357-83-5Relevant articles and documents
Method for preparing fluorinating reagent and fluoride continuously by microchannel reactor
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Paragraph 0046-0048; 0089; 0094, (2019/06/07)
The invention discloses a method for preparing a fluorinating reagent and fluoride continuously by a microchannel reactor. The method comprises the following steps: introducing a mixed solution of amine and a solvent as well as fluorine-containing olefin into the microchannel reactor separately, performing reaction at the reaction temperature of subzero 20 to 30 DEG C for 30 to 180 seconds to prepare the fluorinating reagent, introducing the fluorinating reagent and a compound A into the microchannel reactor, performing mixing, heating and reaction to obtain a compound B, and performing hydrolysis reaction on the reaction liquid of the compound B to obtain a compound C. The method is simple to operate and safe to use, the use amount of the materials is greatly reduced, the process is environmentally-friendly and continuous, and the risk of high pressure and high temperature is avoided, so that high-yield continuous production of the fluorinating agent or fluoride is feasible. The comprehensive yield of the fluoride reaches 90 to 95 percent, basic quantitative reaction of the fluorinating reagent is realized and industrialized production is facilitated.
Process for the preparation of side chain-fluorinated alkyloxazoles, and new side chain-fluorinated alkyloxazoles
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, (2008/06/13)
A process for the preparation of side chain-fluorinated alkyloxazoles, wherein hydroxyalkyloxazoles are reacted with an α,α-difluoroalkylamine at pressures of under 2 bar, in the presence of an inert solvent boiling at above 100° C. (at normal pressure), and new fluorinated alkyloxazoles.
9α, 11β-substituted and 11β-substituted estranes
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, (2008/06/13)
9 alpha, 11 beta and 11 beta-substituted estranes are disclosed which exhibit elevated estrogenic and postcoital contraceptive activities. A process for their manufacture and their use in pharmaceuticals is also disclosed.