E-E-A-T (Experience, Expertise, Authoritativeness, and Trustworthiness). The chemical industry rightly faces scrutiny, and showing our work encourages accountability from both sides. We benefit as much from external questions as partners do from our transparent reports; every well-documented process change speaks more than a shelf full of sales brochures.

    Distinctives That Set Our Cis-Selinen-4-Ol Apart

    Meeting technical specifications is part of daily workflow, but distinguishing product quality involves recognizing real-world variables. Our lot-tested Cis-Selinen-4-Ol functions in both luxury fine fragrance and cost-driven cleaning bases—clients use it not because they need to but because performance proves out in their applications. The confidence to stake their brand identity on an ingredient reflects a level of trust earned batch after batch.

    Differences extend beyond purity or olfactive profile. Our technical support draws from cumulative plant and customer experience, not disconnected paperwork. We maintain a database of application feedback, which we reference in every troubleshooting session. If a soapmaker in Europe struggles with fragrance fade, and a flavor innovator in East Asia contends with off-notes, our support team links shared learnings—providing adjustments that work in practice, not just in theory. We learn as much through these exchanges as our clients—this is the feedback loop that refines our manufacturing and R&D strategies.

    Looking Forward: Industry Evolution and Innovation

    The specialty chemical world rarely stands still. Trends toward natural sourcing, green chemistry, and ever-more-stringent regulatory oversight push manufacturers to rethink every aspect of production. We see these changes as an opportunity: not only to achieve clean compliance records, but to chart new, less resource-intensive synthesis routes. Great chemistry stands or falls on data—from pilot runs through to end use, only reproducible and clearly evidenced processes hold up under scrutiny.

    Our R&D teams closely watch for every emerging demand, whether for a new olfactory application or a compatibility improvement with a next-generation emulsifier. By investing in both in-house analytics and third-party validation, we've found ways to embed learning back into everyday practice. No change is made untested, and no dataset is written off without follow-through in real-world scenarios. The clearest path to future success—ours and our partners’—runs through shared accountability, measured improvement, and a refusal to rest on reputation alone.

    Conclusion

    From the start, our focus has remained on traceable, evidence-backed, and transparent production of Cis-Selinen-4-Ol. By connecting daily practice with end-user feedback, we translate chemical expertise into ingredients that deliver not only on paper but in laboratories, factories, and final products. This hands-on, iterative approach gives manufacturers, creators, and consumers alike confidence that each order meets the demands of a changing industry while holding to the same foundation: deep experience, documented expertise, and continuous improvement grounded in fact.