Claims
- 1. A process to produce compounds represented by a formula (II);
- 2. The production process according to claim 1, wherein the base is a tertiary amine.
- 3. The production process according to claim 1, wherein the group represented by R1 in the formula (I) is a group represented by the following formula;
- 4. The production process according to claim 1, wherein the compound represented by the formula (I) is methyl 2-[(2-isopropoxy-6-trifluoromethylpyrimidine-4-yl)oxymethyl]phenylacetate.
- 5. Compound represented a formula (I),
- 6. Compounds represented by a formula (II),
- 7. A process for producing acrylic acid derivatives represented by a formula (III);
- 8. The process for producing acrylic acid derivatives according to claim 7, wherein the base is a tertiary amine.
- 9. The process for producing acrylic acid derivatives according to claim 7, wherein the compound represented by the general formula (I) is methyl 2-[(2-isopropoxy-6-trifluoromethylpyrimidine-4-yl)oxymethyl]phenylacetate and the compound represented by the general formula (III) is 3-methoxy-2-[2-{(2-isopropoxy-6-trifluoromethylpyrimidine-4-yl)oxymethyl}phenyl]acrylic methyl.
- 10. A process for producing compounds represented by a formula (IV);
- 11. A process for producing compounds represented by a formula (IV);
- 12. The production process according to claim 1, wherein the group represented by R1 in the compound represented by the formula (II) is a group represented by the following formula;
- 13. The production process according to claim 10, wherein the group represented by R1 in the compound represented by the formula (II) is a group represented by the following formula;
- 14. The production process according to claim 10, wherein the compound represented by the formula (II) is 3-hydroxy-2-[2-{(2-isopropoxy-6-trifluoromethylpyrimidine-4yl)oxymethyl}phenyl]acrylic methyl.
- 15. The production process according to claim 11, wherein the compound represented by the formula (II) is 3-hydroxy-2-[2-{(2-isopropoxy-6-trifluoromethylpyrimidine-4yl)oxymethyl}phenyl]acrylic methyl.
- 16. A process for producing compounds represented by a formula (VI-1);
- 17. A process for producing compounds represented by a formula (VI-1);
- 18. The process for producing compounds represented by the formula (VI-1) according to claim 17, wherein the step to O-alkylate the compound represented by the formula (V) is to O-alkylate a compound represented by the formula (V) while maintaining the concentration of the base in the aqueous layer at 10 wt % or lower.
- 19. The process for producing compounds represented by the formula (VI-1) according to claim 16, characterized in that the step to O-alkylate a compound represented by the formula (V) is to O-alkylate a compound represented by the formula (V) while maintaining the concentration of the base in the aqueous layer at 6 wt % or lower.
- 20. The process for producing compounds represented by the formula (VI-1) according to claim 17, characterized in that the step to O-alkylate a compound represented by the formula (V) is to O-alkylate a compound represented by the formula (V) while maintaining the concentration of the base in the aqueous layer at 6 wt % or lower.
- 21. A process for producing compounds represented by a formula (VI-1);
- 22. The process for producing compounds represented by the formula (VI-1) according to claim 21, characterized in that the step to O-alkylate a compound represented by the formula (V) is a step to O-alkylate a compound represented by the formula (V) while maintaining the concentration of the alkali metal salt or the alkaline earth metal salt excluding the lithium salt of the compound represented by the general formula (V) at 10 wt % or lower.
- 23. The process for producing compounds represented by the formula (VI-1) according to claim 16, characterized in that either sodium hydroxide or potassium hydroxide is used as the alkali metal hydroxide.
- 24. The process for producing compounds represented by the formula (VI-1) according to claim 17, characterized in that either sodium hydroxide or potassium hydroxide is used as the alkali metal hydroxide.
- 25. A process for producing compounds represented by a formula (VI-2);
- 26. The process for producing compounds represented by the formula (VI-2) according to claim 25, characterized in that the step to O-alkylate a compound represented by the formula (V) is a step to O-alkylate the compound represented by the formula (V) while maintaining the concentration of either the lithium hydroxide or the lithium carbonate in the aqueous layer at 5 wt % or higher.
- 27. The process for producing compounds represented by the formula (VI-1) according to claim 16, wherein a quartenary ammonium salt is used as the phase-transfer catalyst.
- 28. The process for producing compounds represented by the formula (VI-1) according to claim 17, wherein a quartenary ammonium salt is used as the phase-transfer catalyst.
- 29. The process for producing compounds represented by the formula (VI-1) according to claim 19, wherein a quartenary ammonium salt is used as the phase-transfer catalyst.
- 30. The process for producing compounds represented by the formula (VI-1) according to claim 20, wherein a quartenary ammonium salt is used as the phase-transfer catalyst.
- 31. The process for producing compounds represented by the formula (VI-2) according to claim 25, wherein a quartenary ammonium salt is used as the phase-transfer catalyst.
- 32. The process for producing compounds represented by the formula (VI-1) according to claim 16, wherein a quartenary ammonium hydroxide is used as the phase-transfer catalyst.
- 33. The process for producing compounds represented by the formula (VI-1) according to claim 17, wherein a quartenary ammonium hydroxide is used as the phase-transfer catalyst.
- 34. The process for producing compounds represented by the formula (VI-1) according to claim 19, wherein a quartenary ammonium hydroxide is used as the phase-transfer catalyst.
- 35. The process for producing compounds represented by the formula (VI-1) according to claim 20, wherein a quartenary ammonium hydroxide is used as the phase-transfer catalyst.
- 36. The process for producing compounds represented by the formula (VI-2) according to claim 25, wherein a quartenary ammonium hydroxide is used as the phase-transfer catalyst.
- 37. A process for producing compounds represented by a formula (XII);
- 38. The production process according to claim 37, wherein the group represented by R1 in the compound represented by the formula (VII) is a group represented by the following formula;
- 39. A process for producing α-alkoxymethylenecarbonyl compounds represented by a formula (XV);
- 40. The process for producing compounds represented by the formula (XV) according to claim 39, characterized in that the step to formylate the isochromanone compound represented by the formula (XIII) is a step to formylate the compound represented by the formula (XIII) by using an formic acid ester.
- 41. An after-treatment process in a step to produce compounds represented by a formula (II);
- 42. The after-treatment process according to claim 41, characterized by using the C14 organic acid in an amount of 2.5 times mole or more of the the Lewis acid to be used.
- 43. The after-treatment process according to claim 41, wherein the C1-4 organic acid is acetic acid.
- 44. The after-treatment process according to claim 41, wherein the Lewis acid is titanium tetrachloride.
- 45. The after-treatment process according to claim 41, wherein the base is triethylamine.
- 46. The after-treatment process according to claim 41, wherein the group represented by R1 in the compound represented by the formula (I) is a group represented by the following formula;
RELATED APPLICATION
[0001] This application is a continuation-in-part application of U.S. patent application Ser. No. 09/869,458 filed Jun. 26, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09869458 |
Jun 2001 |
US |
Child |
10757321 |
Jan 2004 |
US |