Claims
- 1. A method of preparing compounds of the formula: ##STR8## where n is 1 or 2; and
- X is chloro or fluoro
- comprising the steps of:
- (a) combining, in the presence of a palladium catalyst system, and at a temperature of from 80.degree. to 150.degree. C. and under an oxygen atmosphere at a pressure of from atmospheric to 750 p.s.i.g., a halobenzene compound of the formula: ##STR9## where X is chloro or fluoro and n is 1 or 2, with a salicylic acid ester of the formula: ##STR10## where R is lower alkyl; wherein said palladium catalyst system comprises: A. a catalyst portion comprising:
- (1) palladium together with
- (2) C.sub.1-6 COO.sup.- ligands and a second ligand selected from the group consisting of halo, OH.sup.-, H.sub.2 O, NO.sub.3.sup.-, ClO.sub.4 and SO.sub.4.sup..dbd., such that the molar weight percent, based on total ligand molar weight, of the C.sub.1-6 COO.sup.- ligands is from 30 to 60%; wherein the C.sub.1-6 COO.sup.- ligands are provided as palladium, alkali metal or alkali earth metal carboxylates and the second ligands are provided as the appropriate salts of palladium, lithium, sodium, copper, mercury or tetra (alkyl) ammonium;
- wherein the ratio of the total molar weight amount of the ligands to the molar weight amount of palladium utilized, is from 2:1 to 20:1; and
- (3) optionally a reaction promoting acid;
- and
- B. a catalyst regeneration portion comprising:
- (1) on a molar basis, from 0.1 to 8.0 parts per part of the palladium catalyst of a heteropolyacid of formula H.sub.3+m (PM.sub.12-m V.sub.m O.sub.40) wherein M is Mo or W; and m is 1 to 4; and
- (2) a solubilizing agent; and
- (b) hydrolyzing the product of Step (a) to give the compound of Formula I.
- 2. The method of claim 1 wherein the starting materials are m-difluorobenzene and methyl salicylate.
- 3. The method of claim 1 wherein the catalyst portion comprises palladium acetate, sodium chloride, and acetic acid; and the catalyst regeneration portion comprises phosphomolybdenovanadic acid and ethylene carbonate.
- 4. The method of claim 1 wherein the amount of palladium catalyst employed is from 0.2 to 8.0 parts per 1000 parts, on a molar basis, of the halobenzene compound.
- 5. The method of claim 1 wherein the molar weight ratio of the ligands to palladium is from 4:1 to 8:1.
- 6. The method of claim 1 wherein the reaction promoting acid is selected from the group consisting of formic acid; acetic acid; propionic acid; butyric acid; mono-, di-, and trichloroacetic acid; mono-, di-, and trifluoroacetic acid; perchloric acid; and methanesulfonic acid.
- 7. A catalytic composition for preparing a compound of formula (I): ##STR11## wherein X is fluoro or chloro and is 1 or 2 comprising A. a catalyst portion comprising:
- (1) palladium together with
- (2) C.sub.1-6 COO.sup.- ligands and a second ligand selected from the group consisting of halo, OH.sub.2.sup.-, H.sub.2 O, NO.sub.3.sup.-, ClO.sub.4.sup.- and SO.sub.4.sup..dbd., such that the molar weight percent, based on total ligand molar weight, of the C.sub.1-6 COO.sup.- ligands is from 30 to 60%; wherein the C.sub.1-6 COO.sup.- ligands are provided as palladium, alkali metal or alkali earth metal carboxylates and said halo ligands are provided as the appropriate halo salt of palladium, lithium, sodium, copper, mercury or tetra (alkyl) ammonium;
- wherein the ratio of the total molar weight amount of the ligands to the molar weight amount of palladium utilized, is from 2:1 to 20:1; and
- (3) optionally a reaction promoting acid; and
- B. a catalyst regeneration portion comprising:
- (1) on a molar basis from 0.1 to 8.0 parts per part of the palladium catalyst of a heteropolyacid of formula H.sub.3+m (PM.sub.12-m V.sub.m O.sub.40) wherein M is Mo or W; and m is 1 to 4; and
- (2) a solubilizing agent.
- 8. The catalytic composition of claim 7 wherein the catalyst portion comprises palladium acetate, sodium chloride, and acetic acid; and the catalyst regeneration portion comprises phosphomolybdenovanadic acid and ethylene carbonate.
- 9. The catalytic composition of claim 7 wherein the amount of palladium catalyst employed is from 0.2 to 8.0 parts per 1000 parts, on a molar basis, of the halobenzene compound according to claim 1.
- 10. The catalytic composition of claim 7 wherein the molar weight ratio of the ligands to palladium is from 4:1 to 8:1.
- 11. The catalytic composition of claim 7 wherein the reaction promoting acid is selected from the group consisting of formic acid; acetic acid; propionic acid; butyric acid; mono-, di-, and trichloroacetic acid; mono-, di-, and trifluoroacetic acid; perchloric acid; and methanesulfonic acid.
RELATED APPLICATIONS
This is a continuation-in-part of application Ser. No. 208,352 filed Nov. 19, 1980, which in turn, is a continuation of Ser. No. 90,792, filed Nov. 2, 1979, now U.S. Pat. No. 4,237,315.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4237315 |
Dolling |
Dec 1980 |
|
Non-Patent Literature Citations (1)
Entry |
Kokorin, Heterotriacids, pp. 967-970 (1953). |
Continuations (1)
|
Number |
Date |
Country |
Parent |
90792 |
Nov 1979 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
208352 |
Nov 1980 |
|