Welcome to iChemical.com!

In the below part, please select the country you want us to ship to: Please note that once you've selected a shipping country, all pricing information on our website will be automatically updated to include door-to-door shipping to the country you specified.

    OK
    Get Quote Login
    1573-92-8

    Catalog No. EBD220463

    CAS 1573-92-8

    Name 9-Oxo-9H-fluorene-1-carboxylic acid

    Get Quote
    Basic Information

    Synonyms: 9-Oxo-9H-fluorene-1-carboxylicacid 9-fluorenone-1-carboxylicacid 9-oxo-1-fluorenecarboxylicacid 9-oxo-9h-fluorenecarboxylicacid 9-oxofluorene-1-carboxylicacid 9-fluorenone-1-carboxylicacid,98% 9-fluorenone-1-carboxylicacid,9-oxo-1-fluorenecarboxylicacid 9-fluorenone-1-carboxylicacid99%

    Molecular Formula: C14H8O3

    Molecular Weight: 224.21

    Categories: Materials Chemistry > Optoelectronic and Organic Semiconductor Materials > OLED and Organic Optoelectronic Precursors Materials Chemistry > Optoelectronic and Organic Semiconductor Materials > Thiophene, Pyrene, and Fluorene Derivatives

    Product Description:
    9-Fluorenone-1-carboxylic acid is an organic compound featuring a fluorenone core substituted with a carboxylic acid group at the 1-position. This structure combines the electron-accepting properties of the fluorenone moiety with the versatile reactivity and potential for functionalization offered by the carboxylic acid group. This compound serves as a key building block in the synthesis of advanced organic electronic materials. Its primary application lies in the development of organic light-emitting diodes (OLEDs) and other organic semiconductor devices. The fluorenone unit is a well-known electron-transporting (n-type) material, and the carboxylic acid group allows for its incorporation into larger conjugated systems, polymers, or as a site for further chemical modification to tune electronic properties, solubility, and film-forming characteristics. As a functionalized fluorenone derivative, it is specifically utilized in research and development of novel electroluminescent materials, charge transport layers, and as a precursor for more complex organic semiconductors. Its properties make it valuable for creating materials with specific energy levels and charge carrier mobilities essential for high-performance optoelectronic devices.
    Physical Properties

    Melting Point: 196-198 °C(lit.)

    Boiling Point: 461.6 °C at 760 mmHg

    Flash Point: 247.1 °C

    Density: 1.424 g/cm3

    Analytical Data

    Appearance: orange crystalline powder

    mg g kg ml l t