Claims
- 1. 21. A process for coupling aromatic monomers, which comprises coupling in a reaction mixture an aromatic monomer having at least one boron-derivative functional group selected from the group consisting of a boronic acid group, a boronic ester group and a borane group, and an aromatic monomer having at least one reactive halide functional group; wherein the reaction mixture comprises a catalytic amount of a catalyst suitable for catalysing the coupling of the aromatic monomers, and an organic base including a tetraalkylammonium entity in an amount sufficient to convert the at least one boron-derivative functional group into -BX3- anionic group(s), wherein X is independently selected from the group consisting of F and OH.
- 2. 22.A process for coupling aromatic monomers, which comprises preparing under non-coupling conditions an organic cation salt of an aromatic boronate monomer by the reaction of an aromatic monomer having at least one boron-derivative functional group with an organic base including a tetraalkylammonium entity in an amount sufficient to convert the at least one boron-derivative functional group into boronate anionic group(s) (-B(X)3-) wherein X is independently selected from the group consisting of F and OH, and then coupling the organic cation salt of the aromatic boronate monomer with an aromatic monomer having at least one reactive halide functional group in the presence of a catalyst suitable for catalysing the coupling by elimination of a halide functional group and a boronate anionic group.
- 3. 23.A process according to claim 21 or 22, wherein X is OH.
- 4. 24.A process according to claim 21, wherein at least 1.5 equivalents of said organic base per boron-derivative functional group is provided in the reaction mixture.
- 5. 25.A process according to claim 21, wherein at least two equivalents of said organic base per boronfunctional group is provided in the reaction mixture.
- 6. 26.A process according to claim 21 or 22, wherein the organic base is selected from the group consisting of tetraalkylammonium carbonates, tetraalkylammonium bicarbonates and alkylammonium hydroxides.
- 7. 27.A process according to claim 21 or 22, wherein the organic base comprises R'R"' R"" NOH, wherein R' is a C1 C6 alkyl group, and R", R"' and R"" are each independently hydrogen atoms or C1 C6 alkyl groups.
- 8. 28.A process according to claim 27, wherein the organic base is selected from the group consisting of (CH3) 4NOH, (C2H5) 4NOH and (C3H7) 4NOH.
- 9. 29.A process according to claim 21 or 22, wherein the organic base is a tetraalkylammonium carbonate or a tetraalkylammonium bicarbonate.
- 10. 30.A process according to claim 21 or 22, wherein the organic base is used in combination with an aqueous solution of an inorganic base.
- 11. 31.A process according to claim 30, wherein the inorganic base is NH4OH.
- 12. 32.A process according to claim 21 or 22, wherein the reaction is carried out in the absence of alkali metal cations.
- 13. 33.A process according to claim 21 or 22, wherein at least one of the aromatic monomers is a 2,7(9,9-di-n-octylfluorene).
- 14. 34.A process according to claim 21 or 22, wherein a solvent which is miscible with water and in which the reactive components are soluble is used.
- 15. 35.A process according to claim 21 for 22, wherein the catalyst is a palladium catalyst.
- 16. 36.A process according to claim 22, wherein at least 1.5 equivalents of said organic base are reacted with the aromatic monomer having at least one boron-derivative functional group to produce the organic cation salt.
- 17. 37.A process according to claim 22, wherein at least 2 equivalents of said organic base are reacted with the aromatic monomer having at least one boron-derivative functional group to produce the organic cation salt.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9905203.7 |
Mar 1999 |
GB |
|
9925653.9 |
Oct 1999 |
GB |
|
Cross Reference to Related Applications
[0002] This case claims priority to the following, each of which is incorporated by reference:This is a continuation of Application No. 09/518,991, filed March 3, 2000,which is a continuation of U.S. Provisional Serial No. 60/160,953 filed October 22, 1999; and claims priority from UK Patent Application No. 9905203.7 filed March 5, 1999; andUK Patent Application No. 9925653.9 filed October 29, 1999.
Continuations (2)
|
Number |
Date |
Country |
Parent |
09/518,991 |
Mar 2000 |
US |
Child |
10090474 |
Mar 2002 |
US |
Parent |
60/160,953 |
Oct 1999 |
US |
Child |
09/518,991 |
Mar 2000 |
US |