Claims
- 1. A method for preparing a phosphinic acid intermediate of the structure ##STR28## wherein R is H or lower alkyl;
- R.sup.1 is lower alkyl, aryl, arylalkyl, cycloalkyl, or cycloalkylalkyl;
- R.sup.2 is H or lower alkyl;
- Z is H, lower alkyl, ##STR29## --(CH.sub.2).sub.4 C.sub.6 H.sub.5, --CO.sub.2 R.sup.3 (wherein R.sup.3 is H or lower alkyl), ##STR30## (wherein R.sup.4 is H, lower alkyl, aryl or arylalkyl), --CN, or ##STR31## wherein R.sup.5 and R.sup.6 may be the same or different and are selected from the group consisting of H, lower alkyl, aryl, aryl-lower alkyl, cycloalkyl or cycloalkylalkyl and at least one of R.sup.5 and R.sup.6 is other than H, or R.sup.5 and R.sup.6 can be taken with the N-atom to form a 5-, 6- or 7-membered heterocyclic ring which 5-, 6- or 7-membered N-containing ring may or may not contain a CO.sub.2 R.sup.3 group and which 5- or 6-membered N-containing ring may or may not be fused to an aryl ring; and
- n is 0 or 1,
- which comprises reacting a phosphonous acid or ester thereof of the structure ##STR32## wherein R and R.sup.1 are as defined above with an alkylating agent of the structure ##STR33## wherein Y is a leaving group, and R.sup.2, n and z are as defined above, employing a molar ratio of phosphonous acid or ester thereof to the alkylating agent of within the range of from about 0.5:1 to about 10:1, in the presence of a silylating agent, employing a molar ratio of phosphonous acid or ester to silylating agent of within the range of from about 0.06:1 to about 2:1, and in the presence of an inert organic solvent to form the phosphinic acid intermediate and separating the phosphinic acid intermediate from the reaction mixture.
- 2. The method as defined in claim 1 wherein n is 0 and R.sup.2 is H.
- 3. The method as defined in claim 1 wherein the reaction is carried out in the presence of a base which is triethylamine, pyridine or N,N-dimethylamine.
- 4. The method as defined in claim 1 wherein the inert organic solvent is chloroform, acetonitrile, dichloromethane, dichloroethane, ethyl ether, tetrahydrofuran or dioxane.
- 5. The method as defined in claim 1 wherein the silylating agent is trimethyl silylchloride and triethylamine, monosilylacetamide, bissilylacetamide, monosilyltrifluoroacetamide or bissilyltrifluoroacetamide, or trimethylsilyl imidazole.
- 6. The method as defined in claim 1 wherein the silylating agent is trimethyl silylchloride and triethylamine.
- 7. The method as defined in claim 1 wherein in the phosphonous acid or ester, R is lower alkyl, and in the alkylating agent Z is an ester, lower alkyl, ##STR34## or CN.
- 8. The method as defined in claim 7 wherein the phosphonous acid or ester is employed in a molar ratio to the alkylating agent of within the range of from about 0.5:1 to about 10:1, and the phosphonous acid or ester is employed in a molar ratio to the silylating agent of within the range of from about 0.1:1 to about 2:1.
- 9. The method as defined in claim 1 wherein in the phosphonous acid or ester, R is H and in the alkylating agent Z is an ester, lower alkyl, ##STR35## or CN.
- 10. The method as defined in claim 9 wherein the phosphonous acid is employed in a molar ratio to the alkylating agent of within the range of from about 0.5:1 to about 10:1, and the phosphonous acid is employed in a molar ratio to the silylating agent of within the range of from about 0.1:1 to about 1:1.
- 11. The method as defined in claim 1 wherein in the phosphonous acid or ester, R is lower alkyl, and in the alkylating agent Z is COOH or ##STR36##
- 12. The method as defined in claim 11 wherein the phosphonous acid ester is employed in a molar ratio to the alkylating agent of within the range of from about 0.5:1 to about 10:1, and the phosphonous acid ester is employed in a molar ratio to the silylating agent of within the range of from about 0.06:1 to about 1:1.
- 13. The method as defined in claim 1 wherein in the phosphonous acid or ester, R is H, and in the alkylating agent Z is COOH or ##STR37##
- 14. The method as defined in claim 1 wherein Y is a halogen group, mesyl or tosyl.
- 15. The method as defined in claim 13 wherein the phosphonous acid is employed in a molar ratio to the alkylating agent of within the range of from about 0.5:1 to about 10:1, and the phosphonous acid is employed in a molar ratio to the silylating agent of within the range of from about 0.06:1 to about 1:1.
- 16. The method as defined in claim 1 wherein the reaction between the phosphonous acid or ester and the silylating agent is carried out at a temperature of within the range of from -10.degree. C. to refluxing temperature.
- 17. The method as defined in claim 1 wherein the phosphonous acid is ##STR38## the alkylating agent is BrCH.sub.2 CO.sub.2 CH.sub.2 C.sub.6 H.sub.5, BrCH.sub.2 CO.sub.2 H, BrCH.sub.2 CO.sub.2 CH.sub.2 CH.sub.3, ##STR39## and the silylating agent is (CH.sub.3).sub.3 SiCl and (C.sub.2 H.sub.5).sub.3 N or monotrimethylsilylacetamide.
REFERENCE TO OTHER APPLICATIONS
This application is a continuation-in-part of application Ser. No. 533,485, filed Sept. 19, 1983, now abandoned.
US Referenced Citations (4)
Non-Patent Literature Citations (1)
Entry |
Thottathil et al., "Tetrahedron Letters", vol. 25, No. 42, pp. 4737-4740, (1984). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
533485 |
Sep 1983 |
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