EP3397635B1

Methods for the manufacture of an aromatic bisimide and a polyetherimide

Abstract

This record has no abstract on file.

EP3397635B1, drawing sheet 1
Sheet 1 of 18

Term

10.3 yearsleft in the term

Expires 29 December 2036.

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  2. Filed
  3. Granted
  4. Today
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13 claims: 10 independent, 3 dependent

  1. 1
    A method for producing an aromatic bisimide, the method comprising reacting a dialkali metal salt of a dihydroxy aromatic compound with an N-alkyl nitrophthalimide composition under conditions effective to form a product mixture comprising the aromatic bisimide, wherein the N-alkyl nitrophthalimide composition comprises 4-nitro-N-(C 1-13 alkyl)phthalimide, 3-nitro-N-(C 1-13 alkyl)phthalimide, or a combination comprising at least one of the foregoing;and 4-hydroxy-3,5-dinitro-N-(C 1-13 alkyl)phthalimide in an amount of 1-10000 ppm, or 50-10000 ppm, or 100-10000 ppm, or 500-10000 ppm, or 1000-10000 ppm;1-8000 ppm, or 50-8000 ppm, or 100-8000 ppm, or 500-8000 ppm, or 1000-8000 ppm or 1-8000 ppm, or 50-8000 ppm, or 100-7000 ppm, or 500-7000 ppm, or 1000-7000 ppm;or 1-6000 ppm, or 50-6000 ppm, or 100-6000 ppm, or 500-6000 ppm, or 1000-6000 ppm;or 1-4000 ppm, or 50-4000 ppm, or 100-4000 ppm, or 500-4000 ppm, or 1000-4000 ppm;or 1-3000 ppm, or 50-3000 ppm, or 100-3000 ppm, or 500-3000 ppm, or 1000-3000 ppm;and wherein the aromatic bisimide is obtained in a yield of greater than 75%, or greater than 85%, or 90-99.8%, or 95-99.8%, or 97-99.8%, or 98-99.8%, or 99-99.8%.
  2. 4
    The method of any one or more of claims 1-3, further comprising preparing the N-alkyl nitrophthalimide composition by contacting an N-(C 1-13 alkyl)phthalimide with nitric acid and sulfuric acid to provide a nitration product mixture comprising the 4-nitro-N-(C 1-13 alkyl)phthalimide, 3-nitro-N-(C 1-13 alkyl)phthalimide, and 4-hydroxy-3,5-dinitro-N-(C 1-13 alkyl)phthalimide.
  3. 5
    The method of any one or more of claims 1-4 wherein the aromatic bisimide comprises 4,4'-bisphenol-A-bis-N-methylphthalimide, 3,4'-bisphenol-A-bis-N-methylphthalimide, 3,3'-bisphenol-A-bis-N-methylphthalimide, or a combination comprising at least one of the foregoing.
  4. 6
    The method of any one or more of claims 1-5, wherein the product mixture further comprises a nonpolar organic solvent, preferably wherein the nonpolar organic solvent is toluene.
  5. 7
    The method of any one or more of claims 1-6, wherein the product mixture further comprises a dipolar aprotic solvent, preferably wherein the dipolar aprotic solvent comprises dimethyl sulfoxide, dimethylacetamide, N-methylpyrrolidone, dimethylformamide, sulfolane, or a combination comprising at least one of the foregoing.
  6. 8
    The method of any one or more of claims 1-7, wherein the reacting is in the presence of a phase transfer catalyst, preferably hexaethylguanidinium chloride;wherein the phase transfer catalyst is present in an amount of 0.1-10 mole percent, or 1-2 mole percent, based on the total moles of the dialkali metal salt of the dihydroxy aromatic compound.
  7. 9
    The method of any one or more of claims 1-8, wherein the method further comprises extracting the aromatic bisimide from the product mixture to provide an isolated aromatic bisimide, wherein the extracting is with an aqueous alkali solution comprising 0.1-10 wt%, or 1-5 wt% by weight alkali metal hydroxide, preferably sodium hydroxide.
  8. 11
    A method for the manufacture of a polyetherimide, the method comprising preparing an aromatic bisimide according to the method of any one or more of claims 1-10;contacting the aromatic bisimide with a phthalic anhydride in the presence of a catalyst and under conditions effective to provide an aromatic bis(ether phthalic anhydride) of the formula wherein Z is an aromatic C 6-24 monocyclic or polycyclic moiety optionally substituted with 1-6 C 1-8 alkyl groups, 1-8 halogen atoms, or a combination comprising at least one of the foregoing;and contacting the aromatic bis(ether phthalic anhydride) with an organic diamine of the formula         H 2 N-R-NH 2 wherein R is a C 6-20 aromatic hydrocarbon group or a halogenated derivative thereof, a straight or branched chain C 2-20 alkylene group or a halogenated derivative thereof, a C 3-8 cycloalkylene group or halogenated derivative thereof, or a combination comprising at least one of the foregoing;and wherein the polyetherimide has a yellowness index of less than 120, or less than 110, or less than 100, as determined according to ASTM D1925 at a thickness of 3.2 millimeters.
  9. 12
    A method for the manufacture of a polyetherimide, the method comprising, preparing an aromatic bisimide according to the method of any one or more of claims 1-10 hydrolyzing the aromatic bisimide under conditions effective to provide the corresponding tetraacid;condensing the tetraacid under conditions effective to provide an aromatic bis(ether phthalic anhydride) of the formula wherein Z is an aromatic C 6-24 monocyclic or polycyclic moiety optionally substituted with 1-6 C 1-8 alkyl groups, 1-8 halogen atoms, or a combination comprising at least one of the foregoing;and contacting the aromatic bis(ether phthalic anhydride) with an organic diamine of the formula         H 2 N-R-NH 2 wherein R is a C 6-20 aromatic hydrocarbon group or a halogenated derivative thereof, a straight or branched chain C 2-20 alkylene group or a halogenated derivative thereof, a C 3-8 cycloalkylene group or halogenated derivative thereof, or a combination comprising at least one of the foregoing;and wherein the polyetherimide has a yellowness index of less than 120, or less than 110, or less than 100, as determined according to ASTM D1925 at a thickness of 3.2 millimeters.
  10. 13
    A mixed acid nitration process for the preparation of an N-alkyl nitrophthalimide composition, the process comprising contacting an N-alkylphthalimide with nitric acid and sulfuric acid, to provide a dissolved N-alkyl nitrophthalimide product mixture comprising 4-nitro-N-(C 1-13 alkyl)phthalimide, 3-nitro-N-(C 1-13 alkyl)phthalimide, or a combination comprising at least one of the foregoing, and 4-hydroxy-3,5-dinitro-N-(C 1-13 alkyl)phthalimide; adding water to precipitate the N-alkyl nitrophthalimide product mixture, and isolating the precipitated N-alkyl nitrophthalimide product mixture; washing the isolated N-alkyl nitrophthalimide product mixture, preferably wherein the washing is using a belt filter, an agitated nutsche filter, centrifuging, or a combination comprising at least one of the foregoing, to provide a washed N-alkyl nitrophthalimide composition; and optionally purifying the washed N-alkyl nitrophthalimide product mixture by:contacting the washed N-alkyl nitrophthalimide product mixture with an aqueous alkali metal carbonate solution, an aqueous alkali metal hydrogen carbonate solution, or a combination comprising at least one of the foregoing, followed by extracting the 4-nitro-N-(C 1-13 alkyl)phthalimide into an organic solvent provide an aqueous phase and an organic phase;and separating aqueous phase and the organic phase to provide a purified N-alkyl nitrophthalimide composition in the organic phase;or dissolving the washed N-alkyl nitrophthalimide product mixture in an organic solvent immiscible with water to extract the 4-nitro-N-(C 1-13 alkyl)phthalimide into the organic solvent and provide an aqueous phase and an organic phase;adding an aqueous alkali metal carbonate, an aqueous alkali metal hydrogen carbonate, or a combination thereof to the aqueous phase;and separating aqueous phase and the organic phase to provide a purified N-alkyl nitrophthalimide composition in the organic phase;or dissolving the washed N-alkyl nitrophthalimide product mixture in an organic solvent immiscible with water to extract the 4-nitro-N-(C 1-13 alkyl)phthalimide into the organic solvent and provide an aqueous phase and an organic phase;and separating aqueous phase and the organic phase to provide a purified N-alkyl nitrophthalimide composition in the organic phase;and optionally further contacting the organic phase with an aqueous alkali metal hydrogen carbonate solution, or a combination comprising at least one of the foregoing to provide an organic phase comprising a purified N-alkyl nitrophthalimide composition wherein the washed or the purified N-alkyl nitrophthalimide composition comprises 4-nitro-N-(C 1 - 13 alkyl)phthalimide, 1-10000 ppm, or 1-8000 ppm, or 1-7000 ppm, or 1-6000 ppm, or 1-5000 ppm, or 1-4000 ppm, or 1-3000 ppm, or 500-7000 ppm, 500-6000 ppm, or 500-5000 ppm, or 500-4000 ppm, or 500-3000 ppm, or 1000-7000 ppm or 1000-6000 ppm, or 1000-5000 ppm or 1000-4000 ppm, or 1000-3000 of 4-hydroxy-3,5-dinitro-N-(C 1-13 alkyl)phthalimide, and 0.001-5 wt%, or 0.1 to 3.5 wt.%, or 1-2 wt% of 3-nitro-N-(C 1-13 alkyl)phthalimide.