Claims
- 1. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing as the anion thereof, at least one of chloride, bromide and iodide and is electrolysed at a temperature up to 150.degree. C, using said metal as the anode, and at least one of alkali perchlorates, ammonium perchlorates, and tetrafluoborates, tetraphenylborates, and hexafluophosphates is used with the salt.
- 2. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein a solution of the H-acidic compound in a polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, the polar solvent being water or a mixture of water with at least one water-soluble organic compound, the electrolysis for said reaction being conducted in the presence of said polar solvent, and the reaction product of the H-acidic compound and the metal anode is recovered, the reaction product being stable to hydrolysis under reaction conditions.
- 3. Process according to claim 2, where the polar solvent is a mixture of water and at least one of tetrahydrofuran, dimethoxyethane, diethylene glycol dimethyl ether, and aliphatic or cyclic monobasic, dibasic or polybasic ether, pyridine, a tertiary amine, acetonitrile, dimethylsulphoxide, propylene carbonate, and dimethylformamide.
- 4. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is pentane-2,4,-dione, alkyl acetoacetate, alkyl malonate,1,1-dimethyl cyclohexane-3,5-dione, or ethylene diamino-bis-2-pentan-4-one.
- 5. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is ethyl mercaptan, propyl mercaptan, butyl mercaptan, amyl mercaptan, dithioethylene glycol, monothioethylene glycol, or thiophenol.
- 6. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is phenol, cresol, pyrocatechol, resorcinol, or hydroquinone.
- 7. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is acetylacetone.
- 8. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is ethylenediamino-bis-acetylacetone.
- 9. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is diethylmalonate.
- 10. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is ethylacetoacetate.
- 11. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions and is of the group ruthenium, rhodium, palladium, osmium, iridium, platinum, antimony, bismuth, silver, gold, cadmium, mercury, molybdenum, tungsten, tecnecium, and rhenium, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolyzed at temperatures up to 150.degree. C, using said metal as the anode.
- 12. A process according to claim 11, wherein said metal is of the group antimony, bismuth, cadmium, mercury, silver, platinum, gold.
- 13. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein the H-acidic compound or its solution in polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, wherein the H-acidic compound is at least one of an aromatic compound, a cycloaliphatic compound, a mercaptan, an enol, a phenol, a thiophenol, a 2,4-diketone, a 2,4-ketocarboxylic acid ester, a carboxylic acid ester with acidic hydrogen in the .alpha.-position, and a ketoimino compound.
- 14. Process according to claim 13, wherein the H-acidic compound is a mercaptan.
- 15. Process for the reaction of an H-acidic organic compound in which the acidic H-atom is bonded by oxygen or sulphur to the organic radical and which has a pK value of up to about 20, with a metal having a standard potential which is more positive than -1.66 volts and which does not or only incompletely reacts with the H-acidic compound under current-free conditions, wherein a solution of the H-acidic in a polar solvent is made conducting by addition of a soluble salt containing ions of at least one of chloride, bromide and iodide and is electrolysed at temperatures up to 150.degree. C, using said metal as the anode, the polar solvent being at least one of tetrahydrofuran, dimethoxyethane, diethylene glycol dimethyl ether, an aliphatic or cyclic monobasic, dibasic or polybasic ether, pyridine, a tertiary amine, acetonitrile, dimethylsulphoxide, propylene carbonate, and dimethylformamide.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8547/72 |
Oct 1972 |
ATX |
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Parent Case Info
This is a division of application Ser. No. 403,239, filed Oct. 3, 1973, now U.S. Pat. No. 3,964,983.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3730857 |
Tripp |
May 1973 |
|
3964983 |
Eisenbach et al. |
Jun 1976 |
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Divisions (1)
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Number |
Date |
Country |
Parent |
403239 |
Oct 1973 |
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