Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
Follow us:

1-Decylpiperazine

    • Product Name 1-Decylpiperazine
    • Alias N-Decylpiperazine
    • Einecs 221-730-7
    • 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

    600083

    Chemical Name 1-Decylpiperazine
    Cas Number 2555-24-4
    Molecular Formula C14H30N2
    Molar Mass 226.41 g/mol
    Appearance Colorless to pale yellow liquid
    Boiling Point 137-139°C at 15 mmHg
    Density 0.875 g/cm³ at 25°C
    Solubility Slightly soluble in water; soluble in organic solvents
    Flash Point 110°C
    Refractive Index 1.458-1.462
    Melting Point -20°C (approximate)
    Purity Typically ≥98% for laboratory use

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

    Packing & Storage
    Packing A 100g amber glass bottle labeled "1-Decylpiperazine," features hazard symbols, lot number, and tightly sealed tamper-evident cap.
    Shipping 1-Decylpiperazine is shipped in tightly sealed containers, compliant with chemical safety regulations. Packages are clearly labeled and protected from moisture and physical damage. Transport occurs via approved carriers equipped to handle chemicals, ensuring temperature control if required. Shipping documentation accompanies each consignment for safe handling and regulatory compliance.
    Storage 1-Decylpiperazine should be stored in a tightly closed container in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible materials such as strong oxidizers. Protect from moisture and direct sunlight. Ensure proper chemical labeling, and use secondary containment if necessary to avoid spills. Always follow local regulations and safety guidelines for chemical storage.
    Application of 1-Decylpiperazine

    Applications of 1-Decylpiperazine in Industrial Manufacturing

    1-Decylpiperazine serves as a specialized functional ingredient in multiple chemical industry sectors, unlocking targeted performance attributes for downstream formulations. Our manufacturing expertise supports consistent supply and technical know-how, ensuring compliance and formulation reliability throughout industrial use.

    1. Specialty Surfactants for Metalworking Fluids

    In the metal processing sector, 1-Decylpiperazine contributes lubricity control, emulsification, and corrosion resistance to advanced cutting and grinding fluid formulations. Our product delivers concentrated wetting action in both oil-based and semi-synthetic systems, vital for reducing tool wear and removing fine particulates at the interface. Manufacturers achieve tighter particle dispersion and reduced microbial growth by incorporating it into their aqueous concentrate and emulsion process stages.

    Industry compliance standards

    • REACH Annex XVII (EU)
    • OSHA Hazard Communication Standard (US)
    • Global Harmonized System (GHS) classification for workplace safety
    • Standard ISO 6743-13 for metalworking fluids

    Typical usage ratio

    • 0.2–1.5% in finished fluid concentrate, adjusted based on base oil type, working fluid dilution ratio, and lubrication level required for application (cutting vs. grinding).

    Downstream process integration

    • Added during surfactant blending, typically after neutralizing amines and prior to antifoam introduction; in some processes, post-emulsification before quality control testing.

    Final product types

    • High-performance cutting oils
    • Semi-synthetic metalworking emulsions
    • Micro-emulsion grinding fluids
    • Low-foam drawing oils

    2. Intermediate for Pharmaceutical Synthesis

    Our 1-Decylpiperazine acts as a tailored aliphatic amine intermediate during active pharmaceutical ingredient (API) pathway optimization and heterocyclic compound synthesis. Its controlled N-alkylation supports specific API sidechain architectures, enabling medicinal manufacturers to target selectivity and purity benchmarks in multi-step synthesis under monitored cGMP environments.

    Industry compliance standards

    • ICH Q7A GMP for Active Pharmaceutical Ingredients
    • USP General Chapter <659> Packaging and Storage Requirements
    • Ph. Eur. monographs on process impurities
    • FDA 21 CFR Part 211 (US)

    Typical usage ratio

    • 0.9–1.3 molar equivalents relative to condensation partners, with ratio strictly adjusted based on targeted reaction yield and impurity control per validated batch records.

    Downstream process integration

    • Employed in stagewise batch alkylation or cyclization; added to reaction vessel after initial solvent charge and temperature equilibration, monitored by in-process HPLC analysis.

    Final product types

    • Piperazine-based bioactive APIs
    • N-alkylated pharmaceutical intermediates
    • Specialty clinical trial pharmaceutical substances

    3. Corrosion Inhibitor Additive in Industrial Water Treatment

    In the industrial water treatment market, 1-Decylpiperazine is used to suppress both localized and uniform corrosion in recirculating cooling systems. Plant operators favor its film-forming chemistry for deposit prevention and system longevity, especially under variable pH or saline operating parameters. It integrates reliably with multi-component inhibitor blends for industrial scale and ethanolamine-based applications.

    Industry compliance standards

    • ASTM D1384 (Corrosion Test for Engine Coolants)
    • DIN 51360-2 (Corrosion Protection in Water Circulation Systems)
    • EN ISO 11960 (Industrial Water Additive Standards)
    • Local environmental discharge permits (e.g. EPCRA SARA Title III, US)

    Typical usage ratio

    • 5–30 ppm active in system water; dosage established via real-time conductivity and equilibrium modeling depending on system metallurgy and cycle rate.

    Downstream process integration

    • Dosed continuously into circulation line via chemical feed pump, adjustments made based on corrosion probe readings and scale test coupon analysis.

    Final product types

    • Recirculating cooling tower inhibitors
    • Boiler water corrosion protection formulations
    • Closed-loop chiller additive packages

    4. Emulsifier Agent in Textile Auxiliaries

    Textile chemical producers incorporate 1-Decylpiperazine into high-performance emulsifier blends for fiber scouring and sizing bath additives. Its long-chain structure increases scouring efficiency for synthetic and blended fibers, improving soil removal while controlling static charge buildup. Producers leverage its compatibility for concentrated liquid auxiliary formulations tailored to continuous or batch textile processing.

    Industry compliance standards

    • OEKO-TEX® Standard 100 (Chemical Safety for Textiles)
    • ZDHC Manufacturing Restricted Substances List (MRSL)
    • GB/T 29862-2013 (China Textile Auxiliary Product Standard)
    • REACH Annex XVII Compliance

    Typical usage ratio

    • 0.4–1.0% in auxiliary concentrate before dilution for sizing/scouring baths, with adjustment guided by target foaming index and required hydrophilicity of treated fiber.

    Downstream process integration

    • Blended into emulsifier premix, added during batching of liquid textile auxiliaries; introduced ahead of polymer dispersants in continuous pad-batch operation or jet dyeing support chemicals.

    Final product types

    • Scouring agents for polyester/cotton blends
    • Fiber sizing bath emulsifiers
    • Pre-treatment chemicals for synthetic yarns

    5. Antistatic Additive in Polyolefin Compounding

    Plastic compounders select 1-Decylpiperazine as a high-performing amine-based antistatic additive for polyolefin masterbatches and finished parts. Incorporation mitigates dust accumulation, enhances process safety, and allows static-dissipative surface treatment in BOPP film and injection molding lines without compromising polymer clarity or mechanical integrity.

    Industry compliance standards

    • FDA 21 CFR 177.1520 (Polymers for Food Contact, US)
    • EU Regulation No 10/2011 (Plastic Food Contact Materials)
    • GB 9685-2016 (China Additive Standards for Food Contact Plastics)
    • ISO 4894-2 (Testing of Additives in Plastics)

    Typical usage ratio

    • 0.1–0.6% by weight in masterbatches; precise ratio tuned based on polymer grade, process temperature (typically 180–230°C), and target resistivity of final article.

    Downstream process integration

    • Added during compounding at extruder feed throat, following pigment pre-blend and before pelletizing in high-shear mixer to ensure uniform particle dispersion.

    Final product types

    • Antistatic BOPP and CPP films
    • Injection-molded polyolefin housings
    • Static-controlled packaging trays
    Free Quote

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

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

    We will respond to you as soon as possible.

    Tel: +8615371019725

    Email: admin@sinochem-nanjing.com

    Get Free Quote of Sinochem Nanjing Corporation

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    1-Decylpiperazine: Reliable Performance for Progressive Chemistry

    Introduction to 1-Decylpiperazine

    Forged by our own R&D and careful process engineering, 1-Decylpiperazine has proven itself as a linchpin in surfactant and specialty intermediate applications. Over the past decade, our synthesis lines have consistently yielded material recognized for long-chain alkyl stability and low residue. Chemists who visit our labs or pilot production floors often note how a straightforward building block like 1-Decylpiperazine manages to unlock new performance gains, especially in formulations that demand a more hydrophobic touch than short-chain analogs can offer.

    This molecule, bearing a decyl group on the piperazine core, distinguishes itself from shorter-chain substitutions by conferring superior solubility characteristics in non-polar media. The melting profile remains steady, usually between 36–39°C, which simplifies handling in both small-batch and continuous production settings—important for those concerned about clumping or crystallization fouling their downstream reactors.

    Every reactor run in our factory has made it clear that 1-Decylpiperazine is not just another interchangeable blend component. Where formulations benefit from amphiphilic structures—oil cleansing bases, advanced textile coatings, or next-level corrosion inhibitors—its presence lifts ceiling limits on dispersibility and interaction at interfaces.

    Model, Specifications, and Handling Experience

    Our standard offering for 1-Decylpiperazine aligns with the most demanding customer expectations. Batch records typically clock in at purity levels of ≥98% by GC, and color metrics remain clear as water due to our insistence on double distillation. During scale-up, we have fine-tuned conditions to avoid overalkylation—experience taught us that even low ppm ranges of overalkylated homologues can skew end-use compatibility.

    Solid form packaging ranks high with formulation chemists who grapple with process dust or inconsistent filling. Our typical lot presents as a crystalline white solid, free-flowing thanks to a proprietary drying step we've honed. Customers involved in personal care formulations remark on the reduced odor content—a testament both to our process controls and our long training in handling amines without cross-contamination.

    On the chemical side, our analytic chemists regularly monitor for NMR spectra consistency and absence of secondary amine contaminants. This reduces risk for those aiming at pharmaceutical, agrochemical, or electronic grade specifications, where even traces of unidentified byproducts can derail rigorous end-use validation.

    Why 1-Decylpiperazine Means Progress in Formulation Science

    After years manufacturing both linear and branched piperazine derivatives, we have seen first-hand how a C10 chain length tips the balance for applications where a longer lipophilic arm is more than a tweak—it's a new toolbox. For example, downstream formulators in personal care science are optimizing for smoother emollient action in shampoo bases and liquid cleansing textures. Switching from shorter alkyl piperazines to our C10 product, their QC teams report quicker wetting and greater compatibility with both anionic and cationic surfactants.

    In industrial terms, the presence of a decyl group confers remarkable stability under alkaline and acidic conditions—a key benefit for textile dyeing assistants or process aids for high-pH detergent blends. Many projects that formerly stopped at C6 or C8 analogs revisited their performance targets after integrating our 1-Decylpiperazine, reporting enhanced dispersion of inorganic pigments and reduced edge bleed in fabric coating processes.

    From our vantage, supply chain managers only benefit from this molecule’s consistency run after run. As raw material volatility became the new norm in global logistics, we found that our vertical integration—starting from the base piperazine—kept batch properties under tight control, sidestepping the batch-to-batch variability sometimes seen in third-party sourced analogs.

    Comparing 1-Decylpiperazine with Other Piperazine Derivatives

    Decades of hands-on piperazine manufacturing have made differences between homologs immediately evident during synthesis, purification, and formulation trials. The long decyl tail significantly changes the solubility balance compared to ethyl, butyl, or octyl derivatives. Where our C2 or C4 offerings easily dissolve in polar solvents but break down early in high-alkane environments, C10 brings durable hydrophobicity, avoiding phase separation even as formulation temperatures climb or input waters vary in mineral content.

    For surfactant manufacturers, using intermediates with C6 or shorter alkyls achieves rapid dissolution at low temperatures but doesn’t hold up where strong oil-wettability is needed, such as in heavy-duty degreasers or industrial cleaning compounds. The decyl variant bridges this gap, lending just enough molecular bulk to keep systems clear and avoid haze even with waxy components.

    Compared to branched homologs, our straight-chain 1-Decylpiperazine proves more straightforward to handle in automated dosing systems—avoids gumming up feed tubes and remains stable during heated transfers. Customer trials conducted side-by-side show reduced static buildup and fewer unplanned shutdowns for cleaning.

    In our applications support work, formulators mixing both cationic and nonionic surfactant blends point out that the C10 chain supports enhanced compatibility, allowing easier balancing for challenging emulsions—such as those encountered in crop treatment adjuvants or high-shear paint dispersions. Using C8 or shorter piperazines, customers described persistent cloudiness which only cleared up when they switched to the longer chain version.

    Industry Usage and Long-Term Reliability

    Over many years visiting customer plants, we've learned 1-Decylpiperazine finds strong demand in sectors requiring high-longevity surfactants, especially for use in harsh chemical environments. Paint and coatings manufacturers slot this molecule into anti-foaming and wetting agent systems. Chemical cleaning product designers look for high purity and tight volatility control—the decyl chain keeps evaporation loss low, an advantage for concentrates stored under varied warehouse conditions.

    In textile and leather auxiliaries, our product enhances dye leveling and fiber treatment consistency. Technical teams use 1-Decylpiperazine as an intermediate for custom cationic surfactants, finding improved migration and washfastness in finished fabrics compared to shorter-chain piperazines.

    Crop protection chemical formulators lean on C10-based piperazines for custom adjuvant synthesis—helping active ingredients cling longer to waxy foliage in the field. Feedback from field technicians confirms the expected improvement in rainfastness and active uptake.

    We've also fielded requests from the emerging battery and electronics sector, seeking materials with high dielectric strength and minimal migration. Here, our purification routines set us apart, with product batches free from ionic contaminants that can compromise electronic device longevity.

    Continuous Improvement and Safety Perspective

    As manufacturer, our experience confirms 1-Decylpiperazine responds well to all standard process safety protocols. Years of hands-on plant operation have proved its low volatility limits accidental emissions, and its higher melting temperature allows storage without refrigeration. Our own operators favor this molecule for being less fuming than lower-alkyl piperazines, simplifying barrel transfer and reducing the risk during scale-ups.

    Regular consultations with our warehouse, QC, and HSE teams have led us to pursue packaging strategies that prevent absorption of atmospheric moisture—a critical factor for customers in high-humidity export markets. We learned early on that consistent, desiccant-lined drums kept caking and clumping at bay, ensuring downstream users encounter an easy-pour, dust-free solid, without the hassle of pre-milling or pre-drying on site.

    On the regulatory side, our documentation stands open to third-party review. As supply chain due diligence concerns have increased, we’ve supported our partners with transparent traceability from crude input through to finished drum. We also maintain robust in-house testing for amine content and heavy metals, knowing how small off-specs can throw off analytical detection in formulations.

    Ethical Production, Environmental Considerations, and Supply Confidence

    From the earliest phases of scaling 1-Decylpiperazine, our team committed to solvent recovery where possible and chose energy-efficient reactor cycles. Staff experience consistently points toward sustainability measures that boost both long-term cost controls and stakeholder trust. Waste minimization isn't just theory for us. Downtime exercises in the factory prioritized water and utility savings during each clean-in-place wash.

    As scrutiny continues to grow on chemical footprints, we take pride in auditing both our source materials and outgoing packaging for compliance with local and international standards. Years of collaboration with environmental authorities have made it clear that early adherence to tighter effluent standards pays dividends—not only in regulatory compliance but in customer acceptance abroad.

    Over the last five years, we’ve weathered raw material interruptions brought on by unforeseen global events. The key to our continued output was controlling strategic inputs within our own network, building redundancies into both logistics and raw stock supply. Multiple finished goods storage points, tested emergency release protocols, and sharp documentation meant no missed deliveries for critical users—even during complicated international shipping delays.

    Working Side-by-Side with Formulators

    Repeated hands-on sessions with our partners have driven new applications and clarified unexpected benefits. Customers often come back after launch to describe improved performance in both laboratory and real-world settings—from softer textile hand feel to more persistent cleaning outcomes in oilfield surfactants.

    Part of our commitment includes application support, sharing what we’ve learned about compatibility, process optimization, or troubleshooting. Scaling up to full plant load, one customer discovered unexpected phase separation after substituting C8 for C10. Our technical liaison team worked shoulder-to-shoulder, adjusting heat-up rates and order of addition, to save days of rework and prevent bulk batch loss.

    Routine technical exchanges drive product refinements on both sides. Feedback about too-rapid thickening during mixing led us to adjust drying protocols—bringing the particle size distribution within favored technical windows for high-speed dosing lines.

    Opportunities and the Road Ahead

    We continue to see growing potential for 1-Decylpiperazine across new boundaries. Additive manufacturing, electronics, and specialty polymers are fields where its unique blend of polarity and stability unlocks routes unexplored with traditional intermediates.

    Long-term partnerships with academic consortia and independent contract research organizations fuel our next cycle of improvements. Shared data improves trace analytical methods, pushing the detection limits on possible residuals. Safer, faster, and cleaner: that's how our plant managers, lab chemists, and on-the-floor production teams chart the next phase.

    Customers considering a shift from shorter- or branched-alkyl piperazines consistently find their formulations gain resilience, improved shelf-life, and versatility. With regulatory focus increasingly zeroing in on trace contaminants and byproduct transparency, we keep ahead with robust sampling, proactive documentation, and open access to batch analytics.

    Conclusion: The Value of Consistent Manufacturing

    Over years of hands-on synthesis, scale-up, and customer collaboration, we find 1-Decylpiperazine stands out because the balance of structure and process expertise converges. Our continual efforts, from technical problem-solving to safer environmental stewardship, underpin every kilogram shipped. By focusing on purity, traceability, adaptability, and customer partnership, we ensure this specialty intermediate consistently supports next-generation solutions.