|
HS Code |
220687 |
| CAS_Number | 515-00-4 |
| IUPAC_Name | 2,6-dimethyloct-7-en-2-ol |
| Molecular_Formula | C10H20O |
| Molecular_Weight | 156.27 g/mol |
| Appearance | Colorless to pale yellow liquid |
| Odor | Floral, citrus, herbal |
| Boiling_Point | 218-222 °C |
| Density | 0.85 g/cm³ at 20°C |
| Refractive_Index | 1.462 - 1.466 at 20°C |
| Flash_Point | 94 °C (closed cup) |
| Solubility_in_Water | Insoluble |
| Main_Uses | Fragrance ingredient, flavoring agent |
As an accredited Cis-Myrtanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Cis-Myrtanol is packaged in a 100 mL amber glass bottle with a secure screw cap, labeled with safety and product details. |
| Shipping | Cis-Myrtanol is shipped in tightly sealed containers, protected from light and moisture. It should be transported at ambient temperature, away from sources of ignition, and in compliance with local, national, and international regulations. Appropriate hazard labeling and documentation must accompany the shipment to ensure safe handling and delivery. |
| Storage | Cis-Myrtanol should be stored in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as strong oxidizers. Keep the container tightly closed when not in use, and protect from light and moisture. Ensure proper labeling and use non-corrosive materials for storage. Follow relevant safety guidelines and local regulations for handling and storage. |
Applications of Cis-Myrtanol in Industrial ManufacturingOur factory-grade cis-Myrtanol supports a targeted range of high-value industrial and consumer product supply chains where purity, compliance, and process-fit are critical. Below are the primary industrial sectors in which our material drives specialized value, including detailed integration points according to industry standards, formulation ratios, production flow entry, and the actual finished goods manufactured downstream. 1. Fine Fragrance Compounding for Perfume HousesCis-Myrtanol supplies a distinct delicate freshness to top and heart notes in both luxury and volume-market perfume bases, supporting the demand for natural-lifting aroma profiles. Leading fragrance manufacturers rely on this molecule within tight performance and safety specifications as part of IFRA-compliant fine fragrance compositions, where it interacts with other aromatic alcohols and esters to deliver longevity and sensory character to branded eau de parfum and eau de toilette products. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Air Care and Home Fragrance FormulationHome care manufacturers incorporate cis-Myrtanol to impart a fresh-woody or pine nuance in room sprays, scented candles, diffuser oils, and air freshener bases. It is selected for consistent release properties and low allergen potential under strict VOC and safety regulations, supporting both mass and premium segments in home scenting applications. Analytical quality control ensures batch uniformity to minimize formulation drift across seasonal SKUs. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Flavor Ingredient for Chewing Gum and Oral Care ApplicationsWithin flavor houses, food-grade cis-Myrtanol is used for imparting nuanced pine, herbal, or mint-like notes to confectionery and mouth-freshening formulas, supporting global chewing gum and toothpaste OEMs. All applications must stay within food and oral-care maximums for fragrance substances and undergo toxicological reviews. Our production offers established traceability to satisfy trace element, purity, and batch uniformity requirements in food-contact use. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Cosmetics and Personal Care Ingredient SourcingMajor cosmetics manufacturers utilize this raw material as a fixative and modifier to customize scent tone and performance in rinse-off and leave-on products, particularly in sensitive-skin body wash, shampoo, and light body creams. Its usage focuses on enhancing olfactory differentiation without breaching skin sensitization thresholds. Material traceability and allergen management processes drive inclusion levels for both global and regional personal care launches. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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There are few raw materials in the world of flavor and fragrance manufacturing that offer the same unique characteristics found in cis-Myrtanol. Drawing from decades of hands-on production and formulation experience, it quickly becomes clear that certain molecules stand apart based on their purity, consistency, and sensory impact. Cis-Myrtanol, as produced through well-controlled hydrogenation and rigorous distillation steps, reliably delivers that punch—not simply as a fragrant building block, but as a substance that formulators trust on both the lab bench and commercial scale.
At our manufacturing site, we maintain strict quality controls throughout the production of cis-Myrtanol, using modern reactors and refining setups designed for oxygenated terpenes. Every kilogram that leaves our facility meets benchmarks for high assay content and precise optical rotation, typically found only through careful process design and years of operational knowledge. Cis-Myrtanol comes as a clear liquid, with a density and boiling range that match analytical standards derived from reference samples. The main component, (1S,2R,5S)-2,6-dimethyloct-7-en-2-ol, dominates the mixture with little room for isomeric impurities or residual solvents.
This focus on identity and purity helps guarantee not just regulatory compliance but also process predictability for clients. Over the years, batches have been sampled, tracked, and tested for appearance, odor profile, refractive index, and GC purity to confirm product lot-to-lot continuity. A clean GC trace, an unobtrusive water content, and a defined range for aldehydes and peroxides add another layer of assurance. All these measures feed directly into the bottom line for manufacturers who cannot afford disruptions or inconsistencies in their downstream blends.
Those who work daily with fine fragrances or functional aromas tend to reach for cis-Myrtanol not only for its uplifting, pine-fresh impression but also for the way it links top notes with heart and base layers. On its own, the material presents an odor that bridges the classic resinous cleanliness of pinene derivatives with a subtle soapy undertone, which stays surprisingly stable through elevated temperatures and in systems exposed to air. This makes it an obvious selection for perfumers building colognes, air care formulations, and even specialized flavors where a green, fresh character rounds out harsh terpenes or tired citrus notes.
In cleaners and personal care, cis-Myrtanol works differently from linear alcohols or typical monoterpene alcohols. Customers who require a solvent-resistant, long-lasting aroma often note that this product holds the core scent even in tough matrices like surfactant-heavy shampoos, liquid detergents, and water-based aerosols. Repeated feedback from production teams highlights the way cis-Myrtanol supports headspace volatility without introducing the overbearing bite found in high-aldehyde or lower-grade terpene products.
Hand-selecting the right aroma chemical often comes down to understanding both what’s available and what isn’t possible with more commoditized products. Geraniol, linalool, and other widely used terpene alcohols shine in certain floral and citrus bases, but their lower oxidative stability and tendency to yellow restrict their use in premium applications. Myrtanol—specifically the cis-isomer produced in our controlled plant—offers a profile that resists degradation both on the shelf and in finished blends. This not only limits the formation of unwanted by-products but slows color shifts in delicate products such as fine fragrances or clear home sprays.
An experienced formulator sees the difference immediately when comparing the persistence of a wooden or herbal accord strengthened by cis-Myrtanol against one based on more volatile, less pure aromatic alcohols. The material’s resistance to polymerization or acid-catalyzed rearrangement ensures more time for the subtle notes to unfold—an essential trait in both leave-on and rinse-off formats. Many customers with existing formulas report a clear performance gap when swapping cis-Myrtanol for synthetic linalool derivatives, noting greater staying power and less risk of sensory “holes,” even after long aging tests.
The difference in isomeric content, stemming from controlled hydrogenation and selectivity in production, underpins this stability. A mixture containing higher trans-isomeric content tends to bring a harsh, camphoraceous note, and also brings more pronounced volatility under shelf-life testing. Through adjustable reaction parameters and purification routes, cis-Myrtanol achieves higher proportions of the desired isomer and lower concentrations of off-odors that could muddy a delicate citrus or fougère build.
One long-standing challenge in terpene chemistry involves batch-to-batch consistency, where even minute changes in input material or reaction conditions can translate to noticeable product variation. Our scale-up teams invest significant resources in raw material sourcing and in-line analytics. Terpene-derived feedstocks, particularly from natural turpentine, vary by origin, so establishing trusted, verified growers and distillers upstream is a non-negotiable priority. We avoid reliance on low-grade supply chains, which can introduce contaminants or supply interruptions—an issue that many in the industry encounter with lesser-known brands or informal sources.
Another area where cis-Myrtanol differentiates itself from competitors involves environmental and regulatory considerations. In our facility, energy consumption and solvent recovery rates are tracked with direct feedback to operations planning, supporting a lower ecological footprint by reducing emissions and waste. Since certain fragrance ingredients fall under REACH controls or IFRA guidance, we maintain a cross-functional compliance team that monitors emerging safety data, screens incoming material for prohibited substances, and regularly reviews processing lines for cross-contamination. This keeps the product not just competitive for performance, but also current with changing global legislation.
Downstream producers often depend on reliable sources for specialty ingredients such as cis-Myrtanol. Small fluctuations in trace impurity levels or the presence of crystalline residues can trigger customer complaints or rework late in the supply chain. Over time, we have found that maintaining detailed process records, adhering to precise purification standards, and ensuring ample stock of all critical reagents goes far in reducing these risks. Many of our long-term partners cite our willingness to share batch data, chromatograms, and even sensory panel scores for each production lot, which builds confidence at each purchasing decision.
In our pilot labs, chemists regularly run side-by-side comparisons of market samples collected from different brands. These direct organoleptic and chemical benchmarks consistently show the strength of high-purity cis-Myrtanol. Subtle differences next to mass-market alternatives become apparent, revealing cleaner top notes and deeper green-citrus character. This attention to subtlety proves crucial for high-end perfumeries and contract manufacturers searching for reliable supplies with no risk of sensory drift.
Chemical manufacturing faces both local and global pressures. Weather events, logistics interruptions, or regulatory shifts can introduce unpredictability in terpenic raw materials. Our facility invests in multi-source supply agreements, safety stocks, and close relationships with regional logistics partners to help guarantee unbroken delivery. In past years, hurricanes or pandemic-era restrictions led to spikes in lead times for certain terpene derivatives. Our onsite storage and planning teams responded with round-the-clock shifts and targeted logistics adjustments, which let us keep filling orders while some competitors ran dry.
On the formulation end, new consumer trends in “clean label” and natural-inspired fragrances impose new hurdles and opportunities. With rising scrutiny on synthetic content, every process and constituent in our cis-Myrtanol line has undergone review—from waste water minimization to substitution of older catalysts with less hazardous alternatives. An experienced approach to traceability, documentation, and transparency leads to new collaborations with forward-thinking brands who value this level of openness. Our teams consult directly with customers to align product certificates, support audits, and streamline regulatory paperwork, making it easier to integrate cis-Myrtanol without barriers.
No chemical process stands still, and each year presents opportunities for incremental improvement. In our research division, chemists evaluate alternative hydrogenation catalysts and greener solvents, scrutinizing yield, selectivity, and waste output. Feedback from partner laboratories, plus direct discussions with customers, shape R&D priorities that go beyond standard industry benchmarks. Real-world trials often replace simulated aging chambers and short-run bench experiments, as the movement of cis-Myrtanol from raw ingredient to end consumer reveals nuances undetectable in basic testing environments.
Over the years, physicochemical data collated from pilot runs and commercial batches have pointed to new ways to optimize purification while maintaining the molecule’s signature freshness. Smaller particle absorption media, improved column designs, and automated temperature controls feed directly into practical gains: better purity, less batch-to-batch variance, and reliable odor strength.
Cis-Myrtanol’s range extends beyond traditional perfumery and air care. Technical specialists in our customer support team discover new uses as standards shift and consumers demand more nuanced, longer-lasting scents without resorting to controversial synthetics or banned chemicals. In high-performance coatings and inks, the compound’s oxidative stability underpins its gradual migration into uses once reserved for more basic alcohols. Professionals formulating insect repellents or advanced cleaning agents also appreciate the low volatility and ability to impart freshness without high skin or eye reactivity.
In direct competition with legacy flavoring agents and food-grade aroma chemicals, cis-Myrtanol’s fresh, pine-like note, combined with a lack of strong bitterness, gives it a role as a flavor modifier or softener, particularly in citrus and beverage emulsions. Over the years, our product development teams have supported these applications with detailed legal and toxicological documentation, ensuring customers feel confident about product safety and consistency from trial to full production scale.
Emergent markets such as “natural” household fragrances bring both regulatory scrutiny and opportunity for differentiation. Here, the traceability of the terpenic starting material, supported by thorough documentation and in-depth batch analytics, secures an edge against less reliable mass-market isomers. Third-party auditors and brand specifiers increasingly scrutinize purity data and trace levels of known sensitizers—areas where our product holds strong.
Handling hundreds or thousands of kilograms of cis-Myrtanol at a time brings practical realities that no paper spec can predict. Large-scale transfer operations highlight the importance of compatibility among processing lines, pump seals, and valve materials. Teams trained to recognize the impact of micro-contaminants in stainless versus glass-lined reactors continually test intermediate samples on the production floor. By minimizing temperature swings in heated tanks and storing product under nitrogen, long-term sensory integrity is maintained.
Few challenges match the complications that arise from inadequate drum washing or valve leaks in bulk shipments. Over many years, we have learned to train operators to flag even faint changes in color, aroma, or viscosity. Root-cause analysis teams investigate every complaint, and corrective action takes place quickly. This approach helps protect downstream customers from unscheduled plant shutdowns or reject batches.
For smaller users—fragrance blenders, application labs, boutique brands—cis-Myrtanol’s liquid state and low freezing point simplify repackaging or short-run blends. The filterability and rapid rinse-down characteristics of the finished product, when handled with clean processes, reduce cross-contamination and clean-out time in multi-purpose plants. All major issues flagged during bulk fieldwork feed directly back into training, procedure updates, and future plant design.
Long after regulatory documents are filed and product passes analytical release, the real test comes in the feedback loop from customers and on-the-ground partners. Our account managers regularly walk customer production floors to collect feedback, observe product integration firsthand, and discuss both technical and practical support needs. This relationship-driven approach helps us tune both existing and future batches to meet evolving needs—whether releasing a special lot for a flagship fine fragrance or adapting a standard batch to a new air treatment formulation.
A sense of professional trust builds through this process, replacing transactional thinking with shared problem-solving. Long-term partners who rely on our cis-Myrtanol regularly contribute application data, flag evolving market trends, and alert us quickly to any issues with solubility, aroma, or stability. These information exchanges, often backed by both formal sensory analysis and unvarnished real-world experience, guide us to improve more rapidly and keep valuable collaborations thriving.
Cis-Myrtanol anchors many of tomorrow’s fragrance and flavor launches, not only because of its robust technical profile—high purity, consistent sensory impact, well-documented toxicology—but also because of the flexible, responsive approach built into our manufacturing and supply. Technical development cycles continue, with targeted investments in greener processes, improved monitoring, and reduced time-to-audit. Market trends, from naturals and clean label to advanced multiphase consumer products, push us further and faster toward the next generation of oxygenated terpenes.
In this business, no technical solution succeeds without the operational expertise that sees products from first synthesis through to final application, every time. Our long-term approach with cis-Myrtanol reflects this reality: sustainable inputs, carefully tuned manufacturing lines, deep respect for end-user safety and product quality, and enduring partnerships built around shared objectives. Each lot delivered connects the tradition of careful chemical craft with the evolving demands of global fragrance and flavor markets.
Year by year, we continue discovering new ways to bring this unique material to market—listening to formulators and brand leaders, investing in operational reliability, and sharing what we learn openly with the partners who drive us to higher standards and broader horizons.