Method for preparing methyldopa from alpha-methyl-(3,4-dimethoxy phenyl)-alpha-aminopropionitrile by microwave hydrolysis method
A technology of dimethoxyphenyl and methyldopa, which is applied to the preparation of methyldopa by hydrolyzing α-methyl-(3,4-dimethoxyphenyl)-α-aminopropionitrile by microwave hydrolysis In this field, it can solve the problems of long reaction time, more acidic wastewater, and increased by-products, and achieve the effects of reducing energy and economic costs, reducing acidic wastewater discharge, and improving purity and output.
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Embodiment 1
[0042] In a two-neck flask equipped with a thermometer and a stirrer, add 20.7 g (0.051 mol) of 9% concentrated hydrochloric acid. Cool to 0~5°C with ice water. Slowly add 2.18 g (0.0085mol) of DL-2-amino-3-(3,4-dimethoxyphenyl)-2-methyl-propionitrile hydrochloride [or L-2-amino-3-( 3,4-dimethoxyphenyl)-2-methyl-propionitrile hydrochloride, the same for the following examples] was dissolved in ice-cold concentrated hydrochloric acid. Stir vigorously for 1-2 hours after addition. Warm up to room temperature after the reaction is complete. The reaction mixture was placed in a chemical experiment temperature-controlled microwave instrument, and irradiated for 15 minutes at a microwave power of 250 watts. After the reaction was completed, the temperature was raised to room temperature, and N was directly introduced into the reaction mixture slowly. 2 , while extracting excess HCl by distillation under reduced pressure. Adjust the pH value of the solution with ammonia water an...
Embodiment 2
[0044] In a two-neck flask equipped with a thermometer and a stirrer, add 10.3 g (0.051 mol) of 18% concentrated hydrochloric acid. Cool to 0~5°C with ice water. Slowly add 2.18 g (0.0085mol) of DL-2-amino-3-(3,4-dimethoxyphenyl)-2-methyl-propionitrile hydrochloride [or L-2-amino-3-( 3,4-dimethoxyphenyl)-2-methyl-propionitrile hydrochloride, the same for the following examples] was dissolved in ice-cold concentrated hydrochloric acid. Stir vigorously for 1-2 hours after addition. Warm up to room temperature after the reaction is complete. The reaction mixture was placed in a chemical experiment temperature-controlled microwave instrument, and irradiated for 15 minutes at a microwave power of 250 watts. After the reaction was completed, the temperature was raised to room temperature, and N was directly introduced into the reaction mixture slowly. 2 , while extracting excess HCl by distillation under reduced pressure. Adjust the pH value of the solution with ammonia water a...
Embodiment 3
[0046] In a two-necked flask equipped with a thermometer and a stirrer, add 34.4 grams (0.051 mol) of 12% hydrobromic acid. Cool to 0~5°C with ice water. Slowly add 2.18 g (0.0085mol) of DL-2-amino-3-(3,4-dimethoxyphenyl)-2-methyl-propionitrile hydrochloride [or L-2-amino-3-( 3,4-dimethoxyphenyl)-2-methyl-propionitrile hydrochloride, the same for the following examples] was dissolved in ice-cold concentrated hydrochloric acid. Stir vigorously for 1-2 hours after addition. Warm up to room temperature after the reaction is complete. The reaction mixture was placed in a chemical experiment temperature-controlled microwave instrument, and irradiated for 15 minutes at a microwave power of 250 watts. After the reaction was completed, the temperature was raised to room temperature, and N was directly introduced into the reaction mixture slowly. 2 , while extracting excess hydrobromic acid by distillation under reduced pressure. Adjust the pH value of the solution with ammonia wa...
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