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1-Allylpiperazine

    • Product Name 1-Allylpiperazine
    • Alias 1-Allyl-1,4-diazacyclohexane
    • Einecs 227-701-3
    • 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

    858986

    Chemical Name 1-Allylpiperazine
    Cas Number 2081-11-6
    Molecular Formula C7H14N2
    Molecular Weight 126.20 g/mol
    Iupac Name 1-prop-2-enylpiperazine
    Appearance Colorless to pale yellow liquid
    Boiling Point 195-197°C
    Density 0.937 g/mL at 25°C
    Solubility Miscible with water
    Smiles C=CCN1CCNCC1

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

    Packing & Storage
    Packing 1-Allylpiperazine, 25g, is supplied in a sealed, amber glass bottle with a tamper-evident cap and clear hazard labeling.
    Shipping 1-Allylpiperazine is shipped in tightly sealed containers, protected from moisture and light. The chemical is packed according to regulatory guidelines for hazardous materials, ensuring safety during transit. Proper labeling, documentation, and temperature control are maintained to prevent degradation or leakage. Handle with care and use appropriate PPE when receiving deliveries.
    Storage 1-Allylpiperazine should be stored in a tightly closed container in a cool, dry, and well-ventilated area, away from heat sources, sparks, open flames, and incompatible substances such as strong oxidizing agents. Protect from moisture and direct sunlight. Proper labeling and secondary containment should be used to prevent accidental release, and access should be restricted to trained personnel.
    Application of 1-Allylpiperazine

    Applications of 1-Allylpiperazine in Industrial Manufacturing

    As a committed producer of 1-Allylpiperazine, we support advanced downstream manufacturing through the reliable supply of this active chemical intermediate. Our material features high purity and consistent quality, and finds critical use in diverse sectors where specific reactivity and substituent introduction are necessary. Below we detail four real-world industrial application scenarios, highlighting distinct compliance frameworks, formulation ratios, process stages, and finished product types aligned with authentic business practices.

    1. Pharmaceutical Intermediate for CNS Active Compounds

    Leading pharmaceutical manufacturers incorporate 1-Allylpiperazine as a key intermediate during the synthesis of select central nervous system (CNS) drug substances, especially those utilizing the piperazine ring as a structural motif. The raw material enters multistep organic syntheses, where controlled allylation facilitates functionalization for downstream molecule complexity. Its use must comply with medicinal ingredient traceability, stringent process control, and impurity profile regulations.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients (APIs)
    • European Pharmacopoeia (Ph. Eur.) monograph compliance
    • US FDA 21 CFR Part 210/211
    • Chinese Pharmacopoeia (CP) Chapter on Intermediates & APIs

    Typical usage ratio

    • 0.8–1.1 molar equivalents relative to target heterocycle substrate, adjusted by intended substitution pattern and scale-up batch yield optimization

    Downstream process integration

    • Charged to alkylation/reductive amination stage within GMP-controlled reactor suite prior to purification and crystallization of API precursors

    Final product types

    • CNS drug substances and finished dosage forms (e.g., anxiolytics, antidepressants with piperazine derivatives as core structures)

    2. Agrochemical Synthesis: Fungicide Active Ingredient Production

    Producers of modern agrochemicals utilize 1-Allylpiperazine for the preparation of selective fungicidal active ingredients where the piperazine ring contributes to the bioactivity and environmental profile. The intermediate undergoes further substitutions and ring modifications under tightly controlled process conditions, supporting efficient synthesis of pesticide actives for field or horticultural use. All stages adhere to agrochemical safety guidelines and product traceability requirements.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products
    • ISO 9001:2015 Certified Quality Management System
    • OECD Guidelines for the Testing of Chemicals
    • EU Regulation (EC) No 1107/2009 on Plant Protection Products

    Typical usage ratio

    • 0.5–1.3 molar ratio to acylation or arylation co-reactant, determined by molecule design and desired yield

    Downstream process integration

    • Introduced during the heterocycle assembly or N-alkylation step, preceding formulation and technical concentrate processing

    Final product types

    • Solid and liquid fungicide technical concentrates
    • Formulated field application products (SC, WP, EC)

    3. Monomer Component for Functional Polymer Synthesis

    Chemical processing companies employ 1-Allylpiperazine as a reactive monomer for the development of specialty polymers and copolymers with enhanced hydrophilicity, flexibility, or reactive moieties for downstream functionalization. Formulators introduce the material during solution or suspension polymerization, achieving target molecular weights and performance properties required for advanced material applications. Strict polymer additive regulations and quality measurability are observed at each stage.

    Industry compliance standards

    • REACH Registration (EU Regulation EC 1907/2006)
    • ISO 14001:2015 Environmental Management for chemical synthesis
    • OECD Guidelines for Testing of Chemicals (for polymeric substances)
    • FDA 21 CFR 177.2600 (where polymer application requires food contact approval)

    Typical usage ratio

    • 1–10 wt% as co-monomer or functional additive, based on targeted polymer architecture and required terminal group density

    Downstream process integration

    • Blended with principal monomers (e.g., acrylates, vinyls) at feed solution preparation, then subjected to controlled temperature-initiated polymerization and subsequent post-cure where applicable

    Final product types

    • Hydrophilic copolymer beads
    • Functional coating resins
    • Crosslinked membrane materials for filtration

    4. Fine Chemical Building Block for Advanced Intermediate Manufacture

    Specialty chemical manufacturers source 1-Allylpiperazine as a scaffold to construct advanced intermediates, particularly where the allyl group can undergo subsequent selective functionalization (e.g., cross-coupling, oxidation, or metathesis). This facilitates access to high-value target molecules in minimal synthetic steps, supporting further applications in custom synthesis supply chains. Close attention to hazardous reaction controls and by-product minimization governs production.

    Industry compliance standards

    • ISO 9001 certified process documentation
    • Responsible Care Management System (RCMS) program compliance
    • Globally Harmonized System (GHS) for classification and labeling
    • REACH (where intermediate use crosses EU supply boundaries)

    Typical usage ratio

    • Stoichiometric quantities (1:1 molar ratio) to downstream functionalization agents, with adjustment per synthesis scale and downstream handling risk assessment

    Downstream process integration

    • Charged directly to batch reactors for cross-coupling or allyl-to-epoxy conversions, inline analytical monitoring for impurity tracking pre-purification

    Final product types

    • Advanced pharmaceutical building blocks
    • Intermediate molecules for contract R&D
    • Specialty organics for electronics and sensor development
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    Certification & Compliance
    More Introduction

    Introducing 1-Allylpiperazine: Direct From the Manufacturer

    What 1-Allylpiperazine Brings to the Table

    Our commitment to quality chemical manufacturing shows in every drum of 1-Allylpiperazine. This product, with the molecular formula C7H14N2 and a CAS number of 2823-91-8, arrives from our reaction vessels with the consistency and purity required for downstream pharmaceutical, agrochemical, and specialty chemical synthesis.

    Through decades of hands-on experience with heterocyclic synthesis, we recognize the potential of piperazine derivatives. 1-Allylpiperazine distinguishes itself by offering a simple allyl side-chain on a piperazine core. This functional group opens doors for ring-closing, cross-coupling, and further derivatization far beyond what you get from unsubstituted piperazine or methylated variants.

    Consistent Quality Through Controlled Process

    We have refined our alkylation process to maximize yield while suppressing over-alkylation and minimizing nuisance side products. Each batch runs under close analytical controls, from GC-MS to NMR verification. Water and low-boiling residuals routinely track well below the typical industry cut-off, with main assay values holding to 99% or above by area normalization. What leaves our reactors has also already been pressure-tested by our own chemists for reactivity — not just paperwork compliance.

    Our attention to every step, from the condition of the feedstock piperazine base to the temperature profiles during the introduction of allyl chloride, avoids the impurity profile shifts often seen with less disciplined production processes. Customers who have switched from smaller-volume jobbers have reported sharper batch-to-batch reproducibility and more robust intermediate handling, which helps both in large-scale pharma and continuous flow settings. Producing the product in-house means we never substitute with reclaimed or repackaged material, and every request for a retention sample gets answered from our own current batch records.

    Differentiation From Bulk Piperazine Derivatives

    1-Allylpiperazine stands apart from simpler alkylpiperazines not just by its structure but by its flexibility in synthesis. While methyl, ethyl, or even benzylpiperazines offer only simple alkyl extension, the allyl group brings a reactive double bond. The methods using this double bond—such as olefin metathesis, hydroboration, and Pd-catalyzed couplings—expand the playbook far beyond straightforward amination. Those working in medicinal chemistry find this feature crucial for late-stage functionalization or for building complexity into lead candidates without introducing unnecessary aromaticity or steric congestion.

    On the other side, 1-Allylpiperazine sidesteps challenges seen with some diallyl- or multi-alkylated piperazines. It provides a mono-substitution pattern, giving a single nucleophilic nitrogen available for further downstream functionalization. This level of selectivity greatly simplifies subsequent reaction planning compared to trialkylated analogues, which often behave unpredictably in both classical and modern cross-coupling conditions.

    Suitability for Modern Research and Production

    Across Europe, Asia, and the Americas, researchers in pharmaceuticals and biotechnology look for reliable piperazine building blocks as the backbone for diverse molecular libraries. Our 1-Allylpiperazine makes for an ideal starting point, easily incorporated into sulfonamides, ureas, and carbamate frameworks without excessive protecting group strategies. CROs and CDMOs rely on minimizing waste and trimming unnecessary processing steps. Being able to source 1-Allylpiperazine from a manufacturer who controls their own production schedule eliminates a common supply chain headache.

    The agrochemical sector also benefits. 1-Allylpiperazine enters directly into the formation of fungicides and herbicides. The allyl group’s electron-rich double bond often serves as a strategic handle for further manipulation, letting chemists design in targeted reactivity against pests without relying on chlorine or phosphorus chemistry, which can bring downstream environmental issues.

    From our vantage point in production, we’ve observed a growing trend toward scale-up of late-stage intermediates using flow reactors. In these systems, clean, mono-alkylated, and easily handled starting materials become even more valuable. The low viscosity and water-miscibility of our high-purity 1-Allylpiperazine allow it to dose smoothly, without clogging or precipitation, reducing downtime and cleanout costs. Our process lines and lab teams have built a repository of experience with various solvent systems (toluene, acetonitrile, alcohols), so we help customers decide on the most compatible conditions for both scale-up and downstream operations.

    Practical Handling and Packaging Insights

    Our experience with drum and iso-tank lots has shown that the low freezing point and pressure tolerance of 1-Allylpiperazine simplify bulk storage and shipping. Whether a customer draws by pump or by cartridge, the product does not pose the same crystallization hazard as some isomeric or di-substituted piperazines. For small-quantity users, we supply product in both glass and lined poly containers, triple-sealed against air and moisture. Our standard pack sizes rooted in real feedback from contract research and full-scale production labs ensure maximum flexibility—a feature not all toll or trading houses offer.

    Some buyers request special aliquots for high-throughput screening or library work. We tailor these as needed, but every fill comes from the same production lot that supports our largest continuous clients. Our warehouse logistics team oversees every step from in-house QA sampling, active order tracking, and direct load-out to the client’s facility, removing layers of third-party risk.

    Regulatory and Documentation Practices

    Nothing matters more in specialty chemicals than documented, transparent production history. Our lot-specific COAs, detailed impurity profiles, and trace documentation reflect every stage of material input and environmental control. Quality assurance isn’t an afterthought, but an everyday job for our operators and analytic staff. All product archives stay under direct manufacturer control—never broken up between brokers or trading partners.

    We keep up with regulatory changes in every jurisdiction where we supply, not only supporting clients with REACH and GHS-compliant data, but also pre-registering anticipated changes so that material never gets tangled in customs for compliance reviews. As the direct manufacturer, we have the authority and resources to update SDS and TDS paperwork immediately, based on actual lab and production records, not delayed secondhand by agency lag or translation errors.

    Supporting Innovation in Medicinal Chemistry

    Projects in the discovery phase can stumble when the supplied starting materials lack transparency or control. Medicinal chemists, especially those involved in CNS and anti-infective projects, value the reactivity and small profile of the allyl-substituted piperazine ring. By providing a stable, singularly-alkylated molecule verified for isomeric and foreign contamination at the actual manufacturer’s bench, we help teams focus more hours on structure-activity exploration, less on sourcing or purification chores.

    Lead diversification directs most of our production output to the pharma sector, where piperazine rings figure into kinase inhibitors, GPCR modulators, and anti-viral scaffolds. The allyl group’s inherent unsaturation can serve as an anchor for cycloadditions, cross-couplings, or enzymatic extensions—use cases demonstrated in proprietary and generic programs alike. Because we witness these needs firsthand, our technical staff keeps up with literature and practical reports in real time, often sending alerts to R&D partners about emerging reagent compatibility or new downstream coupling trends.

    Comparing 1-Allylpiperazine to Close Structural Relatives

    Working as a direct producer, we see the subtle contrasts with other piperazine derivatives project by project. For instance, N-methylpiperazine delivers solubility and some steric protection, yet lacks the transformability of the allyl group. Benzyl and aryl piperazines contribute bulk and lipophilicity but complicate downstream deprotection or hydrogenation steps and bring higher tendency for off-target biological activity in medicinal scaffolds. The allyl group, by comparison, offers a handle that synthetic chemists can utilize for either chemical or enzymatic transformation, yet it doesn’t load down the parent ring with mass or aromatic drag.

    Diallylpiperazines, observed during scale-up, can lead to over-alkylation issues and produce less reliable behavior during purification, frequently resulting in extra remedial steps. Our customers in high-throughput screening environments often report that single-allyl piperazine derivatives return cleaner NMR spectra and react more predictably than their di- or tri-substituted counterparts. Every change in substitution pattern carves out a radically different workflow; from our production side, we advise and support by sharing comparative data from internal trials and client feedback, not just from catalogs or outdated literature.

    Process Sourcing and Purity in Perspective

    In the world of custom chemistry, the difference between starting from a reaction-pure 1-Allylpiperazine versus a cheaper, inconsistent product often isn’t visible until scale-up. When pilot reactions falter or impurities drag down assay values, teams can lose weeks to troubleshooting. Because our pipeline runs from base chemical to final delivery under single-site control, we avoid the split-batch, multiple-source challenges that so often arise with intermediary traders or contract fillers. The best results arise when partners downstream have full access to real process documentation, living data from our own reactors, and regular technical dialogue—not press releases promising “compliance”.

    We routinely keep direct samples from every batch in our on-site archive. Researchers request reference spectra, residual solvent analysis, or even run parallel synthetic trials with our material before committing to scale. This attitude underscores the relationship between manufacturer and laboratory—transparent, evidence-driven, practical partnership built on thirty years of direct production.

    Challenges and Best Practices in 1-Allylpiperazine Handling

    Among our more experienced clients, the main concerns lie in batch stability, ease of integration into automated handling, and chemical safety at the point of use. Our technical and safety staff work with each new user to calibrate handling protocols that work, based not on hypotheticals, but on observations made in real, working process lines and kilo-scale installations.

    We see some customers encountering oxidation issues with poorly-sealed or long-aged feedstock. The good news is that proper nitrogen flushing and prompt transfer into inert storage halts unwanted color development and product degradation. By processing at the source, and turning over inventory briskly, we ensure every receiving chemist gets product fit for purpose, not old or re-bottled leftovers. For bulk customers, we install vented drums or lined tanks compatible with their own inerting, minimizing both workplace risk and product loss.

    Market Trends and Our Response

    In the present regulatory and market climate, the role of traceable, high-quality intermediates has strengthened. The rise of continuous flow chemistry, AI-driven medicinal chemistry, and faster-cycle agrochemical development all require vendors who offer not only product, but immediate and honest technical support. More groups bring projects from lead generation to scalable synthesis within months, not years. Our full backward integration lets us provide not just grams, but whole production campaigns tailored to partners' evolving needs—with real-time scheduling, fresh documentation, and hands-on troubleshooting. We see this as the only pragmatic approach to supporting the real innovation happening across our client base.

    Our plant wasn’t built on marketing copy or distribution margin. We invest every year to maintain cleanroom standards, upgrade control systems, and add capacity that matches client demand. The chemists and engineers here know that the best way to serve the next generation of innovators is to deliver what we use ourselves: measurable, documented, well-characterized chemicals tailored by the realities of practical synthesis.

    Outlook: The Manufacturer’s Promise

    Across every lot and every drum, we embed the care and technical scrutiny that chemists in our own laboratories expect. Market trends shift, regulations evolve, but the need for reliable, well-made 1-Allylpiperazine endures. We aim to remain the direct link between skilled manufacturing and the teams reshaping the landscape of science and technology. By sharing not just product, but experience, data, and practical advice, we help every customer move from concept to completion with confidence grounded in fact, history, and direct partnership.