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1,2-Bis(1,1,2,2-tetrafluoroethoxy)ethane, also known as 1,2-bis(tetrafluoroethyl) ether (BTFE), is a fluorinated organic compound that is used as a solvent and reagent in a variety of laboratory experiments and scientific research applications. BTFE is a colorless liquid that has a low vapor pressure and is highly non-...
1,2-Bis(1,1,2,2-tetrafluoroethoxy)ethane, also known as 1,2-bis(tetrafluoroethyl) ether (BTFE), is a fluorinated organic compound that is used as a solvent and reagent in a variety of laboratory experiments and scientific research applications. BTFE is a colorless liquid that has a low vapor pressure and is highly non-flammable, making it a safe alternative to other organic solvents. BTFE is a versatile compound that can be used for a wide range of applications, from synthesizing pharmaceuticals to conducting biochemical experiments.
1,2-Bis(1,1,2,2-tetrafluoroethoxy)ethane has been utilized in the synthesis of various ligands. For instance, efficient synthesis methods have been developed for producing dimeric ligands like 1,2-bis(2,2′-bipyridinyl)ethane and 1,2-bis(1,10-phenanthrolinyl)ethane, which show intense fluorescence spectra, through oxidative coupling processes (Lehn & Ziessel, 1988) .
The compound has been a subject of study in conformational analysis. Research has explored the conformational populations and barriers to rotation in halogenated ethanes, providing insights into the effects of different substituents on molecular structure (Weigert & Roberts, 1968).
In materials science, derivatives of 1,2-bis(1,1,2,2-tetrafluoroethoxy)ethane, such as Bis(triethoxysilyl) ethane (BTESE), are used in creating organic–inorganic hybrid silica membranes. These membranes have shown potential in gas permeation and separation, demonstrating unique properties like high hydrogen permeance and hydrothermal stability due to their amorphous structures (Kanezashi et al., 2010) .
1,2-Bis(1,1,2,2-tetrafluoroethoxy)ethane and related compounds have been used in synthesizing coordination complexes with metals. These complexes are studied for their donor properties and spectral characteristics, which have implications in areas like catalysis and material chemistry (Levason et al., 1976).