A kind of synthetic method of p-hydroxyphenylglycine methyl ester
A technology of p-hydroxyphenylglycine methyl ester and p-hydroxyphenylglycine, which is applied in chemical instruments and methods, preparation of organic compounds, chemical recovery, etc., can solve the problem of high raw material cost and transportation cost, unsuitable for commercial production, and environmental protection pressure. large and other problems, to achieve the effects of low cost, low environmental pollution and mild reaction conditions
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Embodiment 1
[0029] According to p-hydroxyphenylglycine: methanol molar ratio is 1: 25, p-hydroxyphenylglycine: silicotungstic acid mass ratio is 1: 0.2, carry out following reaction:
[0030] Immerse activated carbon in a saturated aqueous solution of silicotungstic acid, stir for 10-12 hours, filter to obtain a wet product, and dry it at 110°C for later use.
[0031] Mix 50g of p-hydroxyphenylglycine and methanol, stir evenly, add 1 N hydrochloric acid, stir at room temperature for 0.5 hours, then add activated carbon-supported silicotungstic acid, heat up to 60-65°C for reaction, and detect the end of the reaction by TLC. After the reaction, cool down, remove silicotungstic acid by suction filtration, concentrate the filtrate under reduced pressure to remove excess methanol, add 200ml of water to dissolve the concentrate, neutralize with ammonia water to pH=7, filter, and dry to obtain 49g of p-hydroxyphenylglycine methyl ester. The yield is 90.5% (based on p-hydroxyphenylglycine), and ...
Embodiment 2
[0034] According to p-hydroxyphenylglycine: methanol mol ratio is 1: 50, p-hydroxyphenylglycine: phosphomolybdic acid mass ratio is 1: 1, carries out following reaction:
[0035] Activated carbon-supported phosphomolybdic acid was prepared as in Example 1 for subsequent use.
[0036] Mix 50g of p-hydroxyphenylglycine and methanol, stir evenly, add 1 equivalent of trifluoroacetic acid, stir at room temperature for 1 hour,
[0037] Add activated carbon-loaded phosphomolybdic acid, heat up to 75-80°C for reaction, and detect the end point of the reaction by TLC. After the reaction, cool down, remove phosphomolybdic acid by suction filtration, concentrate the filtrate under reduced pressure to remove excess methanol, add 200ml of water to dissolve the concentrate, neutralize it with aqueous sodium bicarbonate to pH=7.5, filter, and dry to obtain p-hydroxyphenylglycine methyl The ester was 51 g, the yield was 94.3% (based on p-hydroxyphenylglycine), and the HPLC purity was 99.5%. ...
Embodiment 3
[0039] According to p-hydroxyphenylglycine: methanol molar ratio is 1: 30, p-hydroxyphenylglycine: phosphotungstic acid mass ratio is 1: 0.8, carry out following reaction:
[0040] Activated carbon-supported phosphotungstic acid was prepared according to the method in Example 1 for future use.
[0041] Mix 50g of p-hydroxyphenylglycine and methanol, stir evenly, add 0.5 equivalent of sulfuric acid dropwise, stir at room temperature for 30 minutes, add activated carbon-loaded phosphotungstic acid, heat up to 50-55°C for reaction, and detect the end point of the reaction by TLC. After the reaction, cool down, remove phosphotungstic acid by suction filtration, concentrate under reduced pressure to remove excess methanol, dissolve the concentrated solution in 200ml of water, neutralize with aqueous sodium hydroxide solution to pH=8.5, filter with suction, and dry to obtain p-hydroxyphenylglycine methyl The ester was 50 g, the yield was 92.4% (based on p-hydroxyphenylglycine), and ...
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