Bis DEAE Fluorenone is spelled using the International Phonetic Alphabet (IPA) as /bɪs diːeɪ ˌfluːrəˈnoʊn/. The word "bis" indicates that there are two DEAE groups attached to the molecule of fluorenone, a ketone compound. This spelling system is used in chemical language to specify the composition and structure of substances. The IPA provides a standard method of phonetic transcription of words, making it easier for scientists, researchers and chemists from different backgrounds and languages to understand each other.
Bis DEAE Fluorenone is a compound that is used in the field of chemistry. It is a specific derivative of the organic compound fluorenone which contains two substituents known as diethanolamine (DEAE). This compound is characterized by the presence of two DEAE groups attached to the fluorenone backbone.
Diethanolamine, commonly referred to as DEAE, is an organic compound with two hydroxyl groups and an amino group. It is often used in various industries such as pharmaceuticals, dyes, and detergents due to its versatile nature. DEAE can act as a pH buffering agent, a surfactant, or a metal chelating agent.
In the context of Bis DEAE Fluorenone, the presence of two DEAE groups provides unique properties and functionality to the fluorenone molecule. These substituents can interact with other molecules through hydrogen bonding, making Bis DEAE Fluorenone useful for applications that require specific interactions or stabilizations.
Bis DEAE Fluorenone is primarily used in laboratory research and organic synthesis. Its applications include catalysis, as a reactant in chemical reactions, or as a starting material for the synthesis of more complex derivatives. Its unique structure and properties make it a valuable tool for chemists conducting experiments or developing new molecules.
Overall, Bis DEAE Fluorenone is a compound that combines the properties of fluorenone with the functionality of diethanolamine. Its synthesis and applications are of interest in the field of chemistry for various laboratory research and industrial purposes.