Improved method for preparing penfuridol
A technology of pentafluridol and fluorophenyl, which is applied in the field of preparation of pentafluridol, can solve the problems of many impurities and low product purity, and achieve the effects of good purity, high yield and mild reaction
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Embodiment 1
[0049] (1) Synthesis of intermediate Ⅰ
[0050]Put 20 g (0.072 moles) of 4,4-bis(4-fluorophenyl) butanoic acid into a three-necked flask, stir and dissolve 172 g (2.00 moles) of methyl tetrahydrofuran, add 5.4 g (0.039 moles) of potassium carbonate, and control the temperature Below 10°C, slowly add 2.89g (0.076 mol) of lithium aluminum tetrahydrogen, and keep stirring at about 0-10°C for 1-2h. After the reaction, the temperature was controlled below 10°C, and 2.9g (0.161 mol) of water, 2.9g (0.011 mol) of 15% sodium hydroxide solution (mass fraction) and 8.7g (0.483 mol) of water were added dropwise in sequence. , naturally heated to 25°C-30°C for filtration, the filter cake was washed with methyl tetrahydrofuran, the combined filtrates were concentrated to dryness to obtain 17.5g of the product 4,4-bis(4-fluorophenyl)-1-butanol (yield 92.6%).
[0051] The general reaction formula is as follows:
[0052]
[0053] (2) Synthesis of Intermediate II
[0054] Under nitrogen...
Embodiment 2
[0062] (1) Synthesis of intermediate Ⅰ
[0063] Put 20 g (0.077 moles) of 4,4-bis(4-fluorophenyl) butanoic acid into a three-necked flask, stir and dissolve 172 g (2.38 moles) of tetrahydrofuran, add 5.4 g (0.052 moles) of neutral alumina, and control the temperature Below 10°C, slowly add 2.00g (0.072 mol) of diborane, keep warm at 0-20°C and stir for 2-3h. After the reaction was completed, the temperature was controlled below 10°C, and 2.9g (0.016 moles) of water, 2.9g (0.011 moles) of 15% sodium hydroxide solution, and 8.7g (0.483 moles) of water were added dropwise successively. After quenching, stir and naturally Raise the temperature to 25°C-30°C for filtration, wash the filter cake with tetrahydrofuran, combine the filtrates, and concentrate to dryness to obtain 17 g of 4,4-bis(4-fluorophenyl)-1-butanol (yield 84.1%).
[0064] (2) Synthesis of Intermediate II
[0065] Under nitrogen protection, get 9g (0.034 moles) of 4,4-bis(4-fluorophenyl)-1-butanol obtained in step...
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