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3,5-Bis(Trifluoromethyl)Benzhydrazide

    • Product Name 3,5-Bis(Trifluoromethyl)Benzhydrazide
    • Alias BTBH
    • Einecs 401-070-6
    • 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

    402234

    Chemical Name 3,5-Bis(Trifluoromethyl)Benzhydrazide
    Cas Number 6976-97-0
    Molecular Formula C9H6F6N2O
    Molecular Weight 272.15
    Appearance White to off-white solid
    Melting Point 158-161°C
    Solubility Slightly soluble in water
    Purity Typically ≥ 98%
    Storage Conditions Store at 2-8°C, protected from light and moisture

    As an accredited 3,5-Bis(Trifluoromethyl)Benzhydrazide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The chemical is packaged in a 10g amber glass bottle with a screw cap, labeled with product name, CAS, and safety information.
    Shipping 3,5-Bis(Trifluoromethyl)Benzhydrazide is shipped in tightly sealed containers to prevent moisture and contamination. It is transported under ambient conditions unless otherwise specified. Proper labeling and documentation accompany the package to ensure regulatory compliance and safe handling. Protective packaging safeguards against physical damage during transit.
    Storage 3,5-Bis(Trifluoromethyl)Benzhydrazide should be stored in a tightly sealed container at a cool, dry, and well-ventilated location, away from moisture, heat sources, and direct sunlight. Avoid contact with strong oxidizing agents. Keep the chemical clearly labeled and segregated from incompatible substances. Proper personal protective equipment (PPE) such as gloves and eyewear should be used when handling.
    Application of 3,5-Bis(Trifluoromethyl)Benzhydrazide

    Applications of 3,5-Bis(Trifluoromethyl)Benzhydrazide in Industrial Manufacturing

    3,5-Bis(Trifluoromethyl)Benzhydrazide serves as a specialized intermediate for high-value chemical synthesis. As a manufacturer, we support commercial production across several advanced sectors requiring strict quality control, regulatory compliance, and validated process integration. Below, we present real industrial uses, regulatory bases, process specifics, and final product types where this compound plays a pivotal role in downstream value creation.

    1. High-Performance Agrochemical Synthesis

    This compound forms a key hydrazide intermediate in the synthesis routes of advanced crop protection agents, especially fluorinated fungicides and insecticides. Agrochemical formulators integrate this intermediate for targeted molecule construction where high fluorine content enhances rainfastness and chemical stability. Accurate process control is essential at the hydrazinolysis and coupling stages.

    Industry compliance standards

    • ISO 9001:2015 Quality Management for manufacturing
    • FAO/WHO guidelines for pesticide specifications
    • REACH registration for chemical intermediates
    • Chinese Import Pesticide Regulation (ICAMA)

    Typical usage ratio

    • Applies at 1.05–1.15 molar equivalents relative to aryl precursors in hydrazide condensation
    • Final dosage adjusted for target yield and side reaction minimization

    Downstream process integration

    • Introduced during core ring functionalization in batch or semi-batch reactors
    • Often followed by acylation or cyclization to yield final active molecule

    Final product types

    • Fluorinated triazole fungicides
    • Pyrazole-based seed treatments
    • Precursor for co-formulant additives in agrochemical mixtures

    2. Pharmaceutical Intermediate for Active Ingredient Synthesis

    The molecule is employed in the scalable production of trifluoromethylated APIs, particularly in antihypertensive and CNS drug classes. It acts as a building block for medicinal chemists developing next-generation fluorinated drug substances, especially where high metabolic stability and selective bioactivity are needed. Entry into GMP-validated process streams is tightly controlled.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP-NF/EP raw material specifications
    • FDA DMF submission requirements
    • ISO 13485 for pharmaceutical quality systems

    Typical usage ratio

    • 0.90–1.10 molar equivalents in key hydrazinolysis and condensation sequences
    • Adjusted for route-specific yield and impurity specifications

    Downstream process integration

    • Charged in stepwise heterocycle assembly and N-N bond construction phases
    • Followed by purification, crystallization, or further functional group modification

    Final product types

    • Fluorinated CNS APIs (e.g., anxiolytics and mood stabilizers)
    • Antihypertensive intermediates for final FDA-approved formulations
    • Specialty medicinal building blocks for clinical development

    3. Specialty Electronic Chemicals (OLED and Organic Semiconductor Industries)

    3,5-Bis(Trifluoromethyl)Benzhydrazide provides critical trifluoromethyl hydrazide functionality needed for synthesis of electron-transport and hole-blocking materials in organic optoelectronic manufacturing, including OLED displays and organic solar cells. Customers require high batch consistency and minimal metal or halide contamination to meet semiconductor industry standards.

    Industry compliance standards

    • SEMATECH requirements for semiconductor chemical purity
    • IEC 61340-5-1 electrostatic control in electronic production
    • RoHS Directive for hazardous substances
    • UL 94 for flammability testing of finished materials

    Typical usage ratio

    • Used at 1.0 molar equivalent in cross-coupling polymerization stages
    • Dosing may shift by ±0.05 based on impurity tolerance and process yield

    Downstream process integration

    • Fed into the synthesis of host and dopant materials for OLED stack preparation
    • In-line monitoring for residual hydrazide is standard during pre-polymer purification

    Final product types

    • OLED emitter layers
    • Charge transport materials for organic TFTs
    • Barrier films for advanced flexible electronics

    4. Fine Chemical Synthesis for Analytical Standards

    Our customers integrate this material in the custom synthesis of fluorinated reference standards and derivatization reagents used in chromatography and mass spectrometry laboratories. High-purity requirements apply for fit-for-purpose calibration products, especially in regulated analytical environments that monitor residual pesticides or pharmaceutical actives.

    Industry compliance standards

    • ISO/IEC 17025 accreditation for chemical reference standards
    • National Metrology Institute supplier qualification (e.g., NIST, BAM)
    • Good Laboratory Practice (GLP) environment
    • Relevant regional safety data and transportation laws

    Typical usage ratio

    • Neat or at 0.5–2.0 molar equivalents, depending on reaction with labeling groups or linker molecules
    • Dosing follows strict control per specific standard required

    Downstream process integration

    • Serves as a coupling or derivatization agent during pre-calibration material synthesis
    • Used as an endpoint for product identity confirmation via NMR and MS

    Final product types

    • Isotope-labeled and fluorinated chromatography standards
    • Analytical derivatization kits for regulated residue testing
    • Certified reference materials supplied to scientific labs and QA departments

    5. Fluorinated Polymer Additive Synthesis

    The hydrazide compound supports production of specialty additives for high-durability fluoropolymers. Industrial formulators use it to introduce targeted crosslinking or surface-modification ability for applications in chemical process liners, automotive seals, and non-stick coatings. The integration maintains low extractable profiles and weathering resistance demanded by end-use requirements.

    Industry compliance standards

    • ASTM D543 chemical resistance testing standard
    • UL 746B for polymeric materials in industrial environments
    • ISO 9001 and 14001 for manufacturing and environmental systems
    • EU Reach for polymer additive registration and reporting

    Typical usage ratio

    • 1.0–3.0% w/w as an additive in polymer batch formulations
    • Adjusted by compounding process, base polymer compatibility, and mechanical targets

    Downstream process integration

    • Melt compounded or solution blended into bulk or specialty fluoropolymer resins
    • Added pre-polymerization for in situ crosslinking or post-polymerization for surface functionalization

    Final product types

    • Chemical-resistant process tubing and tanks
    • Fluoropolymer-based automotive and aerospace gaskets
    • Advanced non-stick and low-friction industrial coatings
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