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HS Code |
769786 |
| name | Cis-Muurola-3,5-Diene |
| molecular_formula | C15H24 |
| molecular_weight | 204.35 g/mol |
| CAS_number | 27377-30-8 |
| IUPAC_name | 1,4-dimethyl-7-propan-2-ylcyclodeca-1,4-diene |
| appearance | Colorless liquid |
| density | 0.876 g/cm³ |
| boiling_point | 262-264°C |
| refractive_index | 1.4900 - 1.4950 |
| chemical_class | sesquiterpene |
| solubility | Insoluble in water, soluble in organic solvents |
As an accredited Cis-Muurola-3,5-Diene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Brown glass bottle labeled “Cis-Muurola-3,5-Diene, 1 gram,” with hazard symbols, CAS number, and manufacturer’s information clearly displayed. |
| Shipping | Cis-Muurola-3,5-Diene is shipped in sealed, chemical-resistant containers to ensure safety and prevent contamination. The substance should be kept away from heat, sparks, and open flames during transit. It must be handled following standard regulations for organic chemicals, with appropriate labeling and documentation as required by international shipping guidelines. |
| Storage | Cis-Muurola-3,5-Diene should be stored in a tightly closed container, kept in a cool, dry, and well-ventilated area away from direct sunlight and sources of ignition. Protect it from heat, oxidizing agents, and moisture. Proper labeling is essential. Recommended storage temperature is typically 2–8°C or as specified by the manufacturer’s guidelines for maximum stability and safety. |
Applications of Cis-Muurola-3,5-Diene in Industrial ManufacturingCis-Muurola-3,5-Diene serves as a specialty terpene utilized in select downstream sectors due to its unique molecular properties and olfactive profile. As an original producer, we supply high-purity grades that consistently meet the technical and regulatory demands of advanced manufacturing operations. The following application scenarios highlight critical use-cases, relevant compliance frameworks, preferred formulation ranges, downstream process details, and final product categories for this ingredient. 1. Fragrance Ingredient for Perfume and Air Care FormulationGlobal fragrance compounding companies incorporate our material into high-value fragrance concentrates to achieve woody and balsamic notes in finished perfumes and air care solutions. Chemists rely on its tenacity and compatibility with other fixatives when tuning signature accords, especially for luxury fine fragrances, high-end candles, and automotive air fresheners. The ingredient enters proprietary blending procedures where strict batch-tracing and olfactory consistency remain critical, addressing both performance and global safety standards in functional scent systems. Industry compliance standards
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2. Flavor Intermediate in Food and Beverage Aroma CompoundsDownstream flavor blending companies exploit this sesquiterpene’s mild spicy and woody character for specialized flavor systems, particularly in beverage, chewing gum, and confectionery sectors. Flavorists add it to compounding tanks after regulatory review and allergen risk analysis, particularly for flavors labeled as “natural identical” in key markets. Strict sensory evaluation and batch compliance are validated per international food additive regulations, with the material restricted to analytical-grade purity for ingestible goods. Industry compliance standards
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3. Analytical Reference for Natural Product Research and QCAcademic R&D laboratories and quality control departments in botanical extraction and essential oils industries use cis-Muurola-3,5-diene as an analytical reference standard for high-performance liquid chromatography (HPLC), GC-MS profiling, and authenticity verification. This enables standardized quantitation of trace sesquiterpenes in essential oil authentication and adulteration studies, supporting documented conformance to industry monographs and pharmacopeial identity tests for natural ingredients. Industry compliance standards
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4. Intermediate for Synthetic Aroma ChemicalsAroma chemical manufacturers process this molecule as an active intermediate in sesquiterpene engineering to synthesize complex base chemicals. Multi-step catalytic isomerization, selective oxidation, or cyclization reactions are performed in closed reactors, producing bulk quantities of structurally-related aroma actives targeted for further hydrogenation or functionalization. Precise staging of the molecule is essential to control isomeric yields and downstream purity, with robust documentation to meet the traceability standards of the fine chemical sector. Industry compliance standards
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Competitive Cis-Muurola-3,5-Diene prices that fit your budget—flexible terms and customized quotes for every order.
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In specialty chemicals, demand often centers on nuanced differences – minute shifts in structure, reliability of supply, and purity standards. Cis-Muurola-3,5-diene stands out among sesquiterpenes for industries carving out high-value essential oil fractions, flavorings, perfumery bases, and advanced materials. As a chemical manufacturer, our perspective on this molecule isn’t filtered through layers of speculation or reselling. Years on the plant floor and familiar hands-on fine-tuning have taught us where differences show up, when purity matters beyond the numbers etched on a COA, and why process repeatability turns small molecules into trusted building blocks.
We produce cis-muurola-3,5-diene through controlled multi-step synthesis and isolation, not from generic crude extractions that see quality drift with seasons or harvest locations. Those working in flavor and fragrance applications notice the difference quickly: batch-to-batch aroma profiles stay consistent, and downstream formulations perform without unwelcome surprises. With every production cycle, in-process controls catch impulse variations before they are bottled up in a drum. Analytical methods such as GC-MS and NMR give us confidence, but the feedback from partners — a distiller’s nose, a perfumer’s blend stability chart — tell us even more about how our material moves through their processes.
Handling cis-muurola-3,5-diene calls for more than off-the-shelf analytics. We commit to a purity standard above 98% by GC, and focus every step on limiting structurally similar impurities. These might pass muster at lower price points, but they introduce unwanted odors, instability, and reactivity in precise applications. Labs we work with have tested competitor batches brought in from bulk traders and consistently find extra peaks lurking where ours stay clean. For every kilogram out the door, we keep reference samples and track corresponding lots, so troubleshooting — if ever needed — can rely on solid records, not guesswork.
Physical consistency matters too. Our product arrives as a clear, colorless to pale yellow liquid at ambient temperatures, free from suspended material. Storage tanks stay under inert gas to hold off oxidation; containers leave fully sealed. Independent testing over long-term storage periods shows minimal diene rearrangement or oxidation so users aren’t fighting a decomposition timeline. From shipment to end-use, color stability and aroma retention stay where customers expect. If there’s a lesson learned from years of dealing with natural variations and offcuts, it’s that predictable material lets chemists focus on creating, not correcting.
We see the pressure on supply chains for niche sesquiterpenes, and the temptation to go with short lead times or rock-bottom spot prices from unfamiliar sources. More than once, clients switched to our batches after finding that off-grade or blended material fouled reactors or muddied product specifications. These discrepancies don’t just show up in the end product – they derail entire runs, set back research timelines, and sometimes bring QC flags at a late stage. With cis-muurola-3,5-diene, the difference between a direct-from-manufacturer lot and a brokered shipment shows up under the microscope and in column performance. We internalize that risk, as our own teams use these molecules on pilot lines before they reach any outside partner.
Every production run of cis-muurola-3,5-diene receives close attention not just to spec numbers but to source raw materials and catalysts. We don’t chase shortcuts in solvent systems or purification simply to expand margin. Bad practice takes time to catch up with a supplier, but it always does. As a team rooted in chemical engineering, we design our process to meet modern expectations: non-chlorinated solvents, dedicated glassware to avoid cross-contamination, batch documentation ready for audit. These aren’t empty assurances – they reflect the daily discipline that, over many cycles, builds real trust in our product.
Cis-muurola-3,5-diene often gets lumped in with other diene-containing sesquiterpenes, but users draw sharp distinctions. Isomers like muurolenes and cadinenes, despite similar skeletons, shift physical scent properties; downstream polymerization behavior also diverges. Anyone synthesizing signature compounds in fine fragrance or fine chemicals sees that some impurities – like α-muurolene or cedrene derivatives – can impart woody off-notes or change volatility. Our isolation protocol uses high-resolution fractional distillation and multiple silica gel passes, not cheap cutbacks or pooled fractions. Every step targets removal of close relatives and oxidative byproducts, not just “good enough” coverage.
This attention is not theoretical. Years spent scaling from grams to kilograms taught us where fouling or off-note generation can sneak into a process. Overheating diene mixtures shuffles double bonds and pumps up hydrocarbon backgrounds that synthetic chemists later regret. Our reaction profiles are tuned by operators, not just automation, cutting off runs if vapor-phase analysis signals a drift. Post-purification, we measure isomeric purity down to 0.2%, far beyond typical commodity grades, and catalog side peaks for ongoing process improvement. Only material that meets these internal benchmarks bears our name.
Cis-muurola-3,5-diene travels mostly into two worlds: aromatics and advanced intermediates. In the perfume trade, the diene provides a fresh, nuanced woody note supporting heart and base accords. Blenders working with luxury lines respect the way cis-geometry holds tenacity without overpowering, letting floral or citrus heads linger before giving way to earthier undertones. Our partners have built signature notes around its unique scent, something inconsistent feedstocks simply can’t deliver.
Flavor houses value stability and consistency even more. Heat-driven degradation, commonly seen in coarsely processed material, generates harsh side tones unattractive to end consumers. Direct handling experience taught our team where supply chain shortcuts lead to off-tasting outcomes; we corrected those issues in our earliest pilot runs. Each year, feedback loops between food chemists and our plant floor refine process controls, ensuring flavor reliability across global runs and seasonal shifts.
Chemists synthesizing pharmaceuticals or specialty intermediates have reported that high-purity cis-muurola-3,5-diene dramatically improves yields in polyene cyclizations and reductive coupling steps. Unwanted conjugated isomers or oxygenated contaminants tank conversion rates and need expensive scrubbing steps. Our process, centered on direct fractionation and in-situ monitoring, means researchers spend less time troubleshooting at the bench. In several custom projects, manufacturers documented nearly 30% improvement in step-yields compared to semi-purified industry standard batches.
Our facility didn’t arrive at its current process overnight. Early years saw batch failures, off-color lots, and analytical puzzles that required starting over. Over time, root-cause fixes and continuous logging across every tank and line let us develop unique safeguards. A heat-exchange system moderates exothermic steps, limiting rearrangement and protecting the diene from polymerization. Process yield averages climbed, and problem lots faded. Skilled staff still sample and review fractions by hand, never outsourcing critical steps to contract labs or hoping third parties catch mistakes.
Downstream handlers notice the difference. Glassware cleans up quicker after reactions; automated dispensers no longer jam. Customers one step further down the supply chain, working in consumer goods or biotech, face fewer unexpected compliance checks. We match every batch certificate with archived reference material, sending out new runs only after comparative evaluation. Material integrity depends on this feedback loop – one neglected drum can undo months of careful manufacturing.
Clients, especially in regulated sectors, ask for proof. We understand that confidence rests on data-sharing and traceability, so every outgoing drum ships with full lot-level documentation. We routinely open our workflow to audit, offering third-party analytical checks and on-site process walkthroughs. Partners have toured our facility and watched the process, from charge vessels to finished packaging, confirming every stage aligns with what our certificates promise. If a property varies or a spec raises questions, we don’t hide behind intermediaries – our technical and production teams respond with direct answers, informed by hands-on involvement.
Regular participation in industry working groups and conferences reinforces the importance of verifiable, primary-source supply. Fragile global logistics and recurring counterfeit incidents have burned too many end users recently. By manufacturing in-house, keeping supply chain links tight, and never relabeling bulk imports, we protect both our reputation and customer peace of mind. We’re often asked to supply chain-of-custody details and rare isotope analysis to verify geographic and synthetic origin; our answer is always the same – transparency comes standard, not as an upcharge or a favor.
No modern chemical operation escapes the need for responsible sourcing and footprint minimization. Our raw input streams leverage renewably harvested biomass when possible, but only as far as those channels can deliver uncompromised feedstock. We have invested in solvent recovery, water cycle reuse, and energy monitoring across every significant step in our cis-muurola-3,5-diene line. These upgrades weren’t imposed by outside pressure; they grew out of seeing lost material and environmental costs firsthand, along with lessons learned from colleagues in green chemistry consortia.
Risk management extends to employee safety and surrounding communities. Odor control, exposure monitoring, and strict storage protocols don’t show up in marketing materials, but the people closest to the bench know they matter. Several times, we’ve halted expansion plans or retooled lines after noise or emissions flagged at fence-line sensors. Balancing high-purity output with solid process safety forms part of every shift’s agenda; shortcuts for higher throughput never trump these basics.
Continuous feedback cycles drive every production upgrade. Client audits sometimes spot weak points we missed in our documentation or delivery flow. Chemists using our diene in pharmaceutical R&D occasionally identify byproducts that barely touch accepted process purity – those notes spur deeper bench investigations and drive new isolation tweaks. Active listening, not just process polish, keeps us at the front of the curve.
Plant operators suggest solvent switches when waste spikes trend up; engineering teams pilot closed-loop condensation steps based on test batch energy profiles. These are direct responses, not compliance-driven or PR stunts. The people closest to cis-muurola-3,5-diene every day take pride in knowing their refinements ripple out into safer, more reliable applications around the world. Relationships forged through troubleshooting and honest data-sharing last longer than any short-term market cycle.
We don’t approach partnerships as anonymous vendors ticking off orders. Repeated, direct engagement with formulators, process chemists, and production managers has sharpened our team’s awareness of how much one molecule can influence downstream performance. Clients trust direct-from-the-source supply not for discounted pricing alone, but for predictable, open communication and technical support grounded in experience. If a change in our process or the global supply climate threatens to impact finished product quality, we let users know directly. The goal isn’t to retain business at any cost, but to preserve mutual reliability and technical clarity.
Our relationships with small-batch artisan perfumers and large industrial houses alike have grown through honest feedback – not overpromising, not pushing unsuitable lots, and never offloading problems to another link in the chain. Repeat users return not just for product, but for a process informed by years of troubleshooting and a willingness to adjust when real-world use uncovers new needs. If you require detailed spectral support or application-specific guidance, we connect you directly with formulating chemists and shift operators rather than generic support lines.
Manufacturing cis-muurola-3,5-diene is more than technical compliance or metric chasing. Generations in chemical synthesis have taught us that small departures from reference standards, overlooked by high-throughput brokers, can snowball into costly downstream headaches. Consistency, traceability, and process discipline are built into every step, reflecting what matters most to workers at the bench, supervisors troubleshooting a tricky run, and the end-users relying on a stable component for their critical applications.
We field questions ranging from formulation tweaks to shipping practices, and every answer draws from long-term plant experience. There’s no substitute for production staff watching batches move from vessel to analyzed fraction, or for technical teams pouring over chromatograms late into the night after a tough campaign. We know the value of direct manufacturer relationships: fewer surprises, stronger process confidence, and a commitment to proactive improvement. The strength of our cis-muurola-3,5-diene comes from this foundation — not as an abstract concept, but visible in every batch and every conversation with those who use it.