Claims
- 1. A process for hydroxylating a phenolic compound with hydrogen peroxide through a hydroxylation reaction, comprising the step of carrying out said hydroxylation reaction in the presence of an effective quantity of a catalyst to catalyze said hydroxylation reaction comprising a triflate of a rare earth element, of scandium or of bismuth, wherein the phenolic compound corresponds to the general formula (I): ##STR6## wherein: R' represents a hydrogen atom, a saturated or unsaturated linear or branched acyclic or aliphatic hydrocarbon radical having 1 to 24 carbon atoms, a saturated or unsaturated monocyclic or polycyclic cycloaliphatic radical, or a saturated or unsaturated linear or branched aliphatic radical bearing a cyclic substituent, and
- R.sub.1, R.sub.2, R.sub.3 and R.sub.4, are identical or different, and represent:
- a hydrogen atom,
- a linear or branched alkyl radical having 1 to 6 carbon atoms,
- a linear or branched alkenyl radical having 2 to 6 carbon atoms,
- a linear or branched alkoxy radical having 1 to 6 carbon atoms,
- an acyl group having 2 to 6 carbon atoms, or
- a radical having the formula:
- R.sub.5 --OH,
- R.sub.5 --COOR.sub.6,
- R.sub.5 --X, or
- R.sub.5 --CF.sub.3,
- wherein R.sub.5 represents a valency bond or a linear or branched, saturated or unsaturated divalent hydrocarbon radical having 1 to 6 carbon atoms; R.sub.6 represents a hydrogen atom or a linear or branched alkyl radical having 1 to 6 carbon atoms;
- x represents a halogen atom, optionally, two groups R.sub.1 and R.sub.2 and R.sub.3 and R.sub.4 placed on two vicinal carbon atoms, together and with the carbon atoms bearing them, form a benzene ring.
- 2. A process according to claim 1, wherein the rare earth element is selected from the group consisting of lanthanides, yttrium, and mixtures thereof.
- 3. A process according to claim 2, wherein the lanthanides is selected from the group consisting of lanthanum, cerium, praseodymium, neodymium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium, and mixtures thereof.
- 4. A process according to claim 1, wherein the catalyst is a triflate of at least one ceric rare earth selected from the group consisting of La, Ce, Pr, and Nd.
- 5. A process according to claim 1, wherein the catalyst is a triflate of at least one rare earth element selected from the group consisting of Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb and Lu.
- 6. A process according to claim 1, wherein the rare earth element is lanthanum, ytterbium, or lutetium.
- 7. A process according to claim 1, further comprising the step of carrying out the hydroxylation reaction in the presence of an organic solvent.
- 8. A process according to claim 7, wherein the solvent is a polar, aprotic organic solvent having a polarity such that its dielectric constant is greater than or equal to 20 and a basicity such that it has a donor number of less than 25.
- 9. A process according to claim 8, wherein the polar organic solvent has a dielectric constant between 25 and 75.
- 10. A process according to claim 8, wherein the polar organic solvent has a donor number of less than or equal to 20.
- 11. A process according to claim 8, wherein the polar organic solvent is a nitrated compound, an aliphatic nitrile, an aromatic nitrile, tetramethylene sulfone, or propylene carbonate.
- 12. A process according to claim 11, wherein the polar organic solvent is nitromethane, nitroethane, 1-nitropropane, 2-nitropropane, nitrobenzene, acetonitrile, propionitrile, butane nitrile, isobutane nitrile, benzonitrile, or benzyl cyanide.
- 13. A process according to claim 7, wherein the molar ratio between the number of moles of organic solvent and the number of moles of phenolic compound ranges between 0.1 and 2.0.
- 14. A process according to claim 8, wherein the molar ratio is between 0.25 and 1.0.
- 15. A process according to claim 2, wherein the reaction is earned out in the presence of a polar, aprotic organic solvent having a polarity such that its dielectric constant is less than about 20 and a basicity such that it has a donor number greater than or equal to 15 and less than 25.
- 16. A process according to claim 15, wherein the polar organic solvent has a dielectric constant between 2 and 15.
- 17. A process according to claim 15, wherein the polar organic solvent has a donor number between 15 and 25.
- 18. A process according to claim 15, wherein the polar organic solvent is an aliphatic ether oxide, a cycloaliphatic ether oxide, an aromatic ether oxide, a neutral phosphoric ester, or ethylene carbonate.
- 19. A process according to claim 18, wherein the polar organic solvent is diethyl oxide, dipropyl oxide, diisopropyl oxide, dibutyl oxide, methyltert butyl ether, dipentyl oxide, diisopentyl oxide, ethylene glycol dimethyl ether diethylene glycol dimethyl ether dioxane, terahydrofuran, trimethyl phosphate, triethyl phosphate, butyl phosphate, triisobutyl phosphate, or tripentyl phosphate.
- 20. A process according to claim 15, wherein the molar ratio between the number of moles of organic solvent and the number of moles of phenolic compound ranges between 0.01 and 0.25.
- 21. A process according to claim 20, wherein the molar ratio is between 0.025 and 0.15.
- 22. A process according to claim 1, further comprising the step of carrying out the reaction in the presence of a ketone compound.
- 23. A process according to claim 22, wherein the ketone compound corresponds to formula (II):
- R.sub.a --CO--X--R.sub.b (II)
- wherein:
- R.sub.a and R.sub.b, identical or different, represent hydrocarbon radicals having 1 to 30 carbon atoms or form together a divalent radical, optionally substituted by one or more halogen atoms or functional groups which are stable under the reaction conditions, and
- X represents a valency bond, a --CO-- group, a --CHOH group, or a (--(R).sub.n) group, R representing an alkylene group, and n is an integer between 1 and 16.
- 24. A process according to claim 23, wherein the ketone corresponds to formula (II) in which R.sub.a and R.sub.b represent:
- linear or branched alkyl radicals,
- linear or branched alkenyl radicals,
- cycloalkyl or cycloalkenyl radicals containing 4 to 6 carbon atoms,
- mono- or polycyclic aryl radicals; in the latter case, the rings forming between them an ortho- or ortho- and pericondensed system or being linked together by a valency bond, arylalkyl or arylalkenyl radicals, or
- R.sub.a and R.sub.b together optionally form an alkylene or alkenylene radical containing 3 to 5 carbon atoms, optionally substituted by an alkyl radical or by a cycloalkyl or cycloalkenyl radical having 4 to 6 carbon atoms; 2 to 4 carbon atoms of the alkylene or alkenylene radicals optionally form part of one or two benzene rings optionally substituted by 1 to 4 hydroxyl or alkyl or alkoxy groups.
- 25. A process according to claim 23, wherein the ketone compound is a dialkylketone corresponding to formula (II) wherein R.sub.a and R.sub.b represent a linear or branched alkyl radical having 1 to 8 carbon atoms or an alkylphenone corresponding to formula (II) wherein R.sub.a represents a linear or branched alkyl radical having 1 to 6 carbon atoms and R.sub.b represents a phenyl radical.
- 26. A process according to claim 25, wherein the ketone compound used corresponds to formula (IIa): ##STR7## wherein; R.sub.c and R.sub.d, identical or different, represent a hydrogen atom or a substituent, optionally being an electo-donor group,
- n.sub.1, n.sub.2, identical or different, is a number equal to 0, 1, 2 or 3, and optionally the two carbon atoms situated in position a with respect to the two carbon atoms bearing the --CO group are linked together by a valency bond or by a --CH.sub.2 -- group thus forming a ketone ring.
- 27. A process according to claim 26, wherein the ketone compound corresponds to the general formula (IIa) in which R.sub.c and R.sub.d, identical or different, represent:
- linear or branched alkyl radicals having 1 to 4 carbon atoms,
- a phenyl radical,
- an alkoxy radical R.sub.10 --O in which R.sub.10 represents a linear or branched alkyl radical having 1 to 4 carbon atoms or the phenyl radical,
- a hydroxyl group, and
- a fluorine atom.
- 28. A process according to claim 26, wherein the ketone compound corresponds to the general formula (IIa) in which R.sub.c and R.sub.d, identical or different, represent a hydrogen atom or R.sub.c and R.sub.d are electro-donor groups in the 4,4' position, and n.sub.1, n.sub.2, identical or different, are equal to 0 or 1.
- 29. A process according to claim 26, wherein the ketone compound corresponds to the general formula (IIa) in which R.sub.c and R.sub.d, identical or different, represent a hydrogen atom; a methyl, ethyl, tert-butyl, phenyl radical, a methoxy or ethoxy radical, or a hydroxyl group.
- 30. A process according to claim 29, wherein the hydroxyl groups are in the 3,3' or 4,4' position.
- 31. A process according to claim 22, wherein the ketone compound is acetone, 3,3-dimethylbutan-2-one, methyl vinyl ketone, mesityl oxide, 2,4-dimethylpentan-3-one, diacetyl, dicyclohexyl ketone, acetophenone, benzophenone, 2-methylbenzophenone, 2,4-dimethylbenzophenone, 4,4'-dimethylbenzophenone, 2,2'-dimethylbenzophenone, 4,4'-dimethoxybenzophenone, 4-hydroxybenzophenone, 4,4'-dihydroxybenzophenone, benzoyl-4-biphenyl, benzoin, 4,4'-dihydroxybenzoin, 2,4-dimethylbenzoin, 4,4'-diimethylbenzoin, 4,4'-dimethoxybenzoin, 4,4'-difluorobenzoin, a-methoxy benzoin, .alpha.-ethoxybenzoin, deoxybenzoin, 4-hydroxydeoxybenzoin, 4-methyldeoxybenzoin, 4-methoxydeoxybenzoin, 4,4'-dimethoxydeoxybenzoin, 4,4'-difluorodeoxybenzoin, benzalacetone, benzil, cyclohexanone, .alpha.-isophorone, cyclohexenyl cyclohexanone, or fluorenone.
- 32. A process according to claim 1, wherein the phenolic compound corresponds to the general formula (I) wherein:
- R' represents:
- a hydrogen atom,
- a linear or branched alkyl radical having 1 to 4 carbon atoms,
- a cyclohexyl radical, or
- a benzyl radical,
- R.sub.1, R.sub.2, R.sub.3 and R.sub.4, identical or different, represent:
- a hydrogen atom,
- a linear or branched alkyl radical having 1 to 4 carbon atoms,
- a linear or branched alkoxy radical having 1 to 4 carbon atoms,
- a hydroxyl group,
- a halogen atom,
- a --CF.sub.3 group,
- a cyclohexyl radical, or
- a phenyl radical,
- optionally two groups R.sub.1 and R.sub.2 or R.sub.3 and R.sub.4 placed on two vicinal carbon atoms, together and with the carbon atoms bearing them, form a benzene ring.
- 33. A process according to claim 1, wherein R' represents a hydrogen atom and one of the radicals R.sub.1, R.sub.2, R.sub.3 and R.sub.4 represents a hydroxyl group, a methyl radical or a methoxy radical and the 3 others represent a hydrogen atom.
- 34. A process according to claim 1, wherein the phenolic compound is phenol, anisole, o-cresol, m-cresol and p-cresol.
- 35. A process according to claim 1, wherein the catalyst is present in an amount expressed by the ratio between the number of moles of triflate and the number of moles of hydrogen peroxide, ranging between 10.sup.-4 and 10.sup.-1.
- 36. A process according to claim 35, wherein said ratio is between 10.sup.-3 and 5.times.10.sup.-3.
- 37. A process according to claim 1, wherein the molar ratio hydrogen peroxide/phenolic compound of formula (I) is between 0.01 and 0.3.
- 38. A process according to claim 37, wherein said ratio is between 0.05 and 0.10.
- 39. A process according to claim 22, wherein the amount of ketone compound is between 1.times.10.sup.-3 mole and 10 moles per mole of hydrogen peroxide.
- 40. A process according to claim 22, wherein the amount of ketone compound is between 0.05 and 1.0 mole per mole of hydrogen peroxide.
- 41. A process according to claim 1, wherein the hydroxylation reaction is carried out at a temperature between 45.degree. C. and 150.degree. C.
- 42. A process according to claim 41, wherein the temperature is between 50.degree. C. and 80.degree. C.
Priority Claims (1)
Number |
Date |
Country |
Kind |
96 01596 |
Feb 1996 |
FRX |
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Parent Case Info
This application is an application under 35 U.S.C. Section 371 of International Application Number PCT/FR97/0023 filed on Feb. 5, 1997.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/FR97/00223 |
2/5/1997 |
|
|
8/13/1998 |
8/13/1998 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO97/29066 |
8/14/1997 |
|
|
US Referenced Citations (5)