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    51997-51-4

    Catalog No. EBD20538

    CAS 51997-51-4

    Name 4-Epoxypropanoxycarbazole

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    Basic Information

    Synonyms: 4-(2,3-Epoxypropoxy)-carbazole 4-Epoxypropanoxycarbazole 4-(2,3-Epoxypropoxy)carbazole CarvedilolIntermediates 4-Oxiranylmethoxy-9h-Carbazole 4-Glycidyloxycarbazole 4-(2-Oxiranylmethoxy)-9h-Carbazole 4-(2,3-Epoxypropaneoxy)Carbazole 4-(2,3-Epoxyporpanoxy)-Carbazole 4-(2,3-Epoxyporpaneoxy)Carbazo 4-(2,3-Epoxypropoxy)-9h-Carbazole 4-(2,3-Epoxypropanoxy)Carbazole 4-(2,3-EpoxyProxy)Carbazole 4-(oxiran-2-ylmethoxy)-9H-carbazole 4-(2,3  Epoxypropoxy)carbazole

    Molecular Formula: C15H13NO2

    Molecular Weight: 239.27

    MDL Number: MFCD03411884

    Categories: Materials Chemistry > Optoelectronic and Organic Semiconductor Materials > OLED and Organic Optoelectronic Precursors Materials Chemistry > Polymers and Macromolecular Materials > Epoxy and Epoxy Resin Precursors

    Product Description:
    4-(2,3-Epoxypropoxy)carbazole is a carbazole derivative functionalized with an epoxypropoxy side chain. This bifunctional molecule combines the electron-donating and hole-transporting properties of the carbazole core with the highly reactive epoxy group. Its primary application is as a key monomer or precursor in the synthesis of advanced functional materials. The carbazole unit is widely utilized in the development of organic light-emitting diodes (OLEDs), organic photovoltaics (OPVs), and other organic electronic devices due to its excellent charge-transport characteristics and thermal stability. The epoxy group allows for polymerization or cross-linking, enabling the formation of high-performance polymers, such as epoxy resins and polyethers, with enhanced thermal, mechanical, and optoelectronic properties. This compound is therefore crucial for creating cross-linkable hole-transport layers in OLEDs, photoconductive polymers, and other specialty polymeric materials where processability and final film properties are critical. It serves as a versatile building block at the intersection of polymer chemistry and materials science for optoelectronic applications.
    Physical Properties

    Melting Point: 130-132°C

    Boiling Point: 464.9 °C at 760 mmHg

    Flash Point: 166.4 °C

    Density: 1.327 g/cm3

    Analytical Data

    Appearance: pale yellow to almost white powder

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