Process for synthesizing Sevoflurane
A synthetic method, the technology of sevoflurane, which is applied in chemical instruments and methods, the preparation of organic compounds, and the preparation of ethers by exchanging organic parts, etc., can solve the problems of low conversion rate of hexafluoroisopropanol, increased manufacturing cost, and sevoflurane impurities. Many problems, to achieve the effect of easy operation without danger, low consumption of raw materials, and less discharge of three wastes
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Embodiment 1
[0031] Add 336g of hexafluoroisopropanol, 90g of paraformaldehyde, and 15ml of concentrated sulfuric acid into the reaction flask, stir and heat to 40°C~80°C for 15 hours, let stand to separate layers, remove concentrated sulfuric acid, stir and cool down to 0°C for crystallization 3 hour, filter, and the filtrate is 159.6g, and this filtrate is detected by gas chromatography (GC), and is confirmed to be the mixture of hexafluoroisopropanol and paraformaldehyde, which can be directly used as the reaction stock solution after simple filtration; The dried solid weighed 247.2g. GC detected that in the retentate, the content of bis-hexafluoroisopropanol triformal (n=3) was 52%, and the content of bis-hexafluoroisopropanol triformal (n=2 ) content is 42%, and bis-hexafluoroisopropanol-formal (n=1) content is <0.5%.
Embodiment 2
[0033] Take 123.6g of the solid obtained in Example 1 and add it to the reaction flask, heat to 40-45°C to dissolve, cool down to 20-25°C, add anhydrous aluminum trichloride (82.5g) in batches, and keep warm at 25-30°C for 24 Hours, cool down to 0°C, add 10% dilute hydrochloric acid (500ml) dropwise, let stand to separate layers, wash the organic layer successively with 5% NaOH aqueous solution (100ml×2), water (100ml×2), and dry over anhydrous sodium sulfate , to obtain 108.5 g of chloromethyl 2,2,2-trifluoro-1-(trifluoromethyl)ethyl ether, purity: 99.3% (GC method).
Embodiment 3
[0035]Get 123.6 g of the solid obtained in Example 1 and put it into the reaction flask, and add 100 ml of dichloromethane, add anhydrous aluminum trichloride (82.5 g) in batches at 0 ° C, keep warm at 25 ~ 30 ° C for 24 hours, and cool down to 0°C, add 10% dilute hydrochloric acid (500ml) dropwise, let stand to separate layers, wash the organic layer with 5% NaOH aqueous solution (100ml×2), water (100ml×2) successively, dry over anhydrous sodium sulfate, rectify The dichloromethane was removed to obtain 109.2 g of chloromethyl 2,2,2-trifluoro-1-(trifluoromethyl)ethyl ether with a purity of 97.3% (GC method).
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