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1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde

    • Product Name 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde
    • Alias 1,3,5-Trimethylpyrazole-4-carbaldehyde
    • Einecs 797-733-6
    • 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

    549908

    Chemical Name 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde
    Molecular Formula C7H10N2O
    Molecular Weight 138.17
    Cas Number 23660-64-8
    Appearance White to off-white solid
    Boiling Point No data available
    Melting Point 94-97°C
    Solubility Soluble in most organic solvents
    Purity Typically ≥98%
    Storage Conditions Store at room temperature, keep container tightly closed
    Smiles Cc1nn(C)c(C)n1C=O
    Inchi InChI=1S/C7H10N2O/c1-5-7(3,2)9(4)8-6(5)10/h1-4H3

    As an accredited 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 25 grams of 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde, sealed with a screw cap and labeled with hazard warnings.
    Shipping 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde is shipped in tightly sealed containers, protected from moisture and light. It should be handled with appropriate safety precautions, including the use of gloves and eye protection. Transport is typically via ground or air, compliant with local chemical transport regulations. Store in a cool, dry, and well-ventilated area.
    Storage 1,3,5-Trimethyl-1H-pyrazole-4-carboxaldehyde should be stored in a tightly sealed container, placed in a cool, dry, and well-ventilated area, away from sources of ignition and incompatible substances such as oxidizing agents. Protect the chemical from moisture and direct sunlight. Ensure appropriate labeling, and keep it out of reach of unauthorized personnel and incompatible chemicals.
    Application of 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde

    Applications of 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde in Industrial Manufacturing

    As the direct manufacturer of 1,3,5-Trimethyl-1H-Pyrazole-4-Carboxaldehyde, we supply this specialty aldehyde to leading global industries where precision in synthesis, consistent quality, and strict process compliance are fundamental. Below are the major real-world industrial application scenarios, each with explicit details regarding compliance standards, formulation practice, manufacturing integration, and end-use product categories.

    1. Pharmaceutical Intermediates for Pyrazole-Based APIs

    This compound serves as a critical building block for synthesizing a range of pyrazole-containing pharmaceutical active ingredients, including anti-inflammatory agents, anti-cancer drugs, and CNS modulators. CMO and API manufacturers rely on our controlled-purity product to meet stringent quality demands during multistep synthesis involving condensation and cyclization stages, where aldehyde functionality is structurally decisive.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients
    • USP, EP, JP for relevant final API registration
    • 21 CFR Part 211 (US FDA cGMP for finished pharmaceuticals)
    • WHO GMP Certification

    Typical usage ratio

    • Range of 0.08–0.2 molar equivalents per reaction batch, depending on target API structure; stoichiometry may shift slightly based on process yield optimization and impurity control.

    Downstream process integration

    • Enters as an aldehyde reactant during initial condensation with hydrazine derivatives in stepwise synthesis pipelines; often undergoes catalytic transformation or derivatization before final ring closure and purification

    Final product types

    • Finished pharmaceutical active ingredients (e.g., selective COX-2 inhibitors, CNS agents)
    • Pharmaceutical intermediates for custom synthesis projects

    2. Agrochemical Synthesis: Pyrazole Herbicides & Fungicides

    Our material forms a key component in the synthesis of specialty pyrazole ring systems used in agrochemicals such as herbicides, fungicides, and pesticide synergists. Agrochemical chemistry teams integrate our product into multistep synthesis routes where precise aldehyde selectivity affects downstream yield and regulatory compliance for field application formulations.

    Industry compliance standards

    • ISO 9001:2015 Quality Management Systems in Chemical Synthesis
    • EPA Pesticide Registration Requirements (40 CFR Parts 150–180)
    • REACH Regulation (EU) No 1907/2006
    • FAO Specifications for plant protection products

    Typical usage ratio

    • 0.1–0.3 molar equivalents per synthetic batch, adjusted according to specific target molecule and impurity profile required for registration

    Downstream process integration

    • Introduced in the early-stage synthetic route for aldehyde condensation to generate pyrazole precursors; also applied in post-chlorination or methylation processes prior to formulation stage

    Final product types

    • Technical-grade herbicides and fungicides with pyrazole backbones
    • Pre-formulated plant protection agents ready for field dilution

    3. High-Performance Dye & Pigment Intermediate

    Advanced dye manufacturers leverage our material as a crucial intermediate for developing high-purity heterocyclic dye molecules, where the aldehyde function tunes chromophore characteristics and thermal stability. This application is especially relevant for specialty colorants used in inks, coatings, and electronic applications where trace impurity control is significant for end-use consistency.

    Industry compliance standards

    • ISO 9001:2015 for Specialty Chemicals
    • OEKO-TEX® Standard 100 (where colorants may contact textiles)
    • ETAD (Ecological and Toxicological Association of Dyes and Organic Pigments Manufacturers) Codes of Practice
    • REACH Registration if exported to the EU

    Typical usage ratio

    • Typically 0.05–0.15 molar equivalents, adjusted for desired shade depth and molecular extension during coupling reactions

    Downstream process integration

    • Reacted in key step with amine or hydrazine intermediates to build out conjugated dye structures; followed by filtration, recrystallization and purification stages prior to blending or micronization

    Final product types

    • Specialty dyes for industrial plastics and synthetic fibers
    • High-stability pigments for electronic displays and industrial inks

    4. Fine Chemical R&D for Specialty Heterocycle Libraries

    Custom synthesis organizations and research teams source our aldehyde to build novel heterocyclic compound libraries used in molecular screening for pharmaceuticals, agrochemicals, and advanced materials. Tight batch traceability and documented analytical support enable downstream QC and patent filing for novel entities within research and pilot scale projects.

    Industry compliance standards

    • GLP (Good Laboratory Practice) for chemical library generation
    • ISO 17025 for Analytical and Research Laboratories
    • Institutional safety regulations for handling precision chemicals
    • REACH requirements for R&D substances

    Typical usage ratio

    • 0.01–0.1 molar equivalents per reaction, selected for each scaffold exploration to balance reactivity and selectivity in structure-activity relationship (SAR) development

    Downstream process integration

    • Introduced as a starting material in high-complexity combinatorial synthesis pipelines; selectively incorporated for target scaffold elaboration and library diversity

    Final product types

    • Novel heterocyclic reference compounds
    • Compound libraries for screening (pharma, agro, and material science)

    5. Electronics: Organic Semiconductor Material Synthesis

    Specialty electronics manufacturers use this compound for synthesizing advanced organic semiconductor materials, where stringent structural control and high-purity aldehyde input are critical to device reliability in OLED displays and organic photovoltaics. Quality consistency and low trace contamination ensure reproducibility in thin film device assembly.

    Industry compliance standards

    • ISO 14001:2015 Environmental Management in Electronics
    • IEC 62474 for substance declaration in electronic components
    • RoHS Directive 2011/65/EU compliance for electronics materials
    • REACH (if shipped in or to the EU market)

    Typical usage ratio

    • Between 0.02 and 0.09 molar equivalents during target organic molecule synthesis; ratio adjusted based on desired chain length and side-group density

    Downstream process integration

    • Utilized in the (pre-)polymerization stage for aldehyde-containing semiconductor monomers; product then undergoes solution deposition or vapor-phase processing before device assembly

    Final product types

    • Small-molecule organic semiconductors for OLEDs
    • Sensor material layers for flexible electronics
    • Photovoltaic charge transport materials
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