Claims
- 1. A polymeric, crosslinkable sulfonic acid of the formula (VII) wherea is a number from 0.15 to 0.95, b is a number from 0.05 to 0.25, c is a number from 0 to 0.8, a+b is a number from 0.2 to 1.0, and a+b+c=1, and R2 is selected from the radicals
- 2. A cross-linked polymer membrance comprising the cross-linked polymer product of the polymer of formula (VII) wherea is a number from 0.15 to 0.95, b is a number from 0.05 to 0.25, c is a number from 0 to 0.8, a+b is a number from 0.2 to 1.0, and a+b+c=1, and R2 is selected from the radicals
- 3. A fuel cell comprising the membrane of claim 2.
- 4. An electrolysis cell comprising the membrane of claim 2.
- 5. A fuel cell containing a polymer electrolyte membrane, said membrane being a proton-conducting solid electrolyte membrane and having been prepared by a process which comprises:sulfonating an aromatic polyether ketone of the formula whereinAr is a phenylene ring having p- and/or m-bonds, Ar′ is a phenylene, naphthalene, biphenylylene, or anthrylene divalent aromatic unit, X, N and M, independently of one another are 0 or 1, Y is 0, 1, 2 or 3, and P is 1, 2, 3 or 4 where the sulfonic acid is isolated and dissolved in an organic solvent, and the solution is converted into a film, which comprises converting at least 5% of the sulfonic acid groups in the sulfonic acid into sulfonyl chloride groups, reacting the sulfonyl chloride groups with an amine containing at least one ethylenically unsaturated polymerizable radical or a furfuryl functional group, where from 5% to 25% of the original sulfonic groups are converted into sulfonamide groups, subsequently hydrolyzing unreacted sulfonyl chloride groups, isolating the resultant aromatic sulfonamide and dissolving it in an organic solvent, converting the solution into a film, and then crosslinking the ethylenically unsaturated polymerizable radicals and/or furfuryl functional groups in the film; and wherein the degree of sulfonation is at least 0.5 sulfonic groups per sulfonatable O-phenylene-O recurring unit.
- 6. An electrolysis cell containing a polymer electrolyte membrane, said membrane being a proton-conducting solid electrolyte membrane and having been prepared by a process which comprises:sulfonating an aromatic polyether ketone of the formula whereinAr in a phenylene ring having p- and/or m-bonds, Ar′ is a phenylene, naphthylene, biphenylylene, or anthrylene divalent aromatic unit, X, N and M, independently of one another are 0 or 1, Y is 0, 1, 2 or 3, and P is 1, 3, 3 or 4 where the sulfonic acid is isolated and dissolved in an organic solvent, and the solution is converted into a film, which comprises converting at least 5% of the sulfonic acid groups in the sulfonic acid into sulfonyl chloride groups, reacting the sulfonyl chloride groups with an amine containing at least one ethylenically unsaturated polymerizable radical or a furfuryl functional group, where from 5% to 25% of the original sulfonic groups are converted into sulfonamide groups, subsequently hydrolyzing unreacted sulfonyl chloride groups, isolating the resultant aromatic sulfonamide and dissolving it in an organic solvent, converting the solution into a film, and then crosslinking the ethylenically unsaturated polymerizable radicals and/or furfuryl functional groups in the film; and wherein the degree of sulfonation is at least 0.5 sulfonic groups per sulfonatable O-phenylene-O per recurring unit.
- 7. A method for utilizing a Polymer electrolyte membrane in a fuel cell comprising installing the polymer electrolyte membrane into the fuel cell, said membrane being a proton-conducting solid electrolyte membrane and having been prepared by a process which comprises:sulfonating an aromatic polyether ketone of the formula whereinAr in a phenylene ring having p- and/or m-bonds, Ar′ is a phenylene, naphthylene, biphenylylene, or anthrylene divalent aromatic unit, X, N and M, independently of one another are 0 or 1, Y is 0, 1, 2 or 3, and P is 1, 3, 3 or 4 the sulfonic acid is isolated and dissolved in an organic solvent, and the solution is converted into a film, which comprises converting at least 5% of the sulfonic acid groups in the sulfonic acid into sulfonyl chloride groups, reacting the sulfonyl chloride groups with an amine containing at least one ethylenically unsaturated polymerizable radical or a fufuryl functional group, where from 5% to 25% of the original sulfonic groups are converted into sulfonamide groups, subsequently hydrolyzing unreacted sulfonyl chloride groups, isolating the resultant aromatic sulfonamide and dissolving it in an organic solvent, converting the solution into a film, and then crosslinking the ethylenically unsaturated polymerizable radicals and/or furfuryl functional groups in the membrane; and wherein the degree of sulfonation is at least 0.5 sulfonic groups per sulfonatable O-phenylene-O recurring unit.
- 8. A method for utilizing a polymer electrolyte membrane in an electrolysis cell comprising installing the polymer electrolyte membrane into the cell, said membrane being a proton-conducting solid electrolyte membrane and having been prepared by a process which comprises the steps of:sulfonating an aromatic polyether ketone of the formula whereinAr in a phenylene ring having p- and/or m-bonds, Ar′ is a phenylene, naphthylene, biphenylylene, or anthrylene divalent aromatic unit, X, N and M, independently of one another are 0 or 1, Y is 0, 1, 2 or 3, and P is 1, 3, 3 or 4 where the sulfonic acid is isolated and dissolved in an organic solvent, and the solution is converted into a film, which comprises converting at least 5% of the sulfonic acid groups in the sulfonic acid into sulfonyl chloride groups, reacting the sulfonyl chloride groups with an amine containing at least one ethylenically unsaturated polymerizable radical or a furfuryl functional group, where from 5% to 25% of the original sulfonic groups are converted into sulfonamide groups, subsequently hydrolyzing unreacted sulfonyl chloride groups, isolating the resultant aromatic sulfonamide and dissolving it in an organic solvent, converting the solution into a film, and then crosslinking the ethylenically unsaturated polymerizable radicals and/or furfuryl functional groups in the film; and wherein the degree of sulfonation is at least 0.5 sulfonic groups per sulfonatable O-phenylene-O per recurring unit.
Priority Claims (2)
Number |
Date |
Country |
Kind |
42 19 412 |
Jun 1992 |
DE |
|
42 42 692 |
Dec 1992 |
DE |
|
Parent Case Info
This application is a division of application Ser. No. 08/444,392, filed May 19, 1995, now U.S. Pat. No. 5,741,408, which in turn is a divisional of Ser. No. 08/075,219, filed Jun. 10, 1993, now U.S. Pat. No. 5,438,082.
US Referenced Citations (8)
Number |
Name |
Date |
Kind |
4755540 |
Blakey |
Jul 1988 |
|
5028337 |
Linder et al. |
Jul 1991 |
|
5254223 |
Josowicz et al. |
Oct 1993 |
|
5362836 |
Helmer-Metzmann et al. |
Nov 1994 |
|
5438082 |
Helmer-Metzmann et al. |
Aug 1995 |
|
5656389 |
Tetzlaff et al. |
Aug 1997 |
|
5733678 |
Ledjeff et al. |
Mar 1998 |
|
5741408 |
Helmer-Metzmann et al. |
Apr 1998 |
|
Foreign Referenced Citations (5)
Number |
Date |
Country |
0008895 |
Mar 1980 |
EP |
0041780 |
Dec 1981 |
EP |
0112725 |
Jul 1984 |
EP |
0139061 |
May 1985 |
EP |
0182506 |
May 1996 |
EP |
Non-Patent Literature Citations (3)
Entry |
German Abstract DE 3402-471-A, Jan. 25, 1984. |
German Abstract DE 3321-860-A, Jun. 16, 1983. |
Journal of Polymer Science: Polymer Chemistry Edition, vol. 22, 295-301 (1984) entitled “Polyaromatic Ether-Ketone Sulfonamides Prepared from Polydiphenyl Ether-Ketones by Chlorosulfonation and Treatment with Secondary Amines”. |