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Organofluorine chemistry impacts many areas of everyday life and technology.
In the area of organofluorine chemistry, many heptafluorides are known.
The principal use of hydrofluoric acid is in organofluorine chemistry.
Organofluorine chemistry began in the 1800s with the development of organic chemistry as a whole.
His early research in organofluorine chemistry led to his recruitment for the Manhattan Project.
Several compounds in organofluorine chemistry are also hexafluorides.
Compounds with C-F bonds fall into the realm of organofluorine chemistry.
The area of organofluorine chemistry often requires special techniques associated with the handling of fluorinating agents.
Caesium fluoride is also a popular source of fluoride in organofluorine chemistry.
DuPont's strength in organofluorine chemistry and cyanocarbon chemistry led to investigation of those systems.
His research focused on organofluorine chemistry, especially the synthesis of chemically non-reactive chlorofluorocarbons.
Hexafluoroacetone, building block in organofluorine chemistry.
R-22 is a versatile intermediate in industrial organofluorine chemistry, e.g. as a precursor to tetrafluoroethylene.
Silver(I) fluoride finds application in organofluorine chemistry for addition of fluoride across multiple bonds.
As well as some industrial applications, it is used as a reagent in inorganic and organofluorine chemistry.
In addition to his work on organofluorine chemistry, he authored the textbook "Cours de Chimie Organique."
Because of Miller's expertise in organofluorine chemistry, he was recruited by scientists of the Manhattan Project to synthesize and develop such materials.
This colourless salt was first described in 1992 and has since been commercialized for use in organofluorine chemistry for electrophilic fluorination.
Organofluorine chemistry describes the chemistry of organofluorine compounds, organic compounds that contain the carbon-fluorine bond.
The development of organofluorine chemistry was a spin-off from the Manhattan Project, during which elemental fluorine was produced on an industrial scale for the first time.
Miller and his team continued to develop organofluorine chemistry after the end of World War II and methoxyflurane was synthesized in 1948.
One of his areas of expertise concerned organofluorine chemistry, and he pioneered the use of gas-liquid chromatography at Sheffield University in the 1950s.
In contrast to thionyl chloride and bromide, thionyl fluoride is not useful in organofluorine chemistry.
More reactions are found in organosilicon chemistry, organosulfur chemistry, organophosphorus chemistry and organofluorine chemistry.
The development of organofluorine chemistry has contributed many reagents of value beyond organofluorine chemistry.