Claims
- 1. A Group VA ylide defined by the following formula: ##STR31## wherein R.sub.1, R.sub.2, R.sub.3, R.sub.4 and R.sub.5 are either alike or different members selected from the group consisting of hydrogen, alkyl radicals having from about one to about 24 carbon atoms, aryl radicals having from about six to about 20 carbon atoms, alkenyl radicals having from about two to about 30 carbon atoms, cycloalkyl radicals having from about three to about 40 carbon atoms, aralkyl and alkaryl radicals having from about six to about 40 carbon atoms, hydrocarbyl groups carrying halogen, hydroxyl, alkoxy or aryloxy, or an alkyl, aryl, alkenyl, cycloalkyl, aralkyl or alkaryl group carrying a sulfonato group, provided that at least one of R.sub.1, R.sub.2 and R.sub.3 is an alkyl, aryl, alkenyl, cycloalkyl, alkaryl or aralkyl carrying a sulfonato group; M is sulfur or oxygen; F is phosphorus, arsenic or antimony; and further provided that F is bonded to the groups R.sub.1, R.sub.2 and R.sub.3 through carbon.
- 2. An ylide as defined in claim 1 wherein F is phosphorus and M is oxygen.
- 3. An ylide as defined in claim 1 wherein each of R.sub.1, R.sub.2 and R.sub.3 is phenyl, one of which is substituted with a sulfonato group.
- 4. An ylide as defined in claim 2 wherein each of R.sub.1, R.sub.2 and R.sub.3 is phenyl, one of which is substituted with a sulfonato group.
- 5. An ylide as defined in claim 1 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 6. An ylide as defined in claim 2 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 7. An ylide as defined in claim 3 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 8. An ylide as defined in claim 4 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 9. A process for preparing a Group VA ylide defined by the following formula: ##STR32## which comprises reacting a ligand defined by the following formula: ##STR33## with an alpha-substituted ketone or aldehyde or an alpha-substituted thioketone or thioaldehyde defined by the following formula: ##STR34## to obtain the salt defined by the following formula: ##STR35## and thereafter reacting the salt so obtained with a base, wherein R.sub.1, R.sub.2, R.sub.3, R.sub.4 and R.sub.5 are either alike or different members selected from the group consisting of hydrogen, alkyl radicals having from about one to about 24 carbon atoms, aryl radicals having from abut six to about 20 carbon atoms, alkenyl radicals having from about two to about 30 carbon atoms, cycloalkyl radicals having from about three to about 40 carbon atoms, aralkyl and alkaryl radicals having from about six to about 40 carbon atoms, hydrocarbyl groups carrying halogen, hydroxyl, alkoxy or aryloxy, or an alkyl, aryl, alkenyl, cycloalkyl, aralkyl or alkaryl group carrying a sulfonato group, provided that at least one of R.sub.1, R.sub.2 and R.sub.3 is an alkyl, aryl, alkenyl, cycloalkyl, alkaryl or aralkyl carrying a sulfonato group; M is sulfur or oxygen; F is phosphorus, arsenic or antimony; X is a halogen radical, a tosyl group or an acetate group; and further provided that F is bonded to the groups R.sub.1, R.sub.2 and R.sub.3 through carbon.
- 10. A process as defined in claim 9 wherein E and F are both phosphorus and M is oxygen.
- 11. A process as defined in claim 9 wherein each of R.sub.1, R.sub.2 and R.sub.3 is phenyl, one of which is substituted with a sulfonato group.
- 12. A process as defined in claim 10 wherein each of R.sub.1, R.sub.2 and R.sub.3 is phenyl, one of which is substituted with a sulfonato group.
- 13. A process as defined in claim 9 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 14. A process as defined in claim 10 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 15. A process as defined in claim 11 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 16. A process as defined in claim 12 wherein R.sub.4 is hydrogen and R.sub.5 is phenyl.
- 17. A process as defined in claim 16 wherein X is chlorine.
- 18. A process as defined in claim 9 wherein the reaction between the ligand and the ketone or aldehyde is carried out at a temperature of about 20.degree. to about 200.degree. C. for about one to about 24 hours.
- 19. A process as defined in claim 9 wherein the reaction between the ligand and the ketone or aldehyde is carried out at a temperature of about 50.degree. to about 150.degree. C. for about two to about eight hours.
- 20. A process as defined in claim 17 wherein the reaction between the ligand and the ketone or aldehyde is carried out at a temperature of about 20.degree. to about 200.degree. C. for about one to about 24 hours.
- 21. A process as defined in claim 17 wherein the reaction between the ligand and the ketone or aldehyde is carried out at a temperature of about 50.degree. to about 150.degree. C. for about two to about eight hours.
- 22. A process as defined in claim 9 wherein said salt is converted to the corresponding ylide by reacting with a base at a temperature of from about room temperature to about 200.degree. C. for about one minute to about four hours.
- 23. A process as defined in claim 9 wherein said salt is converted to the corresponding ylide by reacting with a base at a temperature of from about room temperature to about 50.degree. C. for about one to about two hours.
- 24. A process as defined in claim 17 wherein said salt is converted to the corresponding ylide by reacting with a base at a temperature of from about room temperature to about 200.degree. C. for about one minute to about four hours.
- 25. A process as defined in claim 17 wherein said salt is converted to the corresponding ylide by reacting with a base at a temperature of from about room temperature to about 50.degree. C. for about one to about two hours.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of our U.S. patent application Ser. No. 179,079, filed Aug. 18, 1980, now U.S. Pat. No. 4,293,502 entitled "Nickel Ylides"; U.S. patent application Ser. No. 179,080, filed Aug. 18, 1980, entitled "Process for the Preparation of Nickel Ylides Containing Ylide Ligands With a Sulfonated Group V Component"; U.S. patent application Ser. No. 179,076, filed Aug. 18, 1980, now U.S. Pat. No. 4,293,727 entitled "Process for the Oligomerization of Ethylene"; and U.S. patent application Ser. No. 179,005, filed Aug. 18, 1980, now U.S. Pat. No. 4,310,716 entitled "Process for the Oligomerization of Ethylene in Methanol".
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
2998416 |
Mendel |
Aug 1961 |
|
3686159 |
Bauer et al. |
Aug 1972 |
|
Non-Patent Literature Citations (5)
Entry |
Kosolapoff et al., Organic Phosphorus Compounds, vol. 3, pp. 97-108, (1972). |
Doak et al., Organometallic Compounds of Arsenic, Antimony & Bismuth, John Wiley & Sons, N. Y., pp. 225-227, 343-344, (1970). |
Ramirez et al., J. Organic Chem. 22, pp. 41-45, (1957). |
Hauser, J. Organic Chem. 27, 43-46, (1962). |
Ahrland et al., "The Relative Affinities of Coordinating Atoms for Silver Ion, Part II, Nitrogen, Phosphorous and Arsenic", J. Chem. Soc., pp. 276-288, (1958). |
Continuation in Parts (1)
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Number |
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179079 |
Aug 1980 |
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