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2-Methylpiperazine

    • Product Name 2-Methylpiperazine
    • Alias N-Methylhomopiperazine
    • Einecs 206-734-6
    • 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

    375035

    Cas Number 109-08-0
    Molecular Formula C5H12N2
    Molecular Weight 100.16 g/mol
    Iupac Name 2-Methylpiperazine
    Appearance Colorless to pale yellow liquid
    Boiling Point 140-142 °C
    Melting Point -14 °C
    Density 0.897 g/mL at 25 °C
    Solubility In Water Miscible
    Flash Point 41 °C
    Refractive Index 1.455 at 20 °C
    Vapor Pressure 2.4 mmHg (20 °C)

    As an accredited 2-Methylpiperazine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The packaging for 2-Methylpiperazine contains 500 grams in a sealed amber glass bottle with a secure screw cap, labeled with handling instructions.
    Shipping 2-Methylpiperazine is shipped in tightly sealed containers, compliant with chemical safety regulations. It should be stored and transported in a cool, well-ventilated area, away from incompatible substances. Labeling and documentation must reference UN2734, indicating it is a corrosive liquid, requiring appropriate hazard labeling and shipping procedures for safe handling.
    Storage 2-Methylpiperazine should be stored in a tightly closed container in a cool, dry, and well-ventilated area, away from incompatible materials such as strong oxidizing agents and acids. Keep it out of direct sunlight and sources of ignition. Store at room temperature, and ensure proper labeling of containers. Use appropriate secondary containment to prevent leaks or spills.
    Application of 2-Methylpiperazine

    Applications of 2-Methylpiperazine in Industrial Manufacturing

    2-Methylpiperazine plays a crucial role in several high-value downstream segments where its molecular structure provides specialized performance in pharmaceuticals, agrochemicals, and high-end polymer intermediates manufacturing. The following application scenarios reflect our long-term supply partnerships with regulated industries and process innovators.

    1. API Intermediate Synthesis in Oncology Pharmaceuticals

    Major active pharmaceutical ingredient (API) manufacturers incorporate 2-methylpiperazine as a building block for several advanced cancer treatment molecules, including kinase inhibitors and targeted therapies. The presence of the methyl group provides improved pharmacokinetic profiles and supports selectivity within drug candidates, making it a preferred intermediate for new molecular entities under stringent process validation.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients
    • USP, Ph. Eur, JP pharmacopoeias as applicable to finished APIs
    • FDA 21 CFR Part 210/211 for drug manufacturing controls
    • EDQM CEP procedure for European registrations

    Typical usage ratio

    • Varies from 0.10 to 0.25 molar equivalents relative to core structure, dictated by the synthetic scheme and batch size optimization

    Downstream process integration

    • Introduced during the amination or cyclization stage under controlled temperature and pressure, followed by strict purification and in-process QC with HPLC/GC analysis before final API isolation

    Final product types

    • Cancer therapy APIs such as alkylating agents and kinase inhibitors
    • Oral and parenteral oncology drug formulations
    • Advanced intermediates for clinical trial supply

    2. Agrochemical Active Ingredient Preparation

    Leading crop protection manufacturers use 2-methylpiperazine as an amine reactant during the creation of pesticide and fungicide actives, where its steric profile reduces unwanted byproduct formation and improves target binding affinity. The chemical enters multi-step synthesis routes requiring precise nucleophilic substitution and catalyst controls for consistent impurity profiles in registered technical materials.

    Industry compliance standards

    • FAO/WHO specifications for pesticide technical materials
    • ISO 9001:2015 Quality Management for agrochemical production
    • REACH (EU), TSCA (USA) registration and notification obligations
    • China National Standards (GB/T)

    Typical usage ratio

    • 0.08–0.16 molar equivalents, adjusted based on specific molecule synthesis yield and residual risk assessment

    Downstream process integration

    • Fed into the condensation or alkylation stage via jacketed reactors with real-time monitoring; post-reaction mixture goes through aqueous workup and fractional distillation to ensure removal of unreacted base

    Final product types

    • Active substances for insecticides and fungicides
    • Plant-protection seed treatments
    • Technical concentrates for crop spraying formulations

    3. Reactive Polyamide Hardener in Epoxy Systems

    Industrial coatings manufacturers, especially in the electronics and heavy machinery sectors, formulate polyamide hardeners by incorporating 2-methylpiperazine into the backbone structure. This addition enhances flexibility, chemical resistance, and low-temperature curing performance, supporting the reliable function of end-user applications like corrosion protection and equipment assembly adhesives.

    Industry compliance standards

    • ISO 9001:2015 for Quality Management Systems in coatings
    • RoHS Directive (2011/65/EU) for electronics applications
    • ASTM D1652 and D6386 for epoxy component analysis
    • REACH registration for European markets

    Typical usage ratio

    • 2–7% by weight of total hardener formulation, variable per end-use viscosity and stoichiometric amine/epoxy balance

    Downstream process integration

    • Reacted with dimer acids and polyamine mixtures in a solvent phase reactor at 150–190°C, then blended with epoxy resin base prior to packaging; in-line viscosity and amine value monitored per batch release specifications

    Final product types

    • Epoxy coatings for anti-corrosion protection (marine, structural steel)
    • Potting and encapsulating compounds in electronics assembly
    • Construction adhesives and floor coatings

    4. Solubilizer and pH Regulator in Specialty Surfactant Production

    Specialty surfactant formulators for personal care, industrial cleaners, and textile processing utilize 2-methylpiperazine as a solubilizer and pH adjuster in complex amine oxide and amphoteric surfactant systems. Its favorable balance of hydrophilicity and volatility supports clear solution production and maintains the stability of sensitive actives in end formulations.

    Industry compliance standards

    • ISO 22716 GMP for cosmetic ingredients
    • AISE Charter for Sustainable Cleaning (industrial cleaners sector)
    • FDA 21 CFR 73.1 for indirect food additives (textile processing only)
    • COSMOS/Ecocert compliance for natural personal care applications

    Typical usage ratio

    • 0.5–2% by weight in concentrate, tailored to specific surfactant chemistry and finished product clarity requirements

    Downstream process integration

    • Added during final mixing prior to pH adjustment; dissolution occurs at 40–55°C in batch blenders followed by homogenization and microfiltration steps to achieve required clarity and amine residue limits

    Final product types

    • High-clarity liquid surfactant bases
    • Industrial cleaning concentrates
    • Specialty fabric processing agents
    • Shampoos and personal wash formulations
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    Certification & Compliance
    More Introduction

    2-Methylpiperazine: Practical Applications and Insights from the Manufacturing Floor

    Reliable 2-Methylpiperazine Crafted for Industry Needs

    Years of daily production have allowed us to get a close look at how 2-Methylpiperazine (2-MP) brings value to chemical synthesis and what sets it apart from similar piperazine derivatives. In every batch, purity gets top priority. Each drum, drum after drum, must hit the right specs because a small slip can cause headaches in downstream processing. Customers rely on a consistent product that reacts predictably and moves projects forward, not backwards.

    Product Overview and Specifications

    2-Methylpiperazine sits in the family of substituted piperazines we handle. The molecule features a piperazine ring with a methyl group attached at the second position, giving it a CAS number recognized by industry, and it stands out in performance. The model and grade we produce match a minimum purity threshold above 99%, checked with both GC and titration before it leaves our site. Typical lots average 99.5% or higher, and we set water content limits under 0.5%. Color, appearance, and physical state come under regular scrutiny — clear liquid or crystals, with no unusual odor or coloration — every shift and every day.

    By maintaining tight controls from synthesis through packaging, we have minimized off-spec batches to well under 1% annually. All product flows directly from reactor to finished container under nitrogen, preventing oxidative discoloration that could slow down pharma or agro clients’ catalytic steps. This direct oversight eliminates rehandling and keeps trace impurities and moisture below detection for most applications.

    The Role of 2-Methylpiperazine in Chemical Synthesis

    2-Methylpiperazine brings real value to pharma and specialty chemical projects. Chemists prefer it for building complex heterocyclic scaffolds, particularly in developing drugs where activity increases significantly with even small modifications to side chains. Attaching a methyl group at the 2-position changes both the electronic properties and steric hindrance of the molecule, leading to different selectivities or reactivities compared to unsubstituted piperazine or its 1-methyl variant.

    From our manufacturing side, the orders for 2-MP often go to R&D or pilot plant groups scaling up new APIs (Active Pharmaceutical Ingredients), anti-cancer leads, and even advanced polymers. 2-MP works well as an intermediate for new piperazine-containing drug molecules, because the methyl group allows control over pharmacokinetics, metabolic stability, or even water solubility. For agrochemical work, our clients use it to create active moieties with improved target selectivity or reduced off-target effects.

    Why Customers Choose 2-Methylpiperazine from a Manufacturer’s Standpoint

    Many buyers ask what makes 2-MP from our reactors different from the 1-methyl or straight piperazine products sitting on the shelves of major traders. Through direct process control, small and mid-sized projects receive a consistent response from us: there is traceability from raw material to finished pail. This tight traceability enables quick troubleshooting and reliable supply.

    Every plant has unique constraints, but our set-up allows transparent lot history and chain of custody documentation. We have learned that multinationals and boutique labs alike favor this setup, since every kilogram meets approval before shipment. As a manufacturer, we do not just repackage; we synthesize every lot and control side-products. This reduces regulatory hurdles for our end users, supporting swift tech transfer or regulatory filings.

    Comparing 2-Methylpiperazine to Other Piperazine Derivatives

    Chemically, 2-MP differs from regular piperazine and other methylated analogues in noticeable ways. Straight piperazine carries two NH groups available for reaction; its methylated siblings change that profile. 1-MP methylates a nitrogen directly, creating a different set of reactivity issues, especially for those building linker frameworks or targeting specific regioisomers.

    Because 2-MP has its methyl group locked on the ring’s second carbon, its nucleophilicity profile shifts—a detail that influences outcomes in alkylation, acylation, or coupling reactions. Our customers confirm this in both lab notebooks and pilot runs: 2-MP delivers a shorter timeline for reaction optimization in routes involving selective mono- or bis-alkylation, while cutting down on byproducts like dimers or overalkylated material.

    Compared to 1-methylpiperazine, 2-MP displays better handling in certain salt-formation schemes. The methyl group’s sterics open up pathways unavailable to its N-substituted cousin. This means certain downstream intermediates form with higher yield or fewer purification headaches, especially in complex molecule constructions.

    Specification and Storage Considerations from Manufacturing Experience

    Handling 2-MP in plant-scale settings uncovers practical points buyers sometimes overlook. This chemical starts as a stable, clear liquid but quickly picks up water if left uncapped or handled carelessly, especially in humid seasons. That moisture can wreak havoc in pharma synthesis, so we routinely instruct shipping and warehouse teams on proper drum sealing. Each container gets nitrogen blanketed and heat-sealed liners to minimize air ingress.

    Bulk container options have been tested in local and export markets. Steel drums with epoxy lining work best; poly drums have shown to leach subtle organic residues during long transport. At ambient temperatures, the product stays liquid and pours easily down to about 15°C, but if chills hit, it may solidify temporarily — never a permanent issue, as gentle warming restores full fluidity with no decomposition detected.

    Downstream Impact on End Uses

    In daily conversations with process engineers and formulators, we hear that 2-MP extends its reach far beyond initial expectations. Besides core applications in pharmaceutical intermediates, the chemical now serves in custom synthesis for genetic probes and novel colorants for high-value industrial inks. Each use calls for solid technical documentation and batch consistency—two things we deliver with seasoned teams and robust control at every stage.

    In custom polymer work, the methyl group’s influence narrows the distribution of product molecular weight, often reducing unwanted branching or crosslinking that plagues broader analogues. Many clients return not only for the product, but also for our technical team’s honest assessments during process troubleshooting.

    The Roadblocks and Solutions in 2-MP Supply Chains

    As supply dynamics shift and new environmental regulations roll in, we have adapted both our upstream logistics and onsite quality controls. Sourcing raw amines and methylation agents sometimes presents unexpected bottlenecks, especially with tightening export controls in feedstock-supplying regions. Rather than scrabbling for spot traders, we solidified long-term relationships with upstream suppliers willing to align specs tightly with our needs. Regular audits and monthly reports keep their deliveries in line, so finished 2-MP quality avoids seasonal swings or wild impurity spikes.

    Packaging also presented an early problem. Several years ago, poly-lined drums from local suppliers contaminated our product with tiny off-odors, only noticeable after skilled quality assurance staff caught slow drifts in purity statistics. We switched back to inner-epoxy-lined drums, a more expensive option, but one that pays off by preventing cross contamination. This extra cost has been absorbed in favor of peace of mind for our specialty chemical customers.

    Shipping remains an ongoing area for improvement, particularly in hot or humid climates. We maintain shipment records and stability studies on all exported lots, so each customer can track how physical properties hold up across oceans or warehouse delays. Regular process audits and full chain-of-custody tracking allow buyers to verify data at every link, not just take our word for it.

    Risk Management and Documentation Support

    Working directly with regulatory and safety teams at customer sites, we pick up on the documentation required not only for importing, but also for successful downstream use. We supply regulatory packages, from basic technical data sheets to full QP-signed impurity profiles. Each MSDS, certificate of analysis, and impurity profile is plant-specific and updated with every batch, removing ambiguities for registration or submission purposes.

    Our long-term customers rely on this detail when transferring knowledge between development projects or scaling a process to manufacturing. Some regulatory teams need signed statements on origin, traceability, and non-animal origin, all of which our records support without exception. Our processes are routinely inspected and certified by external auditors. We keep all logs in-house as well as offsite, guaranteeing complete documentation access even in unexpected audit scenarios.

    Why Direct Manufacturing Matters in the 2-Methylpiperazine Market

    Buyers weighing options have access to a wide range of generic traders and intermediaries — each with attractive pricing. We have seen firsthand how these options can lack direct oversight, increasing the risk of price swings, warehouse mixing, or out-of-spec ad-mixture, particularly with popular piperazine derivatives. Direct manufacturing avoids these concerns, supporting smoother approvals and reduced fails in downstream QA.

    Our reactors and QA systems run side by side, giving customers ongoing updates and supporting batch reservations well ahead of schedule. Volumes can scale without long lead times, something that sets direct manufacturers apart from import-only players. During unplanned surges in global demand — as seen during advances in new pharmaceuticals — this supply flexibility can mean the difference between a critical deliverable and a stalled program.

    Decades of practical scale-up and process engineering have honed processes for both high-purity API intermediates and large-scale contract runs. This experience allows the team to flag potential risks, mitigate delays on incoming raw materials, and keep each campaign on the expected timeline. We pass these real savings and expertise on to the customer, removing a major variable so project managers can focus on outcomes, not troubleshooting suppliers.

    Innovations and a Clear Path Forward

    The pool of end-uses for 2-MP will expand as new technologies demand more from the backbone of organic synthesis. Discussions with customer R&D chemists point to future use in green chemistry and biocatalysis, where purity takes on even greater significance. Regular peer reviews and customer feedback guide small but meaningful tweaks to both synthetic routes and QA protocols.

    Increasingly, the market is shifting towards higher environmental and safety standards. On a plant scale, this means switching to greener solvents, improved emissions controls, and further digitalization of batch records. Trials with continuous-flow synthesis technology have delivered impressive control over selectivity and yield, cutting batch times while reducing energy consumption. This leverages both plant efficiency and environmental responsibility — values that resonate with global pharmaceutical and agrochemical producers.

    From loading raw materials to final QA sign-off, every molecule of 2-Methylpiperazine that leaves the site carries the same care and scrutiny. Our chemists and operators work with buyers hand-in-hand, adapting packaging, documentation, and even shipping terms to solve new problems as regulations tighten worldwide.

    Summary of Experience-Based Benefits

    Making high-purity 2-Methylpiperazine brings daily insight into real-world issues faced by chemists and process engineers. Reliable direct supply, transparent documentation, flexible response to market and regulatory shifts, plus the practical know-how drawn from decades of operation all deliver clear advantages. Each kilogram supports not only the next step in a synthesis, but also knowledge transfer, technical compliance, and confidence in project deadlines.

    We remain dedicated to getting feedback from every customer, learning from plant mishaps, and applying lessons old and new to keep 2-Methylpiperazine at its best quality and usability. Supporting innovative research relies on more than just product specifications: it depends on trustworthy supply backed by real experience, a practical sense of customer pain points, and a straightforward approach to every order, batch, and shipment.