|
HS Code |
549666 |
| Cas Number | 80841-78-7 |
| Molecular Formula | C12H22O2 |
| Molecular Weight | 198.30 g/mol |
| Appearance | Clear colorless liquid |
| Odor | Fruity, floral, sweet |
| Purity | ≥98% |
| Boiling Point | 270-275°C |
| Density | 0.934 g/cm³ (25°C) |
| Flash Point | 107°C |
| Solubility | Insoluble in water; soluble in alcohol and oils |
| Refractive Index | 1.4530 (at 20°C) |
| Usage | Fragrance and flavor ingredient |
As an accredited O-Tert-Butylcyclohexyl Acetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amber glass bottle labeled "O-Tert-Butylcyclohexyl Acetate, 100g," with hazard symbols, safety instructions, and tightly sealed cap. |
| Shipping | O-Tert-Butylcyclohexyl Acetate is typically shipped in tightly sealed, chemical-resistant containers to prevent leaks or contamination. It should be transported in accordance with local regulations for non-hazardous chemicals. Packaging must protect from moisture and physical damage, and storage temperature should remain stable, away from heat or direct sunlight during transit. |
| Storage | O-Tert-Butylcyclohexyl Acetate should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and sources of ignition. Keep the container tightly closed when not in use. Store separate from oxidizing agents, strong acids, and bases. Ensure proper labeling and avoid exposure to heat, as the chemical may emit irritating or flammable vapors if heated. |
Applications of O-Tert-Butylcyclohexyl Acetate in Industrial ManufacturingO-Tert-Butylcyclohexyl Acetate is a specialty ester widely processed in several industrial sectors. Our direct manufacturing capability allows precise control over composition, purity, and supply stability, ensuring suitability for complex formulations and stringent downstream application protocols. Below, we outline the core industrial scenarios where this raw material is used, each with unique compliance, formulation, and processing details. 1. Fine Fragrance and Perfume CompoundingFragrance producers source O-Tert-Butylcyclohexyl Acetate for use as a specialty note modifier and fixative ingredient. Its high stability and pleasant, complex scent profile complement both natural and synthetic aroma blends. The compound integrates in high-shear mixing steps after solubilization with selected co-solvents. Consistent raw material quality supports batch reproducibility and fragrance intensity in finished perfumes. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
2. Fabric and Laundry Care FragrancesDetergent, softener, and laundry bead manufacturers apply O-Tert-Butylcyclohexyl Acetate for scent profile enhancement and lasting effect in textile care products. Its substantive character supports top-note and mid-note retention through washing and drying. The material enters fragrance oil compounds that are later microencapsulated or emulsified for detergent blending. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
3. Industrial Air Care and Deodorizer FormulationsFormulators of air freshener blocks, sprays, and diffusers depend on O-Tert-Butylcyclohexyl Acetate to provide a long-lasting, pleasant scent in commercial and institutional environments. Its stability under a range of temperatures and humidities makes it desirable for both slow-release and aerosolized systems. Quality monitoring includes batch-to-batch olfactory analysis and residual solvent tests. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
4. Cosmetic Creams and Personal Skin Care ProductsManufacturers developing personal care creams and lotions select O-Tert-Butylcyclohexyl Acetate to impart subtle but persistent fragrance. Integration occurs during the cool-down phase after emulsion, allowing the ester to maintain its full aroma attributes. Attention to allergen control and raw material traceability supports regulatory and customer audit requirements. Industry compliance standards
Typical usage ratio
Downstream process integration
Final product types
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Competitive O-Tert-Butylcyclohexyl Acetate prices that fit your budget—flexible terms and customized quotes for every order.
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Creating chemicals fit for exacting work in today’s world demands more than following recipes. Our perspective grows from daily experience managing all steps, from raw material selection through each batch’s finishing touches. Here, the focus turns to O-Tert-Butylcyclohexyl Acetate, a specialty ester that has risen in demand in perfumery, home care, and other applications needing soft, substantive character and odor stability. This isn’t just textbook discussion. It reflects relentless testing, troubleshooting, and a hands-on feel for shifts in real manufacturing environments.
Sometimes, people overlook the subtle role acetate esters like O-Tert-Butylcyclohexyl Acetate play. Colleagues who formulate fine fragrances tell us they depend on its long-lasting profile, which brings pronounced, creamy-woody notes that linger on skin or fabric. Unlike volatile top notes, this molecule sits deeper in a blend, adding persistent body and volume even under testing storage and use conditions.
With each batch, we observe its robust thermal and air stability. Seasoned perfumers visit our plant to check quality themselves, even putting material through accelerated aging side by side with structurally similar ester molecules. Off-notes or yellowing often develop faster in less refined products with looser controls, yet our proprietary purification has slashed batch-to-batch odor drift. Some global perfume brands reported shelf lives over two years with our product, in both fine fragrance and fabric softener matrices—no small feat in humid regions where instability can ruin reputation.
Chemical manufacturing rarely offers a cookie-cutter solution. Our O-Tert-Butylcyclohexyl Acetate stands out by the purity it achieves in regular production, routinely topping 98.5% by GC, with side products tightly minimized. We test for moisture, acid value, and color, but in practical terms, these tight controls actually show up in cleaner, more subtle notes when end-users dilute the ester into bases with other materials.
Several clients switched from generic grades after noticing unwanted metallic tangs or waxy, dull drydowns in their consumer panels. During QC checks, we saw the inferior lots often had high levels of free acid, aldehydes, or oxidized byproducts, common in process shortcuts or lax solvent recovery. Through both column purification and trace-metal management during synthesis, we’ve managed to keep sensory impurities out of our final ester streams.
Looking at the structure, the tert-butyl group on the cyclohexyl ring throws a shielding effect that can only come from careful atom placement. This not only pushes the molecule’s volatility lower, so it evaporates slower than lighter acetates, but it also adds bulk and body to the odor. Along with the acetate tail, these features translate into a smoother, more solid “backbone” for use in detergents, home fragrances, cosmetics, and softener capsules that need persistent scent delivery.
Through direct feedback and repeat analysis, we find O-Tert-Butylcyclohexyl Acetate outperforms alternatives like standard Cyclohexyl Acetate or Methyl Cyclohexyl Acetate where lasting power is key. Those simpler molecules drop off early, creating scent gaps in long-wear applications, a pain point pointed out by both brand formulators and end-users.
Lab trials performed on finished products, especially water-based sprays or high-alkali cleaning bases, highlight how less robust esters break down and lose their profile within months, often accelerated by sunlight or repeated user exposure. By contrast, the steric bulkiness of O-Tert-Butylcyclohexyl Acetate shields it from rapid hydrolysis and oxidation, preserving both scent and clarity through shelf storage and usage.
Demand for clean, hypoallergenic scent materials keeps ramping up. Consumers put a microscope on ingredient transparency and trace residues, so we focus our process tightly on eliminating residual solvents and side-reactive contaminants. Routine customer audits—sometimes unannounced—check assay values against published IFRA and allergen compendia, so we’ve grown comfortable meeting these high marks day after day. It’s more than a bullet point on a spec sheet: it sets our supply apart in contracts with multinationals who refuse risk from trace impurities in high-visibility new launches.
We regularly collaborate with downstream product teams on formulation troubles. For example, one global softener brand found that poorly stabilized ester grades led to faint acid odors after only six weeks, as hydrolysis and microbe activity accelerated in their storage tanks during warm months. After internal trials with our product, they reported odor neutrality holding steady through the entire projected shelf life, as measured by blind consumer testing and gas chromatography. Addressing these headaches costs us more in analytical fine-tuning, but it cements our reputation when reliability trumps cost savings in competitive consumer markets.
A finished fragrance doesn’t come together without a middle ground between volatility and fixative strength. O-Tert-Butylcyclohexyl Acetate finds a niche in providing a tenacious creamy-woody undertone that bridges top citrus or fruity notes to deeper woods, musks, and ambers. Master perfumers tell us this molecule enhances diffusion, keeps the overall bouquet balanced longer, and resists rapid evaporation that erodes performance on skin, hair, or fabrics.
A typical batch for fragrance application gets tested in both ISO-certified sensory panels and internal lab smelling sessions, where panelists keep close records of drydown profiles, sillage, and longevity in varying conditions. Only a handful of ingredients score as highly as O-Tert-Butylcyclohexyl Acetate for maintaining intensity past eight hours, often critical for premium eau de parfum lines aiming for customer loyalty in the luxury segment.
Functional fragrance teams working on non-beauty products—detergents, air care, fabric softeners—turn to this molecule for persistence in aqueous or harsh cleaning environments, where most fresh and floral notes simply vanish. We keep product consistency as our highest priority, so these same clients return with expanded order volumes, confident that future blends will always match previous ones in both sensory and analytical results.
On plant tours, visiting clients often walk through our esterification reactors and see firsthand the attention spent to limit hot spots, air ingress, and runaway byproducts. Unlike makers who solely focus on throughput, we favor stable, clean esterification at moderate temperatures, even if it means more frequent cleaning and tighter maintenance schedules. Sacrificing a bit of throughput keeps process fouling and color instability from becoming recurring customer complaints. Some newcomers have been surprised to see how small tweaks in catalyst quench or vacuum sweeps can halve the amount of colored side products—a case study in the difference between textbook and shop-floor wisdom.
Years of fielding urgent troubleshooting calls tell us exactly where quality shortfalls show up. One home air-freshener brand faced instability problems with another supplier’s material, seeing bottle yellowing and sour off-odors after a four-month distribution cycle through warm, non-refrigerated logistics. By supplying them with our material and working together to validate stability under their actual shipping conditions, we restored both performance and their own end-user satisfaction rates, measured by shelf-life sales data with repeat customers.
While acetates as a broad class serve fragrance clients well, not all offer the same advantages. Cyclohexyl acetate, for example, evaporates faster and presents a crisper but shorter-lived odor profile, making it less ideal for products demanding slow release. Some opt for Hexyl Acetate or Dodecyl Acetate, which offer more fruit-forward or fatty-woody notes—yet these either prove too fleeting, lack the desired tenacity, or introduce cost and regulatory headaches where chain length or biodegradability becomes an issue.
Quality-focused manufacturers like us notice that O-Tert-Butylcyclohexyl Acetate, due to its highly branched, bulky structure, maintains a happy medium: high enough molecular mass for long-wearing persistence, but not so high as to render it waxy or difficult to solubilize in typical household applications. Repeated trials show that lower-quality or non-optimized esters stumble in concentrated laundry softeners, which require clarity and ease of dissolution, or in alcohol-based perfumes where haze and shelf-life failures trigger costly recalls.
Our technical support team often runs deeper comparative volatility, hydrolysis, and oxidation testing than requested, so developers get a clear answer on what will work in sensitive or cutting-edge launches. Unlike straight-chain or unbranched esters, our product resists phase separation and skip-note development in storage. End-users notice less scent fade and greater comfort, especially in regions with demanding climates where product failures draw rapid pushback.
Direct interaction with customers, rather than just reading technical summaries, has shaped how we refine each production run. We adjust the process each season as raw material batches or plant conditions shift, yet always confirm downstream performance before signing off bulk runs. This feedback loop stops us from relying solely on laboratory conditions, keeping our material competitive as category standards change and customer preferences shift.
Brands in both developed and emerging markets tell us they value not only consistent quality, but also transparency regarding raw material origin and processing steps. Increasingly, regulations worldwide push for full traceability, and early compliance with this demand means less paperwork headaches and fewer rejected shipments later down the supply chain.
Technical experts and innovation labs across the globe have used our in-house data—no gloss or omission—to guide their own cost-benefit decisions, moving away from products that brought unknown risk due to insufficient data on impurities or breakdown pathways. Every time we provide a COA or batch certificate, we do so in the context of actual real-world feedback, not just historical spreadsheets that overlook shifting sensory and technical specifications.
Manufacturers have to contend with tightening restrictions on allergens, VOCs, and trace impurities. Keeping pace means investing in upgraded purification, in-line monitoring, and validated cleaning procedures for reactors, tanks, and lines. Where some firms cut costs by running multiple products through shared lines, we isolate our dedicated ester trains, giving customers assurance against cross-contamination and batch-to-batch unpredictability.
The current focus in the market is not only scent and purity but also carbon footprint—energy and emissions per production run. Running reactors more efficiently or capturing process emissions matters not only for compliance but for the real sustainability numbers demanded by business leads and their own customers. We disclose these data points, alongside technical performance, knowing that long-term contracts now hinge on such transparency.
Raw material sourcing traces back to verified suppliers who certify no use of forced labor or restricted substances in their own upstream chains. For every ton shipped, we document chain-of-custody and regulatory compliance, streamlining both internal and external audits demanded by quality assurance teams worldwide. What looks like paperwork in some offices can spell the difference between regulatory stoppages and smooth shipment cycles that keep downstream manufacturers on track.
Each kilogram from our reactors reflects hard experience—hands-on troubleshooting, late-night re-runs, and constant exchanges with both local and international labs. From premium perfumers who need a creamy, enveloping musk anchor, to home care brands counting on stable, non-fading notes through all seasons, our product stands up under direct scrutiny.
No ingredient works in total isolation. We welcome technical partnerships to push performance higher, testing co-formulants and delivery technologies that further stretch the shelf life, solubility, and performance standard for the ester class. Every shared formula or workflow highlights a different challenge: sticking in capsules, yellowing in hot warehouse months, fading in five-week scent strip panels. Our continued commitment to iteration, from molecular structure through finished product deployment, draws directly on this finished-product awareness.
O-Tert-Butylcyclohexyl Acetate isn’t about chasing trends or one-off sales. For modern quality-centric chemical manufacturing, it’s about building a grade that survives real-world scrutiny in every context—be it fine fragrance, consumer laundry, or next-generation air care. From facility audits to bench-scale pilot tests and full production monitoring, the lessons learned through honest feedback shape every decision, batch, and technical promise we make.