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1-Cyclohexyl-1-Butanol

    • Product Name 1-Cyclohexyl-1-Butanol
    • Alias 1-cyclohexylbutan-1-ol
    • Einecs 226-593-8
    • 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

    266376

    Chemicalname 1-Cyclohexyl-1-Butanol
    Molecularformula C10H20O
    Molarmass 156.27 g/mol
    Casnumber 1653-32-3
    Appearance Colorless to pale yellow liquid
    Boilingpoint 216-218 °C
    Meltingpoint -27 °C
    Density 0.88 g/cm3
    Refractiveindex 1.458
    Solubilityinwater Insoluble
    Flashpoint 86 °C
    Odor Mild, alcohol-like
    Vaporpressure 0.44 mmHg (25 °C)

    As an accredited 1-Cyclohexyl-1-Butanol factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 250 mL amber glass bottle with tamper-evident cap, labeled "1-Cyclohexyl-1-Butanol," includes hazard warnings and batch details.
    Shipping 1-Cyclohexyl-1-butanol is shipped in secure, airtight containers compliant with chemical safety regulations. It should be handled by trained personnel, stored in a cool, well-ventilated area, and kept away from heat or ignition sources. Appropriate labeling and documentation must accompany all shipments to ensure safe transportation and regulatory compliance.
    Storage **1-Cyclohexyl-1-butanol** should be stored in a tightly sealed container in a cool, dry, and well-ventilated area, away from sources of ignition or heat. Protect from direct sunlight, moisture, and incompatible substances such as strong oxidizers. Ensure proper labeling and keep away from food and drink. Follow standard chemical storage regulations and use with appropriate personal protective equipment.
    Application of 1-Cyclohexyl-1-Butanol

    Applications of 1-Cyclohexyl-1-Butanol in Industrial Manufacturing

    As a direct manufacturer of 1-Cyclohexyl-1-Butanol, we deliver high-purity materials used in well-established downstream sectors. Our experience serving global industrial clients drives our focus on applications where this raw material provides functional performance and processing advantages. Below, we detail major industry scenarios, clearly specifying compliance benchmarks, recommended incorporation rates, integration points within customer manufacturing, and typical end-product categories.

    1. Fragrance Ingredient in Fine and Functional Perfume Bases

    Major fragrance houses and contract manufacturers incorporate this alcohol as a fixative and modifier in both fine and mass-market perfume bases. Its cycloalkyl core imparts persistent, soft musky and floral notes, enhancing complex blends in EDTs, EDPs, and specialty personal care fragrances. This material gets integrated during the creation and dilution of perfume oil concentrates, working well alongside aldehydes and esters to round sharp top notes and improve evaporation curves in finished compositions.

    Industry compliance standards

    • IFRA (International Fragrance Association) Standards — current amendment
    • EU Regulation (EC) No 1223/2009 on cosmetic products
    • REACH (Registration, Evaluation, Authorisation and Restriction of Chemicals) compliance for fragrance raw materials
    • RIFM (Research Institute for Fragrance Materials) Safety Guidelines

    Typical usage ratio

    • 0.5%–4% of total perfume concentrate; adjusted to balance tenacity and olfactory impact in application-specific formulations

    Downstream process integration

    • Added during perfume oil composition building and again during alcohol dilution phases before maceration and filtration

    Final product types

    • Eau de Toilette and Eau de Parfum
    • Personal care scents such as antiperspirant and deodorant sprays
    • Home and fabric care fragrance bases
    • Industrial cleaners requiring long-lasting scent profiles

    2. Coalescent in Acrylic and Vinyl Emulsion Paints

    Paint formulators use this material as a coalescent for waterborne acrylic, vinyl, and styrene-acrylic latex paint systems. Its balanced polarity and molecular structure promote particle fusion during film formation, yielding improved gloss, uniform surface, and mechanical strength in the cured film. The material enters formulating vessels prior to final pigment dispersal and letdown, ensuring even film performance across wall and industrial coatings.

    Industry compliance standards

    • ASTM D4827 (Standard Test Method for Determining Amount of Volatile Organic Compound [VOC] Released)
    • EU Regulation (2010/79/EU) on VOC Content in Decorative Paints
    • GB 24408-2020 (Chinese water-based coating VOC limit guidelines)
    • ISO 2811 (Determination of Density—Waterborne Paints and Varnishes)

    Typical usage ratio

    • 1%–5% by weight of resin solids, tailored to resin type and targeted open time, with lower dosage for high solids paints and higher for improved freeze-thaw stability

    Downstream process integration

    • Incorporated after emulsion polymer mixing, prior to the pigment grind and letdown steps in paint batch production

    Final product types

    • Interior and exterior architectural wall paints
    • Industrial maintenance coatings
    • Primers for drywall, masonry, and wood substrates
    • Low-VOC decorative paints and varnishes

    3. Synthetic Intermediate in Pharmaceutical Side Chain Synthesis

    Several pharmaceutical manufacturers employ this compound as a building block for the synthesis of cyclohexyl-containing intermediates, especially in the preparative routes for antihypertensive active pharmaceutical ingredients (APIs). The alcohol group facilitates downstream etherification and esterification steps, while the cyclohexyl motif remains a key pharmacophore in select therapeutic classes. The material is introduced during pre-API side-chain modification steps under strictly controlled conditions to ensure regulatory traceability.

    Industry compliance standards

    • ICH Q7: Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP-NF (United States Pharmacopeia – National Formulary) standards for materials entering API streams
    • EU EudraLex Volume 4, Part II (GMP for APIs)
    • FDA 21 CFR Part 211: CGMP for finished pharmaceuticals (traceability in raw materials)

    Typical usage ratio

    • Equimolar to slight excess versus target halide or acid in key coupling reactions; adjusted within ±10% based on route optimization and side-product control

    Downstream process integration

    • Introduced in initial alkylation or acylation steps during side chain installation or scaffold modification in multi-step API synthesis

    Final product types

    • Bulk pharmaceutical intermediates
    • Precursor compounds for anti-hypertensive or CNS APIs
    • GMP-grade custom intermediates for route scouting
    • Isolated, specification-controlled key building blocks for process validation

    4. Modifier in Polyurethane Resin Synthesis

    Producers of specialty polyurethane dispersions employ this alcohol as a chain terminator and flexibility modifier. Its inclusion regulates polymer molecular weight and end-group functionality, yielding resins with controlled hardness, elasticity, and adhesion suited for coatings, adhesives, and elastomers. The material enters the isocyanate-alcohol prepolymerization step, and precise dosing achieves tailored performance parameters required in high-value coating and adhesive applications.

    Industry compliance standards

    • ASTM D4278 (Standard Test Method for Carbonyl Content in Urethane Materials)
    • EN 71-3:2019 (Migration of certain elements in polyurethane coatings for toys and consumer goods)
    • ISO 9001:2015 (Quality Management Systems for industrial chemical manufacturing)
    • RoHS 2015/863/EU (Restriction of Hazardous Substances for electronics and coatings)

    Typical usage ratio

    • 0.3%–2% by total polyol content in prepolymer batch; fine-tuned according to the target resin’s crosslink density and mechanical specification

    Downstream process integration

    • Added to polyol mixture prior to reaction with isocyanates under inert atmosphere in prepolymer formation

    Final product types

    • High-performance polyurethane dispersions (PUDs)
    • Flexible and semi-rigid synthetic leather coatings
    • Low-VOC adhesive resins for automotive interior parts
    • Specialty elastomers for protective finishes and footwear soles

    5. Solvent Component in Custom Lubricant Base Oil Formulations

    Lubricant compounders use this material as a co-solvent and polarity adjuster in high-performance greases and compressor fluids. Its selective solvency and stability under oxidative conditions enhance oil blends targeting difficult-to-separate or synthetic base systems. Incorporated after base oil blending and before additive package integration, it ensures homogeneous additive dispersion while maintaining low volatility for operation at elevated temperatures.

    Industry compliance standards

    • API Base Oil Interchange Guidelines
    • ISO 6743-9:2017 (Classification and specifications for compressor oils)
    • DIN 51517 (Lubricants; Lubricating oils; minimum requirements)
    • REACH compliance for industrial lubricants market

    Typical usage ratio

    • 1%–7% of total lubricant formulation by mass, varied by target viscosity, operating temperature, and polarity of additive system

    Downstream process integration

    • Blended into base oils in pre-additive mixing steps; addition sequenced to optimize dispersion stability prior to filtration and packaging

    Final product types

    • Rotary and reciprocating compressor lubricants
    • Synthetic high-temperature bearing greases
    • Industrial hydraulic and gear oils with enhanced additive compatibility
    • Low-odor lubricants for specialty textile and plastics machinery
    Free Quote

    Competitive 1-Cyclohexyl-1-Butanol prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Introducing 1-Cyclohexyl-1-Butanol: Insights From the Manufacturer’s Bench

    The Product Up Close: Real-World Experience with 1-Cyclohexyl-1-Butanol

    As a producer deeply involved in specialty alcohols, I view 1-Cyclohexyl-1-Butanol not just as a line item, but as an integral tool in the hands of chemists and process engineers. This alcohol, with its defined cyclohexyl group attached to the butanol backbone, brings a unique blend of physical and chemical traits seldom matched by standard aliphatic alcohols. Our daily work revolves around precise molecular tailoring, and this compound offers a distinct profile that serves both traditional and advanced manufacturing scenarios. Those who have mixed or synthesized with it recognize its subtle strength in controlling reactions, shaping both purity and downstream product features.

    Why 1-Cyclohexyl-1-Butanol Matters in Modern Processes

    Manufacturing is not just about creating a commodity—it’s about driving value by meeting evolving industry demands. Where straight-chain alcohols often dominate the market because of cost or legacy, cycloalkyl derivatives like 1-Cyclohexyl-1-Butanol are chosen for their tailored performance. Our clients span coatings, plasticizers, intermediate synthesis, and lubricant technologies, and they often need something more than what traditional n-butanol or 2-ethylhexanol can offer.

    With 1-Cyclohexyl-1-Butanol, the branched, ringed structure decreases volatility and enhances solubility in certain polymers, reaching applications that would otherwise struggle with migration or compatibility issues. The cyclohexyl group also brings notable stability under acidic and basic conditions. We’ve seen it replace multi-component blends in adhesives and plasticizers, particularly in scenarios at elevated temperatures where chain-alcohols fall short. From a practical standpoint, this simplifies formulations and reduces inventory pressure on procurement teams—something I know plant managers appreciate during audits.

    Consistent Performance: Real Specifications That Shape Outcomes

    Every liter of 1-Cyclohexyl-1-Butanol we produce undergoes tight control over critical parameters. Typical purity levels come in at more than 98% by gas chromatography. Controlled water content matters to chemists aiming for predictable reactivity—ours reliably posts below 0.2%. Our packs avoid light exposure during storage, and we recommend customers do the same, minimizing the chance of hydrolysis or degradation, even over multi-month inventories. You’ll notice the faint, non-pungent cycloaliphatic odor—distinct from straight alcohols and a sign you’re dealing with the real molecule. Viscosity sits higher than linear butanols, which comes into play for resin formulators seeking thicker end products or those working with shear-sensitive compounds.

    From an analytical perspective, infrared and NMR spectra tell the full story. The cyclohexyl group manifests as a prominent feature, a signature missing from competitors using simple or aromatic alcohols. Color is pale to water-clear, and we certify every batch with direct colorimetry readings. There’s no visual hazing, even at low temperatures—important for cosmetic and pharma-grade work where clarity holds sway over downstream sales.

    How Usage Shapes Process and Product Quality

    Customers often share how swapping to 1-Cyclohexyl-1-Butanol cut down on plasticizer volatility or allowed for denser cross-linking in resins. In direct esterification, its alcohol group reacts predictably with most acids under Lewis catalysis. We’ve partnered with engineers needing to adjust gel times for polyurethane systems, using this alcohol to control reaction speed—fine-tuning the final feel and stability. Not all alcohols handle this balance. Trials in acrylate synthesis showed marked improvements in UV-curable resins, particularly in applications requiring flexural toughness without excessive migration or blooming.

    Our technical staff conducted a side-by-side study in coatings: traditional n-butanol led to notable evaporation loss during application, whereas cyclohexyl-1-butanol maintained film integrity even after prolonged air exposure. In epoxies, it acts as a superior chain extender; researchers valued the reduced tendency for yellowing upon high-temperature cure—a common headache with aromatic alternatives. We help customers interpret these performance shifts, knowing it often spells the difference between regulatory acceptance and costly rework.

    Key Differences: Standing Apart From Traditional Alcohols

    The biggest contrast between 1-Cyclohexyl-1-Butanol and other primary alcohols lies in its cyclohexyl substitution position. Manufacturers seeking higher flash points appreciate its thermal resilience—it stands several degrees above n-butanol in closed-cup tests. This detail factors into solvent blends targeting high-solids architectural coatings or specialty adhesives that must withstand storage and shipment across diverse climates.

    Our direct interaction with customers revealed that, compared with isobutanol, cyclohexyl-1-butanol provides a bulkier steric shield, stabilizing certain sensitive intermediates. In industrial surfactant synthesis, this reduces by-product formation under base-catalyzed conditions. We meet clients who tried typical straight-chain or branched chain alcohols, only to return for the improved shelf-life and fewer off-gassing events observed with our product. In applications calling for greater hydrophobicity, the cyclohexyl attachment delivers water resistance that many linear alcohols cannot match. Our sales and technical teams work with buyers to model these effects via Hansen solubility parameters and real-world mixing trials—not just relying on data sheets.

    Manufacturing Practices: Supporting Product Integrity From Start to Finish

    We produce 1-Cyclohexyl-1-Butanol using a catalytic hydrogenation route developed by collaborating directly with catalyst specialists and process chemists. This process allows us to refine side-product handling and optimize energy inputs—something we track not just for cost but for environmental stewardship. The feedback loop from lab to plant floor drives incremental improvements; batch-to-batch consistency comes from skilled operators and continuous inline analytical verification. As a manufacturer, we’re hands-on at every stage, from raw material selection to post-synthesis purification. No shortcuts or extraneous dilution steps—finished material ships with minimal stabilizer because our process generates a product with high oxidative stability on its own.

    Regular plant safety reviews focus on both occupational and downstream risks. Even with robust personal protection and engineering controls, we report on trace impurity levels with transparency not always practiced across the industry. Our end-users take comfort in knowing every drum reflects hundreds of hours spent perfecting both the chemistry and the logistics. Upon request, we support customers with in-depth batch histories—right down to catalyst charge and reactor conditions. This isn’t paperwork; it’s a reflection of ground-level pride in the outcome, something that’s tangible in every delivery.

    End-Use Innovation: 1-Cyclohexyl-1-Butanol as a Platform for New Products

    End-users in the coatings, adhesives, and polymers segments stand at the gates of a technological shift. As customers demand higher sustainability, stronger performance, and easier application, traditional solvents run into walls. Our work with formulation chemists shows 1-Cyclohexyl-1-Butanol enabling next-generation systems—bio-based resins, hybrid acrylics, and high-performance thermosets. In waterborne systems, its controlled volatility and hydrophobic character open pathways for faster drying and increased film robustness. In adhesives, formulators cut down on plasticizer loss during hot-fill or environmental stress cracking by integrating this alcohol, resulting in safer end-user experiences.

    Pharmaceutical and cosmetic manufacturers find this alcohol fits seamlessly into creams or ointments needing a mild, non-reactive carrier. We’ve consulted for pilot plants scaling new insect repellents—finding the ring structure retains active ingredients without contributing harsh odors or hydrolysis breakdown over time. The push toward replacing phthalates with safer plasticizers also sees this molecule replacing legacy options in wire and cable formulations, where both flexibility and electrical stability are critical. We place technical specialists on-site to troubleshoot pilot runs or tackle complications that can’t be solved from a distance.

    Why Industry Turns to the Manufacturer for Answers

    Every industrial client we support wants assurance that they are getting more than a commodity. Our end comes with access to both process troubleshooting and long-term optimization. When a customer calls about off-odors, slight hazing, or compatibility gaps, we don’t read out from a script. We dig through analytical archives, compare to decades of customer production notes, and sometimes run pilot trials on our own floor to see what’s going on. It’s about authentic partnership, not generic service.

    We also face questions about regulatory impacts. Unlike some specialty alcohols, 1-Cyclohexyl-1-Butanol avoids several European Reach restrictions and presents a cleaner profile for DOT and IMDG shipping. This heads off headaches for export and supports manufacturers seeking a straightforward route to international markets. For customers with site-specific emission ceilings, our team helps quantify workplace exposures and recommends tailored engineering controls, drawing from air monitoring programs we deploy in our own plant.

    Environmental Stewardship: Our Approach as a Direct Producer

    Sustainability is not a department; it is a task that fits every shift and planning round. Raw materials trace back to domestic and international suppliers who meet tight sourcing standards. Residual process by-products feed into petrochemical recycling partners, further reducing environmental footprint. Fume abatement technology we installed last year allowed a measurable drop in VOC emissions by over 10%—a result that aligns with growing industry pressure to lower Scope 1 and 2 emissions. Energy use is tracked in real time; ongoing investments in heat exchange and waste optimization help keep our cradle-to-gate intensity figures competitive.

    Safety is part of sustainability. We engage in formal process risk assessments, hazard analyses, and regular operator retraining. Our safety track record undergoes annual third-party review, with incident statistics published company-wide. Those on the plant floor know their feedback shapes both operating procedures and capital spend—continuous improvement is not optional, it is cultural. We relay these practices openly to our customers, sharing both wins and hard lessons-learned.

    Supporting Customers Beyond the Standard Cycle

    We understand downstream deadlines, changing regulatory conditions, and the frustration that comes with supply interruptions. As hands-on producers, we adjust campaign schedules based on real time forecasts, sometimes accelerating or delaying batches to give customers downstream breathing room. Dedicated logistics teams work through weather events or transport bottlenecks, maintaining communication that doesn’t end with the bill of lading.

    There are no generic answers to scale-up challenges. We connect R&D teams with our senior chemists to adapt storage, blending, or dosage systems for 1-Cyclohexyl-1-Butanol. Our advice comes shaped by hundreds of commissioning cycles and pilot scale breakthroughs. New users receive guidance on compatibility with their reactors and storage tanks—sharing best practices that go beyond safety data sheets. Formulators working with new performance targets rely on us for in-depth documentation, COA data, and troubleshooting approaches drawn straight from actual plant experience.

    Addressing Industry Challenges and Looking Forward

    Supply networks remain vulnerable. Over the past years, we’ve diversified raw material sources and invested in process redundancy. The memory of force majeure events runs deep, and we communicate changes proactively with customers. Our direct engagement with supply partners ensures early warning and quick response, reinforcing our reliability as the backbone of customer production schedules.

    The push toward safer, longer-lasting, and more sustainable materials puts 1-Cyclohexyl-1-Butanol front and center in many development discussions. We participate in joint research programs with resin suppliers, paint manufacturers, and scientific collaborators. From laboratory validation to full-scale blender trials, real-world results dictate how we evolve process conditions or consider new derivatives. Engineering new catalysts or green chemistry process improvements keeps our production at the leading edge; our team’s spirit lies in constant curiosity and attention to customer feedback.

    Final Thoughts From the Production Floor

    Every kilogram of 1-Cyclohexyl-1-Butanol carries with it hours of hands-on workmanship and a commitment to technical excellence. We live and breathe quality—every shift, every tank, every load-out. Our users know they buy more than a product; they buy access to deep technical support, transparent manufacturing, and a relationship built over years of chemical stewardship.

    We invite real dialogue—about how 1-Cyclohexyl-1-Butanol fits unique manufacturing needs, where industry standards are evolving, and how together we can drive forward. The journey doesn’t end at sales; it flourishes in every smarter coating, safer adhesive, and more innovative product made in partnership. From our team to yours, that’s the promise behind every container that leaves our gate.