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(3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid

    • Product Name (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid
    • Alias 3,5-Dimethylpyrazole-1-acetic acid
    • Einecs 429-210-0
    • 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
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    Specifications

    HS Code

    750402

    Iupac Name 2-(3,5-dimethyl-1H-pyrazol-1-yl)acetic acid
    Molecular Formula C7H10N2O2
    Molar Mass 154.17 g/mol
    Cas Number 6368-98-7
    Appearance White to off-white powder
    Melting Point 115-119°C
    Solubility In Water Slightly soluble
    Chemical Class Pyrazole derivative
    Smiles CC1=CC(=NN1)CC(=O)O
    Pka Approx. 3.8 (carboxylic acid group)
    Storage Conditions Store at room temperature, tightly closed, away from moisture
    Synonyms 3,5-dimethyl-1H-pyrazole-1-acetic acid
    Purity Typically ≥98% (commercial)

    As an accredited (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Brown glass bottle containing 100 grams of (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid, sealed, labeled with hazard symbols and product details.
    Shipping (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid is shipped in tightly sealed containers to prevent moisture ingress and contamination. The packaging complies with chemical transport regulations, offering protection from light and extreme temperatures. Appropriate hazard labeling and documentation are provided to ensure safe handling and compliance during transit. Temperature control may be specified if required.
    Storage Store (3,5-Dimethyl-pyrazol-1-yl)-acetic acid in a cool, dry, and well-ventilated area, away from incompatible substances such as strong oxidizers. Keep the container tightly closed and labeled. Protect from moisture and direct sunlight. Use chemical-resistant containers and avoid sources of ignition. Store according to local regulations and recommended safety guidelines for organic acids.
    Application of (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid

    Applications of (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid in Industrial Manufacturing

    As a direct manufacturer, we supply (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid to specialized sectors that demand precise performance and controlled integration. The following application scenarios reflect the concrete roles this compound fulfills in advanced industrial sectors, with a focus on technical compliance, formulation control, and established downstream processes.

    1. Controlled-Release Urease Inhibitors for Fertilizer Production

    (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid functions as a critical intermediate in the synthesis of urease inhibitors utilized in slow- and controlled-release fertilizer manufacturing. Incorporation takes place during the formulation of granulated urea-based and ammonium fertilizing agents, where strict purity and residue control standards must be met for agricultural safety.

    Industry compliance standards

    • Regulation (EU) 2019/1009 relating to fertilizer products
    • ISO 8157:2015 (Fertilizers and soil conditioners – Vocabulary)
    • GB/T 29401-2012 (Specifications of slow/controlled release fertilizer in China)
    • REACH compliance for raw material registration

    Typical usage ratio

    • 0.8–1.5% by weight relative to total urea content, adjusted for climate, substrate, and intended release period

    Downstream process integration

    • Added during the urea granulation or liquid blending stage prior to fertilizer pelletization
    • Mixing monitored for uniform inhibitor dispersion and stability under high-temperature processing

    Final product types

    • Urease inhibitor-enhanced NPK granules
    • Slow-release urea fertilizers
    • Stabilized liquid nitrogen fertilizers

    2. Agrochemical Synthesis as a Building Block for Pyrazole-Derived Active Ingredients

    Our material acts as a precursor in producing specific pyrazole-based actives for crop protection formulations, such as fungicides and herbicides. The direct introduction occurs at the fine chemical synthesis phase, where batch reaction conditions and trace level purity specifications are tightly controlled.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products
    • ISO 17025 certified laboratory testing for agrochemical actives
    • China GB 2763 Maximum Residue Limits for Pesticides
    • US EPA Pesticide Registration standards

    Typical usage ratio

    • 10–18% mole ratio as a core intermediate, depending on active ingredient yield targets and process efficiency

    Downstream process integration

    • Introduced in condensation and cyclization reaction steps during synthesis of novel fungicidal molecules
    • Product enters multi-step organic synthesis lines, followed by purification and formulation

    Final product types

    • Pyrazole-based fungicides (EC, SC, WG)
    • Selective herbicide technical concentrates
    • Micro-encapsulated crop protection agents

    3. Pharmaceutical Synthesis Intermediates for Heterocyclic APIs

    In pharmaceutical manufacturing, our compound is utilized as a heterocyclic intermediate in the development of non-steroidal anti-inflammatory drug (NSAID) cores and select central nervous system candidate APIs. The input stage is within GMP-regulated synthesis suites where precursor quality directly impacts downstream API purity profiles and regulatory filings.

    Industry compliance standards

    • ICH Q7A Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • USP/NF and EP/JP monographs for pyrazole derivatives
    • FDA 21 CFR Part 210/211 for process and documentation compliance
    • EDQM CEP where applicable

    Typical usage ratio

    • Stoichiometric role as a limiting reagent; typically 1:1 mole ratio for targeted alkylation/cyclization in API synthesis pathways

    Downstream process integration

    • Enters closed-system batch reactor for high-purity synthesis of pyrazole backbone structures
    • Incorporated at stage two or three of total synthetic sequence, sometimes with in situ conversion

    Final product types

    • NSAID API intermediates
    • Experimental CNS active pharmaceutical intermediates
    • Registered bulk pharmaceutical chemicals for further processing

    4. Specialty Polymer Modification for Heat-Resistant Materials

    Manufacturers in advanced materials use this compound as a chain-end modifier or crosslinking component in polyamide-imide and polybenzoxazole synthesis, enhancing thermal stability and chemical resistance. The addition is conducted during polymer precursor blending under inert atmospheric conditions to prevent side reactions that compromise material performance.

    Industry compliance standards

    • ISO 9001 certified QC for specialty polymer production
    • ASTM D5207 testing for high-temperature polymer applications
    • RoHS and REACH compliance for end-use in electronics/electrical fields
    • UL 94 standards for flame-retardant materials

    Typical usage ratio

    • 0.3–1.0% by polymer weight, dependent on polymerization degree and desired crosslink density

    Downstream process integration

    • Introduced into monomer/polymer blends in melt polycondensation or solution pre-polymerization phases
    • Real-time mixing control used to optimize component reactivity and maintain molecular weight distribution

    Final product types

    • High-performance polyamide-imide resins
    • Heat-resistant laminated prepregs
    • Specialty molded polymer components for automotive and aerospace

    5. Fine Chemical Derivatives for Analytical Reference Material Production

    Reference standard producers incorporate (3,5-dimethyl-pyrazol-1-yl)-acetic acid as a precisely quantified precursor for synthesizing calibrators and certified analytical standards. The integration occurs in ISO-accredited environments where traceability and batch consistency are documented for regulatory and laboratory use.

    Industry compliance standards

    • ISO 17034 General requirements for the competence of reference material producers
    • ISO/IEC 17025 Laboratory competence for reference material testing
    • Traceability to CRM (certified reference materials) requirements in analytical chemistry
    • OECD GLP for laboratory procedures

    Typical usage ratio

    • 1.2–7.8 mg per batch, precisely weighed for each standard preparation; quantity varies based on calibration curve and analyte concentration

    Downstream process integration

    • Employed during primary standard synthesis and purification steps
    • Followed by rigorous QC testing for stability and homogeneity

    Final product types

    • Reference materials for agrochemical and pharmaceutical analysis
    • Certified mass spectrometry and chromatography standards
    • Traceable internal standards for LIMS laboratories
    Free Quote

    Competitive (3,5-Dimethyl-Pyrazol-1-Yl)-Acetic Acid prices that fit your budget—flexible terms and customized quotes for every order.

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