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3-(Trifluoromethyl)Pyrid-2-Ylhydrazine

    • Product Name 3-(Trifluoromethyl)Pyrid-2-Ylhydrazine
    • Alias 3-(Trifluoromethyl)-2-pyridylhydrazine
    • Einecs 825-727-6
    • 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

    892426

    Product Name 3-(Trifluoromethyl)Pyrid-2-Ylhydrazine
    Molecular Formula C6H5F3N3
    Molecular Weight 177.12 g/mol
    Cas Number 887268-66-6
    Appearance Off-white to pale yellow solid
    Purity Typically ≥ 98%
    Melting Point 64-68°C
    Solubility Soluble in DMSO, DMF
    Storage Condition Store at 2-8°C, protected from light and moisture

    As an accredited 3-(Trifluoromethyl)Pyrid-2-Ylhydrazine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Brown glass bottle, 5 grams, sealed cap, hazard labeling, white printed label displaying chemical name, CAS number, supplier, and safety pictograms.
    Shipping **Shipping Description:** 3-(Trifluoromethyl)Pyrid-2-ylhydrazine should be shipped in tightly sealed containers, protected from moisture and light. It must comply with all applicable chemical transport regulations, packed according to hazardous material guidelines if classified as such. Ensure appropriate labeling, documentation, and use of absorbent material to prevent leaks during transit.
    Storage Store 3-(Trifluoromethyl)pyrid-2-ylhydrazine in a cool, dry, well-ventilated area away from sources of heat and ignition. Keep container tightly closed and protected from light and moisture. Avoid storage near incompatible materials such as strong oxidizers. Use appropriate chemical-resistant containers and ensure proper labeling. Handle using appropriate personal protective equipment to prevent skin and eye contact.
    Application of 3-(Trifluoromethyl)Pyrid-2-Ylhydrazine

    Applications of 3-(Trifluoromethyl)Pyrid-2-Ylhydrazine in Industrial Manufacturing

    3-(Trifluoromethyl)Pyrid-2-Ylhydrazine supports diverse production chains in fine chemical industries. Our direct manufacturing processes ensure consistent purity for sensitive downstream applications. We highlight leading industrial scenarios and their process integration below.

    1. Synthesis of Agrochemical Intermediates

    This compound is widely utilized in the agrochemical sector, primarily in the synthesis of advanced herbicide and insecticide intermediates, due to its trifluoromethyl functionality enhancing target activity. Process engineers select this intermediate for condensation and cyclization steps when developing new generation pyridyl-based actives for crop protection. The compound's hydrazine moiety allows selective derivatization, enabling finer control of final molecule properties throughout the pilot to commercial scale.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products
    • REACH Regulation (EC) No 1907/2006
    • ISO 9001:2015 Certified Quality Systems
    • China GB 2763 Maximum Residue Limits for Pesticides

    Typical usage ratio

    • 5–15% w/w in primary intermediate synthesis batches, adjusted according to targeted pyridyl substitution pattern and desired product purity.

    Downstream process integration

    • Added during hydrazinolysis stage after initial pyridine ring functionalization.
    • Participates in key condensation reactions under controlled temperature and inert conditions to maximize conversion rates.
    • Feeds directly into inline purification systems before downstream formulation.

    Final product types

    • Pyridyl-triazole herbicides
    • Pyridylhydrazone-based insecticides
    • Precursor compounds for crop protection active ingredients

    2. Active Pharmaceutical Ingredient (API) Intermediate Manufacturing

    Our material is a critical building block in the production of heterocyclic pharmaceutical intermediates, especially in novel anti-infective and CNS drug research. Medicinal chemists deploy it for introducing both pyridyl core and trifluoromethyl group, which are preferred motifs for modulating metabolic stability and bioavailability. Integration occurs during lead optimization and early scale-up in cGMP environments.

    Industry compliance standards

    • ICH Q7 Guidelines for API Manufacturing
    • USP <797> and <1078> for Quality Control and Purity
    • 21 CFR Part 211 (FDA cGMP)
    • European Pharmacopoeia Monographs

    Typical usage ratio

    • 2–8 mol% relative to main coupling partner, adjusting for yield optimization and impurity control based on the API synthetic route.

    Downstream process integration

    • Introduced as a nucleophile in key heterocyclic ring-forming reactions.
    • Applied at intermediate synthesis after deprotection of functionalized pyridine substrates.
    • Entries monitored by online HPLC and NMR for impurity profiling.

    Final product types

    • Heterocyclic-drug intermediates for CNS and anti-viral agents
    • Specialty fluoroalkylated building blocks for high-potency therapeutics
    • Reference standards for pharmaceutical development

    3. Development of Specialty Dyes and Pigments

    Research laboratories and specialty colorant producers use the hydrazine derivative to access novel fluorinated azo dye scaffolds. The electron-deficient trifluoromethyl group shifts absorption maxima, enabling unique color palettes in technical and safety marking applications. The compound enters azo coupling reactions with diazonium salts of electron-rich aromatics, fine-tuned for solvent and polymer compatibility.

    Industry compliance standards

    • OEKO-TEX Standard 100 for Restricted Substances
    • EU Regulation (EC) No 1907/2006 (REACH)
    • ISO 1248:2020 for Pigment Purity
    • EN 71-3:2021 for Toy Safety Pigment Migration

    Typical usage ratio

    • 3–12% w/w of dye batch depending on required chromatic strength and application substrate.

    Downstream process integration

    • Charged during diazo-coupling steps at 0–5°C with controlled pH.
    • Downstream filtration and salt removal before pigment paste formulation.
    • End-use assessment by UV-Vis and stability in polymers or inks.

    Final product types

    • Fluorinated azo dyes for technical textiles
    • Colorfast pigments for industrial coatings
    • Specialty marking inks for plastics and cables

    4. Fluorinated Fine Chemical Reference Compound Production

    Reference standard suppliers incorporate the compound as a high-purity analytical marker and synthetic standard. With rigorous quality control, the material enables accurate calibration in method development for trace-level analysis of trifluoromethylated pyridine compounds. It is recrystallized and QC-checked for spectroscopic consistency and stability in low-moisture packaging.

    Industry compliance standards

    • ISO/IEC 17025 Accredited Testing Laboratories
    • Chemical Traceability Standards per NIST SRM
    • Good Laboratory Practice (GLP) Guidelines
    • GHS Classification and Labeling for Shipping

    Typical usage ratio

    • Purity reference: 100% for direct standard solutions, diluted to 1–500 mg/L for calibration curves.

    Downstream process integration

    • Undergoes high-vacuum drying and precision weighing following production.
    • Packaged in amber vials for reference use, traceable via batch-specific COA.
    • Verified for structural integrity using NMR, LCMS, and combustion analysis per request.

    Final product types

    • Certified analytical reference standards
    • Calibration solutions for environmental and QC labs
    • Trace analysis kits for regulatory compliance monitoring
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