Claims
- 1. Raney copper, which is doped with an effective quantity of a doping agent selected from the group boric acid, onium fluorides, salts of fluorine complex anions, and heteropoly acids.
- 2. Raney copper according to claim 1, in which the minimum quantity of doping agent is 10 ppm, based on the Raney copper.
- 3. Raney copper according to claim 1, in which the maximum quantity of doping agent is 10000 ppm, based on the Raney copper.
- 4. Raney copper according to claim 1, in which the onium fluorides correspond to formula I,R3XH+F− (I), wherein X is N or P and the symbols R are identical or different and signify H, C1-C20-alkyl, C2-C20-hydroxyalkyl, C1-C4-alkoxy-C2-C12-alkyl, C2-C8-cycloalkyl, C6-C10-aryl, C7-C12-aralkyl or C8-C12-alkaralkyl.
- 5. Raney copper according to claim 4, whereby the compound of formula I is NH4F.
- 6. Raney copper according to claim 1, whereby the salts of fluorine complex anions are alkali metal salts of formula II,Me+Y− (II), wherein Me+ is NH4− or an alkali metal cation, and Y− signifies a perfluorine complex anion from the group BE4−, AlF4−, PF6−, AsF6−, SbF6− or BiF6−.
- 7. Raney copper according to claim 1, whereby the heteropoly acids are those of formula III,Hn(ZM12O40) (III), wherein Z is P, B, Si or Ge, M is a metal from the group W, Mo and V, and n is an integer from 3 to 6.
- 8. A process for the production of amine-group-containing carboxylic acid salts by oxidation of amine-group-containing primary alcohols in an aqueous-alkaline reaction medium, in the presence of a modified Raney copper catalyst and at elevated temperature, whereby the Raney copper is doped with an effective quantity of a modifying agent selected from the group boric acid, onium fluorides, salts of fluorine complex anions and heteropoly acids.
- 9. Process according to claim 8, in which the catalyst is used in a quantity of 0.1 to 30% by weight, based on the primary alcohol.
- 10. Process according to claim 8, in which the amine-group-containing primary alcohols correspond to formula IV, wherein R1 and R2, independently of one another, are H, linear or branched, C1-C18-alkyl either unsubstituted or substituted by F, Cl, Br, —NH2, C1-C4-alkoxy, C1-C4-halogenalkyl or —COOH; C3-C8-cycloalkyl, C6-C10-aryl or C7-C12-aralkyl either unsubstituted or substituted by F, Cl, Br, —NH2, C1-C4-alkyl, C1-C4-alkoxy, C1-C4-halogenalkyl; phosphonomethyl; R1 and R2 together are tetramethylene or pentamethylene; or R1 and R2, independently of one another, have the significance R3—CH2OH; and R3 is linear or branched C1-C17-alkylene which is uninterrupted or is interrupted by C3-C8-cycloalkyl or C6-C10-aryl.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2387/98 |
Dec 1998 |
CH |
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Parent Case Info
This Application is a continuation of PCT/EP99/09267, filed Nov. 29, 1999.
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Dec 1975 |
A |
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Apr 1998 |
A |
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0 506 973 |
Oct 1992 |
EP |
642 861 |
Sep 1950 |
GB |
Non-Patent Literature Citations (2)
Entry |
Bashkirov et al, The Preparation of Higher Ketones by Dehydrogenation of Secondary Alcohols on Copper-Chromium and Nickel-Chromium Catalysts, 1964, Neftekhimiya, 4(2), pp. 298-300. Abstract.* |
Katona et al, Amorphous Alloy Catalysis. VII. Activation and Surface Characterization of an Amorphous Cu-Ti Alloy Catalyst Precursor in the Dehydrogenation of 2-Propanol and Comparison with Cu-Zr, 1995, Journal of Catalysis, 153, pp. 333-343. |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/EP99/09267 |
Nov 1999 |
US |
Child |
09/872653 |
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US |