Thallium catalyzed multidimensional ester oligomers

Information

  • Patent Grant
  • 5618907
  • Patent Number
    5,618,907
  • Date Filed
    Monday, June 5, 1995
    29 years ago
  • Date Issued
    Tuesday, April 8, 1997
    27 years ago
Abstract
The yield of fully substituted, multidimensional aromatic hubs in the condensation of hydroxyl and acid halide functionalities is improved by adding a thallium catalyst, such as thallium ethoxide (Tl--OC.sub.2 H.sub.5), in the solvent.
Description

TECHNICAL FIELD
The present invention relates to multidimensional polyesters made using thallium ethoxide as a catalyst.
BACKGROUND OF THE INVENTION
In our earlier applications we proposed the condensation of hydroxyl (--OH) and carboxylic acid (--COOH) or carboxylic acid halides (--COX) on an aromatic hub having at least three such functionalities. The condensation occurred in a suitable solvent, such as DMAC, under an inert atmosphere in the presence of triethylamine (TEA). We have found that, when reacting, for example, phloroglucinol with an acid chloride end cap of the formula: ##STR1## in DMAC and TEA that the resulting product is a mixture ##STR2## The condensation is difficult to drive to completion (i.e., replacement of all the --OH groups) to yield the desired product (I). The yield of fully reacted multidimensional ester (I) can be improved, however, by replacing the TEA with thallium ethoxide (Tl--OC.sub.2 H.sub.5).
SUMMARY OF THE INVENTION
The present invention relates to fully substituted, multidimensional polyester oligomers made using thallium catalysts, particularly thallium ethoxide. These multidimensional polyesters are obtainable by reacting a compound of the formula: Ar--(--Q).sub.w wherein
Ar is an aromatic radical of valency w;
w is a small integer greater than or equal to 3;
Q is .sup.-- OH or .sup.-- COX; and
X is halogen
with a compound of the formula:
.rho.--P wherein
.rho. is a hydrocarbon radical; and
P is .sup.-- OH if Q is .sup.-- COX and is .sup.-- COX if Q is .sup.--OH
Generally, the solvent is DMAC or a mixture of DMAC with other suitable solvents. Ar--(--Q).sub.w typically is phloroglucinol, in which case .rho.--P is an acid halide where .rho. has the formula: D.sub.i --.phi.-- wherein
i is 1 or 2;
.phi. is phenylene;
D is an unsaturated hydrocarbon radical that generally includes a segment selected from the group consisting of: ##STR3##
R.sub.1 is lower alkyl, aryl, substituted alkyl, substituted aryl, lower alkoxy, aryloxy, halogen, or mixtures thereof;
G is --O--, --S--, --.sub.2 --, --CH.sub.2 --, --CO--, --CHR--, --SO--, or --C(R).sub.2 ;
j is 0, 1, or 2
T is allyl or methallyl;
Me is methyl; and
R is hydrogen, lower alkyl, or phenyl.
Extending polyester oligomers that are fully substituted because of the thallium catalysis can be made by reacting Ar--(--Q).sub.w with a dibasic carboxylic acid or a diol of the formula .rho.--(--P).sub.2 wherein .rho. is a divalent hydrocarbon radical, especially a phenoyphenyl sulfone, and P is --COX. In this case, the reaction vessel also is changed with an end cap, typically of the formula: D.sub.i --.phi.--Q wherein D, I, .phi., and Q are previously defined.
The multidimensional polyester oligomers that result from the reaction are esters or alternating esters of the formula:
Ar--(--OOC--.rho.).sub.w ;
Ar--(--COO--.rho.).sub.w ;
Ar--(--OOC--.rho.--COO--.phi.--D.sub.i).sub.w ; or
Ar--(--COO--.rho.--OOC--.phi.--D.sub.i).sub.w.





Best Mode Contemplated for the Present Invention
The yield of multidimensional polyesters can be improved by replacing triethylamine (TEA) in the condensation solution with thallium ethoxide (Tl--OC.sub.2 H.sub.5) as a catalyst. Since the polyester oligomers that are synthesized are often used without isolation of products, we believe that the new product, richer in product (I) [i.e. the truly multidimensional ester) will yield better composites than are achieved with the multidimensional (I) and linear (II) blend made using TEA as a catalyst.
The method of the present invention is equally applicable to use of an acid halide hub such as cyuranic acid chloride with a mono- or difunctional imidophenyl end cap monomer. Chain-extension can be achieved, also, by including dialcohols, diacid halides, or both in the condensation mixture.
We believe that Tl--OC.sub.2 H.sub.5 will produce a higher yield of the tri-substituted hub. If the hub has more than three reactive hydroxyl or acid halide functionalities, the thallium ethoxide catalyst will promote more complete reaction (or substitution) than TEA.
While thallium ethoxide is preferred, it is possible that any lower alkoxy substituent on the metal will be active as a catalyst. That is, methoxy, propoxy, isopropoxy, n-butoxy, phenoxy, or the like may also display catalytic activity.
Accordingly, the present invention relates to the catalysis of the --OH/--COX or --OH/--COOH condensation with a thallium catalyst, and, particularly, to the preparation of multidimensional polyesters by the condensation of Ar--.paren open-st.Q).sub.w with a corresponding alcohol (--OH), acid (--COOH), or acid halide (--COX) in a suitable solvent under an inert atmosphere with or without heating in the presence of thallium ethoxide, wherein
Ar=an aromatic radical of valency w;
w=an integer greater than or equal to 3; and
Q=--OH, --COOH, or --COX.
The aromatic radical will generally be phenyl or azalinyl, being the residue, for example of phloroglucinol or cyranic acid chloride. Those compounds described in U.S. Pat. Nos. 4,617,390 or 4,709,008 may also be used as hubs, and amine compounds can be reacted with an acid anhydride to form polycarboxylic acids that are suitable hubs. Triaminobenzene or the polyamines of U.S. Pat. No. 4,574,152 are suitable reactants (precursors) in this context.
The simplest oligomers can be prepared by condensing about 1 mole of the hub with a crosslinking end cap monomer of the formula:
D.sub.i --.0.--P
wherein
.0.=phenyl;
P=--COX, if the hub is a polyol, or --OH, if the hub is a polybasic acid;
i=1 or 2;
D=an unsaturated hydrocarbon radical that generally includes a segment selected from the group consisting of: ##STR4## R.sub.1 =lower alkyl, aryl, substituted alkyl, substituted aryl, lower alkoxy, aryloxy, halogen, or mixtures thereof;
G=--O--, --S--, --SO.sub.2 --, --CH.sub.2, --CO--, --CHR--, --SO--, or --CR.sub.2 --;
j=0, 1, or 2;
T=allyl or methallyl;
Me=methyl; and
R=hydrogen, lower alkyl, or phenyl.
These end cap monomers allow the multidimensional polyester oligomers to be cured into high performance, advanced composites that have use temperature that exceed (often substantially) their curing temperatures.
The arms of the multidimensional oligomers can be extended if the reaction solution's components are adjusted. For example, the hub of the formula Ar.paren open-st.Q).sub.w can be simultaneously condensed with R--.paren open-st.P).sub.2 wherein
Ar=an aromatic radical of valency w;
w=a small integer greater than or equal to 3;
Q=--COX, --OH, or --COOH;
R=a divalent hydrocarbon radical, especially a phenoxyphenylsulfone; and
P=--OH, if Q=--COX or --COOH, or --COX or --COOH, if Q=--OH
with a crosslinking end cap monomer of the formula:
D.sub.i --.0.--Q
wherein D, i, .0., or Q are as previously defined.
The dialcohols or diacid halides include those compounds disclosed in U.S. Pat. No. 4,547,553 or in our copending applications.
The reaction solution may include four or more component mixtures but deleterious or interfering competitive reactions are likely to occur, dictating staged reaction rather than simultaneous condensation. For example, Ar--.paren open-st.Q).sub.w can be condensed with R--.paren open-st.P).sub.2 followed by addition of R.sub.1 --.paren open-st.Q).sub.2 and D.sub.i --.0.--P to form a multidimensional polyester having extended arms (i.e., arms of relatively high average formula weight).
While preferred embodiments have been described, those skilled in the art will readily recognize alterations, variations, or modifications which might be made to the embodiments without departing from the inventive concept. Therefore, the claims should be interpreted liberally with the support of the full range of equivalents known to those of ordinary skill based upon this description. The claims should be limited only as is necessary in view of the pertinent prior art.
Claims
  • 1. A multidimensional polyester composition as produced prior to isolation of the polyester obtainable by reacting substantially stoichiometric amounts of a compound of the formula Ar--(--Q).sub.w wherein
  • Ar=an aromatic radical of valency w;
  • w=a small integer greater than or equal to 3;
  • Q=--OH or --COX; and
  • X=halogen
  • with a compound of the formula .rho.--P wherein ##EQU1## in a suitable solvent under an inert atmosphere in the presence of an effective amount of a thallium catalyst,
  • the polyester being Ar--{COO--.rho.}.sub.w or Ar--{OOC--.rho.}.sub.w.
  • 2. The polyester composition of claim 1 wherein the catalyst is thallium ethoxide.
  • 3. The polyester composition of claim 1 wherein Ar(--Q).sub.w is phloroglucinol.
  • 4. The polyester composition of claim 1 wherein At is phenylene and w is 3.
  • 5. A polyester obtainable by reacting .phi..paren open-st.OH).sub.3, XOC--.rho.--COX, and D.sub.i --.phi.--OH in substantially stoichiometric proportions in a suitable solvent in the presence of a thallium catalyst to achieve substantially complete substitution of the XOC--.rho.--COX compound on the .phi..paren open-st.OH).sub.3 to yield the product .phi..paren open-st.OOC--.rho.COO.paren close-st..phi.--D.sub.i wherein i is 1 or 2;
  • .phi. is phenylene;
  • D is selected from the group consisting of: ##STR5## R.sub.1 is lower alkyl, aryl, substituted alkyl, substituted aryl, lower alkoxy, aryloxy, halogen, or mixtures thereof;
  • G is --O--, --S--, --SO.sub.2 --, --CH.sub.2 --, --CO--, --CHR--, --SO--, or --C(R).sub.2 --;
  • j is 0, 1, or 2;
  • T is allyl or methallyl;
  • Me is methyl;
  • R is hydrogen, lower alkyl, or phenyl; and
  • .rho. is a divalent hydrocarbon radical.
  • 6. A multidimensional polyester obtainable by reacting substantially stoichiometric amounts of a compound of the formula Ar.paren open-st.Q).sub.w wherein
  • Ar=an aromatic radical of valency w;
  • w=a small integer greater than or equal to 3;
  • Q=--OH or --COX; and
  • X=halogen
  • with a compound of the formula .rho.--P wherein ##EQU2## in a suitable solvent under an inert atmosphere in the presence of an effective amount of a thallium catalyst,
  • the polyester being Ar--{COO--.rho.}.sub.w or Ar--{OOC--.rho.}.sub.w
  • wherein .rho. is selected from the group consisting of
  • D.sub.i .phi.--
  • i is 1 or 2;
  • .phi. is phenylene
  • D is selected from the group consisting of: ##STR6## R.sub.1 is lower alkyl, aryl, substituted alkyl, substituted aryl, lower alkoxy, aryloxy, halogen, or mixtures thereof;
  • G is --O--, --S--, --SO.sub.2 --, --CH.sub.2 --, --CO--, --CHR--, --SO--, or --C(R).sub.2 --;
  • j is 0, 1, or 2;
  • T is allyl or methallyl;
  • Me is methyl; and
  • R is hydrogen, lower alkyl, or phenyl.
REFERENCE TO RELATED APPLICATIONS

The present application is a divisional application based upon U.S. patent application Ser. No. 07/176,518, filed Apr. 1, 1988, which was a continuation-in-part application based upon U.S. patent application 06/810,817, filed Dec. 17, 1985, now abandoned which was a continuation-in-part application based upon U.S. patent application 06/726,258, filed Apr. 23, 1985, now abandoned.

US Referenced Citations (457)
Number Name Date Kind
H183 Karasz et al. Jan 1987
RE29316 Bargain et al. Jul 1977
RE30922 Heilman et al. May 1982
RE34820 Lubowitz et al. Jan 1995
3105839 Renner Oct 1963
3236705 Gilman et al. Feb 1966
3236808 Goldberg et al. Feb 1966
3262914 Goldberg et al. Jul 1966
3265708 Stiteler Aug 1966
3267081 Rudner et al. Aug 1966
3313783 Iwakura et al. Apr 1967
3354129 Edmonds et al. Nov 1967
3355272 D'Alessandro Nov 1967
3386969 Levine Jun 1968
3408349 Matsunaga Oct 1968
3431235 Lubowitz Mar 1969
3435003 Craven Mar 1969
3449442 Williams et al. Jun 1969
3450711 Megna et al. Jun 1969
3453236 Culbertson Jul 1969
3454673 Schmidt Jul 1969
3458486 Ray et al. Jul 1969
3461461 Anthony et al. Aug 1969
3528950 Lubowitz Sep 1970
3530087 Hayes et al. Sep 1970
3536670 Aeiony et al. Oct 1970
3562223 Bargain et al. Feb 1971
3563951 Dormagen et al. Feb 1971
3565549 Lubowitz et al. Feb 1971
3592841 Broadhead Jul 1971
3598768 Bach Aug 1971
3609181 Lubowitz et al. Sep 1971
3616193 Lubowitz et al. Oct 1971
3624042 Lubowitz et al. Nov 1971
3631222 Vogel Dec 1971
3632428 Lubowitz et al. Jan 1972
3635891 Lubowitz et al. Jan 1972
3641207 Lauchlan Feb 1972
3647529 Lubowitz et al. Mar 1972
3652710 Holub Mar 1972
3658764 Bargain et al. Apr 1972
3658938 Kwiatkowski et al. Apr 1972
3663507 Vogel May 1972
3689464 Holub et al. Sep 1972
3697308 Lubowitz et al. Oct 1972
3697345 Lubowitz et al. Oct 1972
3699074 Lubowitz et al. Oct 1972
3699075 Lubowitz Oct 1972
3708370 Lubowitz et al. Jan 1973
3708439 Sayigh et al. Jan 1973
3708459 Lubowitz Jan 1973
3729446 Holub et al. Apr 1973
3745149 Serafini et al. Jul 1973
3748311 Burns et al. Jul 1973
3748312 Burns et al. Jul 1973
3749735 Loria Jul 1973
3757088 Osborn Sep 1973
3759777 Lubowitz et al. Sep 1973
3761441 D'Alessandro et al. Sep 1973
3763101 Jones et al. Oct 1973
3766441 D'Allessander et al. Oct 1973
3770697 Holub et al. Nov 1973
3772250 Economy et al. Nov 1973
3773718 Klebe et al. Nov 1973
3781240 Lubowitz et al. Dec 1973
3781249 Lubowitz Dec 1973
3803081 Lubowitz Apr 1974
3812159 Lubowitz May 1974
3827927 Lubowitz et al. Aug 1974
3839287 Kwiatkowski et al. Oct 1974
3843593 Shell et al. Oct 1974
3847867 Heath et al. Nov 1974
3847869 Williams, III Nov 1974
3853815 Lubowitz Dec 1974
3859252 Cho Jan 1975
3879349 Bilow et al. Apr 1975
3879393 Havera Apr 1975
3879428 Heath et al. Apr 1975
3887582 Holub et al. Jun 1975
3890272 D'Alelio Jun 1975
3895064 Brode et al. Jul 1975
3896147 Stephen Jul 1975
3897395 D'Alelio Jul 1975
3909507 Betts et al. Sep 1975
3914334 Lubowitz et al. Oct 1975
3919177 Campbell Nov 1975
3920768 Kwiatkowski Nov 1975
3925324 Gerard Dec 1975
3933862 Williams, III Jan 1976
3935167 Marvel et al. Jan 1976
3935320 Chiu et al. Jan 1976
3941746 Stephen Mar 1976
3956320 Heath et al. May 1976
3957732 Hirooka et al. May 1976
3957862 Heath et al. May 1976
3966678 Gruffaz et al. Jun 1976
3966726 Toth et al. Jun 1976
3966749 Bodor et al. Jun 1976
3966987 Suzuki et al. Jun 1976
3970714 Bargain Jul 1976
3972902 Heath et al. Aug 1976
3988374 Brode et al. Oct 1976
3993630 Darmory et al. Nov 1976
3998786 D'Alelio Dec 1976
4000146 Gerber Dec 1976
4005134 Markezich Jan 1977
4013600 Cassat Mar 1977
4020069 Johnson et al. Apr 1977
4026871 D'Alelio May 1977
4038261 Crouch et al. Jul 1977
4051177 Braden et al. Sep 1977
4055543 D'Alelio Oct 1977
4058505 D'Alelio Nov 1977
4060515 D'Alelio Nov 1977
4064289 Yokoyama et al. Dec 1977
4075171 D'Alelio Feb 1978
4097456 Barie Jun 1978
4100137 Lemieux et al. Jul 1978
4100138 Bilow et al. Jul 1978
4101488 Ishizuka et al. Jul 1978
4107147 Williams, III et al. Aug 1978
4107153 Akijama et al. Aug 1978
4107174 Baumann et al. Aug 1978
4108837 Johnson et al. Aug 1978
4108926 Arnold et al. Aug 1978
4111879 Mori et al. Sep 1978
4115231 Darms et al. Sep 1978
4115362 Inata et al. Sep 1978
4116937 Jones et al. Sep 1978
4124593 Gschwend et al. Nov 1978
4126619 Darms et al. Nov 1978
4128574 Markezich et al. Dec 1978
4132715 Roth Jan 1979
4132716 Kvita et al. Jan 1979
4134895 Roth et al. Jan 1979
4142870 Lovejoy Mar 1979
4158731 Baumann et al. Jun 1979
4166168 D'Alelio Aug 1979
4167663 Granzow et al. Sep 1979
4168366 D'Alelio Sep 1979
4172836 Baumann et al. Oct 1979
4174326 Baumann et al. Nov 1979
4175175 Johnson et al. Nov 1979
4176223 Irwin Nov 1979
4179551 Jones et al. Dec 1979
4183839 Gagliani Jan 1980
4187364 Darms et al. Feb 1980
4189560 Roth et al. Feb 1980
4193927 Baumann et al. Mar 1980
4197397 D'Alelio Apr 1980
4200731 Massey et al. Apr 1980
4206106 Heilman et al. Jun 1980
4218555 Antonoplos et al. Aug 1980
4221895 Woo Sep 1980
4225497 Baudouin et al. Sep 1980
4225498 Baudouin et al. Sep 1980
4231934 Oba et al. Nov 1980
4234712 Keller et al. Nov 1980
4237262 Jones Dec 1980
4239883 Stenzenberger Dec 1980
4244853 Serafini et al. Jan 1981
4250096 Kvita et al. Feb 1981
4251417 Chow et al. Feb 1981
4251418 Chow et al. Feb 1981
4251419 Heilman et al. Feb 1981
4251420 Antonoplos et al. Feb 1981
4251918 Chow et al. Feb 1981
4255313 Antonoplos et al. Mar 1981
4266047 Jablonski et al. May 1981
4269961 Jones et al. May 1981
4271079 Maeda et al. Jun 1981
4273916 Jones Jun 1981
4276407 Bilow et al. Jun 1981
4288583 Zahir et al. Sep 1981
4288607 Bier et al. Sep 1981
4289699 Oba et al. Sep 1981
4293670 Robeson et al. Oct 1981
4297472 Heiss Oct 1981
4297474 Williams, III et al. Oct 1981
4298720 Yamazaki et al. Nov 1981
4299750 Antonoplos et al. Nov 1981
4299946 Balme et al. Nov 1981
4302575 Takekoshi Nov 1981
4323662 Oba et al. Apr 1982
4338222 Limburg et al. Jul 1982
4338225 Sheppard Jul 1982
4344869 Blinne et al. Aug 1982
4344870 Blinne et al. Aug 1982
4351932 Street et al. Sep 1982
4358561 Keske et al. Nov 1982
4360644 Naarmann et al. Nov 1982
4365068 Darms et al. Dec 1982
4375427 Miller et al. Mar 1983
4376710 Gardos et al. Mar 1983
4381363 Reinhart, Jr. Apr 1983
4389504 St. Clair et al. Jun 1983
4393188 Takahashi et al. Jul 1983
4395497 Naarmann et al. Jul 1983
4400613 Popelish Aug 1983
4405770 Schoenberg et al. Sep 1983
4407739 Naarmann et al. Oct 1983
4409382 Keller Oct 1983
4410686 Hefner, Jr. et al. Oct 1983
4414269 Lubowitz et al. Nov 1983
4417039 Reinhardt et al. Nov 1983
4417044 Parekh Nov 1983
4418181 Monacelli Nov 1983
4423202 Choe Dec 1983
4429108 Stephens Jan 1984
4438273 Landis Mar 1984
4438280 Monacelli Mar 1984
4446191 Miyadera et al. May 1984
4448925 Hanson May 1984
4460783 Nishikawa et al. Jul 1984
4465809 Smith Aug 1984
4467011 Brooks et al. Aug 1984
4476184 Lubowitz et al. Oct 1984
4476295 Stephens Oct 1984
4482683 Quella et al. Nov 1984
4485140 Gannett et al. Nov 1988
4485231 Landis Nov 1984
4489027 St. Clair et al. Dec 1984
4504632 Holub et al. Mar 1985
4507466 Tomalia et al. Mar 1985
4510272 Loszewski Apr 1985
4515962 Renner May 1985
4519926 Basalay et al. May 1985
4520198 D'Alelio et al. May 1985
4526838 Fujioka et al. Jul 1985
4533692 Wolfe et al. Aug 1985
4533693 Wolfe et al. Aug 1985
4533724 Wolfe et al. Aug 1985
4535117 Mathis et al. Aug 1985
4536559 Lubowitz et al. Aug 1985
4542203 Ueno et al. Sep 1985
4547553 Lubowitz et al. Oct 1985
4555563 Hefner, Jr. et al. Nov 1985
4556697 Curatolo et al. Dec 1985
4556705 McCready Dec 1985
4558120 Tomalia et al. Dec 1985
4562231 Dean Dec 1985
4562232 Smith Dec 1985
4563498 Lucas Jan 1986
4563514 Liu et al. Jan 1986
4564553 Pellegrini et al. Jan 1988
4567216 Qureshi et al. Jan 1986
4567240 Hergenrother et al. Jan 1986
4568737 Tomalia et al. Feb 1986
4574144 Yates, III et al. Mar 1986
4574148 Wicker, Jr. et al. Mar 1986
4574154 Okamoto et al. Mar 1986
4576857 Gannett et al. Mar 1986
4577034 Durvasula Mar 1986
4578433 Muenstedt et al. Mar 1986
4578470 Webb Mar 1986
4584364 Lubowitz et al. Apr 1986
4587329 Tomalia et al. May 1986
4590363 Bernard May 1986
4599383 Satoji Jul 1986
4600769 Kumar et al. Jul 1986
4604437 Renner Aug 1986
4608414 Kitsunai et al. Aug 1986
4608426 Stern Aug 1986
4611022 Hefner, Jr. Sep 1986
4611048 Peters Sep 1986
4614767 Dean Sep 1986
4615832 Kress et al. Oct 1986
4616070 Zeiner et al. Oct 1986
4616071 Holubka Oct 1986
4617390 Hoppe et al. Oct 1986
4624725 Lamm et al. Nov 1986
4624888 St. Clair et al. Nov 1986
4628067 Chen, Sr. et al. Dec 1986
4628079 Zecher et al. Dec 1986
4629777 Pfeifer Dec 1986
4631337 Tomalia et al. Dec 1986
4638027 Mark et al. Jan 1987
4640944 Brooks Feb 1987
4649080 Fischer et al. Mar 1987
4654410 Kashiwame et al. Mar 1987
4657973 Endo et al. Apr 1987
4657977 Peters Apr 1987
4657987 Rock et al. Apr 1987
4657990 Daoust et al. Apr 1987
4660057 Watanabe et al. Apr 1987
4661604 Lubowitz et al. Apr 1987
4663378 Allen May 1987
4663399 Peters May 1987
4663423 Yamada et al. May 1987
4663424 Stix et al. May 1987
4663425 Evers et al. May 1987
4680326 Leland et al. Jul 1987
4680377 Matsumura et al. Jul 1987
4684714 Lubowitz et al. Aug 1987
4690972 Johnson et al. Sep 1987
4691025 Domeier et al. Sep 1987
4694064 Tomalia et al. Sep 1987
4695610 Egli et al. Sep 1987
4699975 Katto et al. Oct 1987
4703081 Blackwell et al. Oct 1987
4708983 Liang Nov 1987
4709004 Dai Nov 1987
4709006 Tsai et al. Nov 1987
4709008 Shimp Nov 1987
4714768 Hemkielm et al. Dec 1987
4716212 Gaughan Dec 1987
4719283 Bartmann Jan 1988
4727118 Egami Feb 1988
4728742 Renner Mar 1988
4730030 Hahn et al. Mar 1988
4737550 Tomalia Apr 1988
4739030 Lubowitz et al. Apr 1988
4739075 Odagiri et al. Apr 1988
4739115 Byrd et al. Apr 1988
4740563 McCready et al. Apr 1988
4740564 McCready et al. Apr 1988
4740584 Shimp Apr 1988
4742166 Renner May 1988
4748227 Matzner et al. May 1988
4755584 Tomioka et al. Jul 1988
4755585 Hanson et al. Jul 1988
4757118 Das et al. Jul 1988
4757128 Domb et al. Jul 1988
4757150 Guggenheim et al. Jul 1988
4759986 Marikar et al. Jul 1988
4760106 Garnder et al. Jul 1988
4764427 Hara et al. Aug 1988
4766180 Wong Aug 1988
4766197 Clendinning et al. Aug 1988
4769424 Takekoshi et al. Sep 1988
4769426 Iwasaki et al. Sep 1988
4769436 Beck et al. Sep 1988
4774282 Qureshi Sep 1988
4777208 Hefner, Jr. Oct 1988
4778830 Streu et al. Oct 1988
4778859 Ai et al. Oct 1988
4778898 Vonlanthen et al. Oct 1988
4786669 Dewhirst Nov 1988
4786685 Takida et al. Nov 1988
4786713 Rule et al. Nov 1988
4798685 Yaniger Jan 1989
4798686 Hocker et al. Jan 1989
4798882 Petri Jan 1989
4801676 Hisgen et al. Jan 1989
4801677 Eckhardt et al. Jan 1989
4804722 Hesse et al. Feb 1989
4804724 Harris et al. Feb 1989
4806407 Skinner et al. Feb 1989
4808717 Saito et al. Feb 1989
4812518 Haubennestel et al. Mar 1989
4812534 Blakely Mar 1989
4812552 Cliffton et al. Mar 1989
4812588 Schrock Mar 1989
4814416 Poll Mar 1989
4814417 Sugimori Mar 1989
4814421 Rosenquist Mar 1989
4814472 Lau Mar 1989
4816503 Cunningham et al. Mar 1989
4816526 Bristowe et al. Mar 1989
4816527 Rock Mar 1989
4816556 Gay et al. Mar 1989
4820770 Schleifstein Apr 1989
4826927 Schmid et al. May 1989
4826997 Kirchhoff May 1989
4827000 Schwartz May 1989
4829138 Barthelemy May 1989
4835197 Mercer May 1989
4837256 Gardner et al. Jun 1989
4839378 Koyama et al. Jun 1989
4845150 Kovak et al. Jul 1989
4845167 Alston et al. Jul 1989
4845185 Teramoto et al. Jul 1989
4845278 Erhan Jul 1989
4847333 Lubowitz et al. Jul 1989
4851280 Gupta Jul 1989
4851287 Hartsing, Jr. Jul 1989
4851494 Eldin et al. Jul 1989
4851495 Sheppard et al. Jul 1989
4851496 Poll et al. Jul 1989
4851501 Lubowitz et al. Jul 1989
4851505 Hayes Jul 1989
4861855 Bockrath et al. Aug 1989
4861882 Hergenrother et al. Aug 1989
4861915 Clendinning et al. Aug 1989
4861924 Riggs Aug 1989
4868270 Lubowitz et al. Sep 1989
4871475 Lubowitz et al. Oct 1989
4874834 Higashi et al. Oct 1989
4876325 Olson et al. Oct 1989
4876328 Lubowitz et al. Oct 1989
4876330 Higashi et al. Oct 1989
4891167 Clendinning et al. Jan 1990
4891408 Newman-Evans Jan 1990
4891460 Ishii Jan 1990
4895892 Satake et al. Jan 1990
4895924 Satake et al. Jan 1990
4897527 Cripps et al. Jan 1990
4902335 Kume et al. Feb 1990
4902440 Takeyama et al. Feb 1990
4902769 Cassidy et al. Feb 1990
4902773 Bodnar et al. Feb 1990
4909382 Keller Mar 1990
4916210 Jackson Apr 1990
4916235 Tan et al. Apr 1990
4919992 Blundell et al. Apr 1990
4923752 Cornelia May 1990
4927899 Michaud et al. May 1990
4927900 Michaud et al. May 1990
4931531 Tamai et al. Jun 1990
4931540 Mueller et al. Jun 1990
4935523 Lubowitz et al. Jun 1990
4958031 Sheppard et al. Sep 1990
4960835 Towle et al. Oct 1990
4965336 Lubowitz et al. Oct 1990
4973662 Odagiri et al. Nov 1990
4980481 Lubowitz et al. Dec 1990
4981922 Sheppard et al. Jan 1991
4985568 Lubowitz et al. Jan 1991
4990624 Sheppard et al. Feb 1991
4996101 Landis et al. Feb 1991
5003035 Tsai et al. Mar 1991
5011905 Lubowitz et al. Apr 1991
5066541 Lubowitz et al. Nov 1991
5066776 Russeler et al. Nov 1991
5071941 Lubowitz et al. Dec 1991
5075537 Lorenzen et al. Dec 1991
5082905 Lubowitz et al. Jan 1992
5086154 Camberlin et al. Feb 1992
5087701 Lubowitz et al. Feb 1992
5104967 Sheppard et al. Apr 1992
5109105 Lubowitz et al. Apr 1992
5111026 Ma May 1992
5112936 Okamoto May 1992
5112939 Lubowitz et al. May 1992
5115087 Sheppard et al. May 1992
5116935 Lubowitz et al. May 1992
5120819 Lubowitz et al. Jun 1992
5126410 Lubowitz et al. Jun 1992
5144000 Sheppard et al. Sep 1992
5151487 Lubowitz et al. Sep 1992
5155206 Lubowitz et al. Oct 1992
5159055 Sheppard et al. Oct 1992
5175233 Lubowitz et al. Dec 1992
5175234 Lubowitz et al. Dec 1992
5175304 Sheppard Dec 1992
5198526 Lubowitz et al. Mar 1993
5210213 Sheppard et al. May 1993
5216117 Sheppard et al. Jun 1993
5227461 Lubowitz et al. Jul 1993
5230956 Cole et al. Jul 1993
5239046 Lubowitz et al. Aug 1993
5254605 Kim et al. Oct 1993
5268519 Sheppard et al. Dec 1993
5286811 Lubowitz et al. Feb 1994
5338532 Tomalia et al. Aug 1994
5344894 Lubowitz Sep 1994
5403666 Lubowitz et al. Apr 1995
Foreign Referenced Citations (43)
Number Date Country
1175998 Sep 1984 CAX
1269576 May 1990 CAX
0152372 Jan 1985 EPX
0154506 Sep 1985 EPX
0175484 Mar 1986 EPX
0067976 Mar 1987 EPX
0283636 Jan 1988 EPX
0289695 Jan 1988 EPX
0277476 Aug 1988 EPX
0292434 Nov 1988 EPX
0289798 Nov 1988 EPX
0292677 Nov 1988 EPX
0266662 Nov 1988 EPX
0294555 Dec 1988 EPX
0132547 Feb 1989 EPX
0305882 Mar 1989 EPX
0311735 Apr 1989 EPX
0310735 Apr 1989 EPX
0309649 Apr 1989 EPX
0317754 May 1989 EPX
0323540 Jul 1989 EPX
0336856 Oct 1989 EPX
0405128 Jan 1991 EPX
0418406 Mar 1991 EPX
0334778 Apr 1992 EPX
7100975 Jan 1971 FRX
2166209 Aug 1973 FRX
2210635 Jul 1974 FRX
2272119 Dec 1975 FRX
2303818 Oct 1976 FRX
1951632 May 1971 DEX
1453625 Dec 1973 JPX
58-059219 Oct 1981 JPX
1210408A Feb 1988 JPX
907105 Oct 1962 GBX
1069061 May 1967 GBX
1099096 Jan 1968 GBX
1453625 Oct 1976 GBX
2002378 Feb 1977 GBX
2002378 Feb 1979 GBX
2002378 Mar 1982 GBX
8101855 Jul 1981 WOX
8404313 Nov 1984 WOX
Non-Patent Literature Citations (36)
Entry
St. Clair, et al., Additives Lower Pickup of Moisture by Polyimides, NASA Tech Briefs, 80-81, Apr., 1989.
Heidemann, "Oligomers" Encyclopedia of Polymer Science and Technology vol. 9 Molding to Petroleum Resins 485-506, 1968.
Second-generation polyimide raises continuous-use temperatures, Advanced Composites, May/Jun. 1988.
Vanucci et al., 700.degree. F. Properties of Autoclave Cured PMR-II Composites, NASA Tech. Memo 100923, Sep., 1988.
Vanucci, PMR Polyimide Compositions for Improved Performance at 371.degree. C. NTIS N87-16071, Apr., 1987.
Elsenbaumer et al., Highly Conductive Meta Derivatives of Poly(phenylene Sulfide), J. Polymer Sci: Polymer Phys. Ed., vol. 20, 1781-1787, 1982.
Patel et al., Poly-Schiff Bases, I. Preparation of Poly-Schiff Bases from 4,4'-Diacetyl Diphenyl Ether (DDE) with Various Diamines J. of Polymer Sci: Polymer Chem. Ed., vol. 20, 1985-1992, 1982.
Walton, A New Conjugated Network Polymer as an Electrical Conductor and Thermally Stable Plastic, Am. Chem. Soc. Org. Coat Plast. Chem., vol. 42, 595-599, 1980.
Lubowitz et al., Novel High Temperature Matrix Materials.
Serafini et al., Thermally Stable Polyimides from Solutions of Monomeric Reactants, Journal of Applied Polymer Science, vol. 16, pp. 905-915, 1972.
Spillman et al., Copolymers of Poly(Para-Phenylene Terephthalamide) Containing a Thermally Activated Cross-Linking Agent PMSE vol. 68, Spring Meetings 139-140, 1993.
Radlmann, et al., New Synthesis of Poly(ether Ketones). (44195h), Chem. Abstracts vol. 72, 1970, p. 44187, 1970.
Bryant et al., Synthesis and Properties of Phenylethynyl-Terminated Polyimides Polymer PrePrints, vol. 34, No. 1, 566-567, Mar. 1993.
Crivello et al., Polyimidothioether-Polysulfide Block Polymers Polymer Sci., Polymer Chem., Ed., vol. 13, pp. 1819-1842, 1975.
Frazer, High Temperature Resistant Polymers Interscience Publishers, John Wiley & Sons, Inc., 139-213, 1968.
Mittal (ed), Polyimides Plenum Press, NY, vol. 1 & 2 (selected pages) Publication Date Unavail.
St. Clair et al., The Development of Aerospace Polyimide Adhesives Mittal (ed), Polyimides-Synthesis Characterization and Applications, Plenum Press, NY, vol. 2, pp. 977-1041, 1973.
Serafini, et al., A Review of Processable High Temperature Resistant Addition-type Laminating Resins, Mittal (ed), Polyimides-Synthesis, Characterization and Applications, Plenum Press, NY, vol. 1, pp. 89-95, 1973.
Stenson, Polycyanurates Find Applications; Their Chemistry Remains Puzzling Science/Technology, 208 ACS National Meeting, Washington, D.C., C&EN Northeast News Bureau 30-31, Sep. 1994.
Sutter, et al., Easily Processable High-Temperature Polyimide NASA Tech. Briefs (two pages).
Stoakley, et al., Low-Dielectric-Constant Polyimides/Glass Composites NASA Tech. Briefs p. 24, Apr. 1994.
Bartolotta, Predicting Fatigue Lives of Metal-Matrix/Fiber Composites NASA Tech Briefs pp. 28, 30, Apr. 1994.
Vannucci, et al., Improved PMR Polyimides for Heat-Stable Laminates NASA Tech Briefs pp. 30-31, Apr. 1994.
Bryant, et al., Phenylethynyl End-Capping Reagents and Reactive Diluents NASA Tech Briefs pp. 36-37, Apr. 1994.
Jensen, et al., Phenylethynyl-Terminated Ploy(Arylene Ethers), NASA Tech Briefs p. 37, Apr. 1994.
Buckley, et al., Processable Polyimides for High Temperature Applications, 36th International SAMPE Symposium pp. 1172-1181, Apr. 1991.
Edwards, et al. Constituents of the Higher Fungi. Part XII..sup.1 2-Aryl-3-methoxymaleic Anhydrides from Pulvinic Acid Derivatives. A Convenient Method for Determination of Structure of Fungaland Lichen Pulvinic Acid Derivatives, Journal of The Chemical Society pp. 1538-1542, 1973.
Morrison, et al., "Reactions" and Hofmann degradation of amides Organic Chemistry Second Edition pp. 591 and 735, Publication Date Unavailable.
Kwiatkowski, et al., Thermosetting Diphenyl Sulfone-Based Malcimides Journal of Polymer Science, vol. 13, pp. 961-972, 1975.
Lyle et al., Polyarylene Ethers: Maleimides, Nadimides and Blends the Interdisciplinary Symposium on Recent Advances in Polyimides and Other High Performance Polymers, San Diego, California pp. K-1-K-7, Jan. 1990.
Roberts et al., Effect of Solution Concentration and Aging Conditions on PMR-15 Resin SAMPE Journal, pp. 24-28, 213, Mar./Apr. 1986.
Southcott, et al., "The Development of Processable, Fully Imidized, Polyimides for High-Temperature Applications", High Perform. Polym. 6, pp. 1-12, Printed in UK, 1994.
Vinogradova et al., Chemical Abstract 67:100458, Vysokomol. Soedin., Ser A (1967) 9(8) 1797-801.
Vinogradova et al., Vysokomol. Soedin., Ser. A (1967) 9(8), 1797-801.
Sheppard, et al., "Advanced Thermoplastic Composite Development", 38th Annual Conference, Reinforced Plastics Composites Instituet, The Society of the Plastic Industry Inc., Feb. 16-20, 1981.
Jaquish, et al., "Graphite Reinforced Thermoplastic Composites", Final Report on Contract N00019-79-C 0203, Boeing Aerospace Company, Seattle, Washington, 98124, Aug. 1980.
Divisions (1)
Number Date Country
Parent 176518 Apr 1988
Continuation in Parts (2)
Number Date Country
Parent 810817 Dec 1985
Parent 726258 Apr 1985