Method for preparing 2-nitro-4-trifluoromethylbenzonitrile
A technology of trifluoromethyl benzonitrile and trifluoromethyl halobenzene, which is applied in the field of preparation of benzonitrile compounds, can solve the problems of long reaction time, low yield, expensive nickel bromide, etc., and meet the reaction conditions Gentle, easy-to-process effect
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Embodiment 1
[0023] Under the protection of dry nitrogen, add 90.2g of N-methylpyrrolidone and 13.4g of cuprous cyanide to the reaction bottle, heat up and reflux to separate water, cool down to 110°C, add 22.5g of 2-nitro-4-chlorotrifluorotoluene , catalyst 1.1g (dimethylaminopyridine 0.7g, potassium iodide 0.4g). Start stirring, heat to 150-160°C, and stir for 12 hours. Subsequently, the temperature was lowered to room temperature under the protection of nitrogen, and a sample was taken for GC analysis, and the reaction of the raw materials was completed. Add 60.0 g of ethyl acetate and 20.0 g of water, stir, separate the organic phase, extract the water phase with 20.0 g of ethyl acetate, combine the organic phases, dry over anhydrous sodium sulfate, and vacuum rectify to obtain 19.8 g of the product, with a yield of 91.5 %, LC content 98.1%. 2-nitro-4-trifluoromethylbenzonitrile mass spectrum data (EI) shows: 216 (M + ), 170 (M-NO 2 ).
Embodiment 2
[0025] Under the protection of dry nitrogen, add 88.7g of DMF and 11.2g of cuprous cyanide to the reaction flask, heat up and reflux to separate water, after the water is separated, cool down to 105°C, add 22.5 g, catalyst 1.3g (pyridine 0.8, potassium chloride 0.5g). Start stirring, heat to 150-160°C, and stir for 12 hours. Subsequently, the temperature was lowered to room temperature under the protection of nitrogen, and a sample was taken for GC analysis, and the reaction of the raw materials was completed. Add 60.0 g of ethyl acetate and 20.0 g of water, stir, separate the organic phase, extract the water phase with 20.0 g of ethyl acetate, combine the organic phases, dry over anhydrous sodium sulfate, and vacuum rectify to obtain 19.1 g of the product, with a yield of 88.4 %, LC content 97.2%.
Embodiment 3
[0027] Under the protection of dry nitrogen, add 95.6g of sulfolane and 14.6g of cuprous cyanide to the reaction flask, heat up and reflux to separate water, after water separation, cool down to 110°C, add 22.5g of 3-nitro-4-chlorotrifluorotoluene g, catalyst 0.3g (diisopropylethylamine 0.2g, potassium bromide 0.1g). Start stirring, heat to 150-160°C, and stir for 12 hours. Subsequently, the temperature was lowered to room temperature under the protection of nitrogen, and a sample was taken for GC analysis, and the reaction of the raw materials was completed. Add 60.0 g of ethyl acetate and 20.0 g of water, stir, separate the organic phase, extract the water phase with 20.0 g of ethyl acetate, combine the organic phases, dry over anhydrous sodium sulfate, and vacuum rectify to obtain 18.4 g of the product, with a yield of 85.3 %, LC content 95.7%.
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