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Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate

    • Product Name Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate
    • Alias ethyl 5-formyl-2,4-dimethyl-1H-pyrrole-3-carboxylate
    • Einecs 618-431-2
    • 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

    332732

    Chemicalname Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate
    Molecularformula C10H13NO3
    Molecularweight 195.22 g/mol
    Casnumber 94232-51-0
    Appearance Yellow to brown solid
    Meltingpoint 72-76°C
    Solubility Soluble in organic solvents (e.g., chloroform, methanol)
    Smiles CCOC(=O)C1=C(NC=C1C)C=O
    Inchi InChI=1S/C10H13NO3/c1-4-14-10(13)8-7(2)11-6(3)5-9(8)12/h5,11H,4H2,1-3H3
    Purity Typically >95%
    Storagetemperature 2-8°C (refrigerator)
    Synonyms 5-Formyl-2,4-dimethyl-1H-pyrrole-3-carboxylic acid ethyl ester
    Hazardclass Irritant

    As an accredited Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Packaged in a 10g amber glass vial, labeled with product name, purity, CAS number, batch number, and safety information.
    Shipping **Shipping Description:** Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate is shipped in sealed, labeled containers to ensure stability and prevent contamination. The chemical should be protected from light, moisture, and extreme temperatures during transit. It complies with standard chemical shipping regulations and includes Safety Data Sheet (SDS) documentation for safe handling and identification.
    Storage **Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate** should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from direct sunlight and sources of ignition. Protect from moisture and incompatible substances such as strong oxidizers. Store at ambient temperature and avoid prolonged exposure to air to prevent degradation. Ensure proper chemical labeling and safety precautions are followed.
    Application of Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate

    Applications of Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate in Industrial Manufacturing

    Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate supports several advanced manufacturing processes across the pharmaceutical, agrochemical, specialty pigment, and electronic materials sectors. As a core pyrrole derivative with defined reactivity, this material fits established compliance and processing requirements for diverse industrial value chains.

    1. Pharmaceutical Intermediate Synthesis

    Our raw material serves as a building block in the synthesis of active pharmaceutical ingredients, particularly within heterocyclic and pyrrole-based compounds. Customers utilize it during key condensation or alkylation stages for molecules targeting anti-inflammatory, antibacterial, or anti-fungal applications, where precise functional group introduction is mandatory. Downstream integration requires tight validation against pharmacopoeial controls during intermediate and final API stages.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice Guide for Active Pharmaceutical Ingredients
    • European Pharmacopoeia (Ph. Eur.) for API intermediates
    • USP General Chapter <823> if included in drug master files
    • FDA CFR Title 21, applicable sections for starting materials

    Typical usage ratio

    • Usage rate: 0.3–1.2 molar equivalents relative to targeted pyrrole moiety in API structure
    • Adjustment based on the number of pyrrole-functionalized steps required

    Downstream process integration

    • Added in solution-phase synthesis or solid-phase platforms
    • Used during stepwise condensation, acylation, or formyl transfer reactions
    • Handled in validated synthesis suites with in-process QC monitoring and impurity profiling

    Final product types

    • Heterocyclic anti-inflammatory APIs
    • Broad-spectrum anti-bacterial agents
    • Experimental anti-fungal actives
    • Synthetic drug intermediates for onward functionalization

    2. Agrochemical Active Ingredient Development

    This compound enables the design of novel herbicides, fungicides, and plant growth regulators due to its structural versatility. Agricultural chemistry labs employ it to synthesize core scaffolds for bioactive molecules, particularly those that require a dimethyl-pyrrole core. Batch records routinely include traceability for all synthesis stages, and product stewardship standards apply throughout.

    Industry compliance standards

    • FAO/WHO Specifications for Agricultural Pesticides and Intermediates
    • OECD Good Laboratory Practice (GLP) for safety and toxicology studies
    • REACH Annex VII-VIII for intermediates in agrochemical production
    • ISO 17025 for analytical and QC laboratories

    Typical usage ratio

    • Integration in 5%–20% by weight of precursor material per synthetic batch, depending on end-use group
    • Higher range reserved for multi-step syntheses or dual-functional products

    Downstream process integration

    • Feeds directly into intermediate synthesis of pyrrole-derived plant actives
    • Sulfonation and coupling reactions follow initial pyrrole core formation
    • Agrochemical R&D applies full batch traceability and safety data assessment

    Final product types

    • Selective herbicides for broadleaf and grass weed control
    • Systemic fungicides with enhanced environmental stability
    • Plant growth regulators for optimized crop yields
    • Prototype agricultural actives for regulatory field trials

    3. Specialty Pigment and Dye Synthesis

    Manufacturers use this material within the synthesis route for advanced pyrrole-based organic pigments, which deliver high color strength and weatherfastness in plastics, coatings, and inks. The aldehyde group ensures targeted nucleophilic coupling during pigment formation, critical for color reproducibility and lightfastness certified for OEM applications. Regulatory screening for user industries, including toys or food-contact applications, governs each batch delivered downstream.

    Industry compliance standards

    • ISO 9001:2015 for pigment production quality systems
    • EN 71-3 for pigments in toys and children’s products
    • Regulation (EC) No 1935/2004 for food-contact applications
    • ASTM D543 for pigment resistance testing in coatings and plastics

    Typical usage ratio

    • Formulation with 3%–10% loading into pigment precursor mixtures depending on target chromaticity
    • Adjustment based on dispersion method and color calibration protocols

    Downstream process integration

    • Initial feedstock for diazotization or condensation pigment routes
    • Blending with azo and phthalocyanine groups for hybrid pigment design
    • Employed during high-shear mixing and filtration steps ahead of micronization

    Final product types

    • Pyrrole-based pigments for technical inks and printing
    • Color masterbatches for plastics extrusion
    • Architectural and industrial coatings with high durability
    • Waterborne and solventborne dyes for specialty applications

    4. Electronic Materials & Functional Polymer Monomers

    Our product operates as a core monomer and functional group donor for synthesizing specialty conjugated polymers and precursors to conducting polymers used in electronic materials. Research and production teams leverage its structure for tuning charge transport, optical absorption, and processability in organic semiconductors, OLED layers, and printable electronic devices. Compliance documentation accompanies shipments to certified electronic manufacturing environments.

    Industry compliance standards

    • RoHS Directive 2011/65/EU for restriction of hazardous substances
    • IPC-4101C for materials in printed circuit board manufacture
    • ISO/TS 16949 for automotive electronics suppliers
    • JIS C 61000-4-2 for ESD testing of functional layers

    Typical usage ratio

    • Integrated at 2%–7% by mole in monomer feedstock during polymerization
    • Lower ratios preferred for thin-film devices; higher for bulk functional layers

    Downstream process integration

    • Feeds into oxidative coupling or Suzuki cross-coupling reactions
    • Blended with EDOT, thiophene, or fluorene monomers for property tuning
    • Enter roll-to-roll coating or inkjet-printing lines for device fabrication

    Final product types

    • Semiconducting polymer films for organic photovoltaics
    • Hole-transport layers in OLED displays
    • Flexible printed circuit materials
    • Pyrrole-functional adhesives in consumer electronics
    Free Quote

    Competitive Ethyl 5-Formyl-2,4-Dimethyl-1H-Pyrrole-3-Carboxylate prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

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    Tel: +8615371019725

    Email: admin@sinochem-nanjing.com

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