Claims
- 1. A composition comprising: a phase change solvent having the general formula:
- 2. A composition comprising: a phase change solvent having the general formula:
- 3. A composition comprising: a phase change solvent having the general formula:
- 4. The composition of claim 1 wherein the phase change solvent has a number-average molecular weight from about 150 to about 5,000.
- 5. The composition of claim 2 wherein the phase change solvent has a number-average molecular weight from about 150 to about 5,000.
- 6. The composition of claim 3 wherein the phase change solvent has a number-average molecular weight from about 150 to about 5,000.
- 7. The composition of claim 1 wherein an AA ratio (Caliphatic to Caromatic) of the phase change solvent ranges from about 0.25 to about 4.
- 8. The composition of claim 2 wherein an AP ratio (number of aliphatic carbons to number of polar groups) of the phase change solvent ranges from 1 to 25.
- 9. The composition of claim 2 wherein an AP ratio (number of aliphatic carbons to number of polar groups) of the phase change solvent ranges from 1 to 25.
- 10. The composition of claim 1 wherein Q is substituted with one or more substituents selected from the group consisting of H, C1-C30 alkyl, COOH, CONHR5, CONR5R6, NHR7, NR7R8, hydroxy, C1-C30 alkoxy, SO3H, and halogen; wherein R5, R6, R7 and R8 are independently H or linear or branched alkyl from C1-C30.
- 11. A process for preparing the phase change solvent having formula (I) or (II) of claim 1, comprising:
combining
A) a monofunctional aliphatic alcohol or monofunctional aliphatic amine having y carbons; B) a difunctional aromatic diacid, difunctional aromatic acid salt, difunctional aromatic ester, or difunctional aromatic isocyanate; and C) a difunctional aliphatic diol or a difunctional aliphatic diamine having x carbons; in a molar ratio of A:B:C of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (I); in a molar ratio of A:B:C of 1:n:n where 1≦n≦7) and under conditions to produce the phase change solvent having formula (II).
- 12. A process for preparing the phase change solvent having formula (I) or (IV-a) of claim 1, comprising:
combining
D) a monofunctional aliphatic acid, monofunctional aliphatic acid salt, monofunctional aliphatic ester, or monofunctional aliphatic isocyanate; E) a difunctional aromatic diol, or difunctional aromatic diamine; and F) a difunctional aliphatic diacid, difunctional aliphatic acid salt, difunctional aliphatic ester, or difunctional aliphatic isocyanate having x carbons; in a molar ratio of D:E:F of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (I); or in a molar ratio of D:E:F of 1:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (IV).
- 13. A process for preparing the phase change solvent having formula (V) or (VI) of claim 2, comprising:
combining
A) a monofunctional aliphatic amine having y carbons; B) a difunctional di-isocyanate; and C) an aliphatic difunctional diamine having x carbons; in a molar ratio of A:B:C of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (V); or in a molar ratio of A:B:C of 1:n:n where 1≦n≦7 and under conditions to produce the phase change solvent having formula (VI).
- 14. A process for preparing the phase change solvent having formula (V) or (VII) of claim 2, comprising:
combining
D) a monofunctional aliphatic acid salt having y carbons; E) a difunctional diol; and F) phosgene; in a molar ratio of D:E:F of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (V); or in a molar ratio of D:E:F of 1:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (VII).
- 15. A process for preparing the phase change solvent having formula (V) or (VII) of claim 2, comprising:
combining
G) a monofunctional aliphatic isocyanate having y carbons; H) a difunctional diamine; and I) a difunctional aliphatic di-isocyanate having x carbons; in a molar ratio of G:H:I of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (V); and in a molar ratio of G:H:I of 1:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (VII).
- 16. A process for preparing the phase change solvent having formula (V) or (VI) of claim 2, comprising:
combining
J) a monofunctional aliphatic alcohol having y carbons; K) phosgene; and L) a difunctional aliphatic diol having x carbons; in a molar ratio of J:K:L of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (V); or in a molar ratio of J:K:L of 1:n:n where 1≦n≦7 and under conditions to produce the phase change solvent having formula (VI).
- 17. A process for preparing the phase change solvent having formula (VIII) or (IX) of claim 3, comprising:
combining
A) a monofunctional aliphatic alcohol or monofunctional aliphatic amine having y carbons; B) a difunctional diacid, difunctional acid salt, difunctional ester, difunctional isocyanate, or difunctional phosgene; and C) a difunctional aliphatic diol or difunctional aliphatic diamine having x carbons; in a molar ratio of A:B:C of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (VIII); in a molar ratio of A:B:C of 1:n:n where 1≦n≦7 and under conditions to produce the phase change solvent having formula (IX).
- 18. A process for preparing the phase change solvent having formula (VIII) or (X) of claim 3, comprising:
combining
D) a monofunctional aliphatic acid, monofunctional aliphatic acid salt, monofunctional aliphatic ester, or monofunctional aliphatic isocyanate; E) a difunctional diol, or difunctional diamine; and F) a difunctional aliphatic diacid, difunctional aliphatic acid salt, difunctional aliphatic ester, difunctional aliphatic isocyanate, or phosgene; in a molar ratio of D:E:F of 2:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (VIII); and in a molar ratio of D:E:F of 1:n:n−1 where 2≦n≦8 and under conditions to produce the phase change solvent having formula (X).
- 19. A phase change solvent having a phase change in a temperature range from 40° C. to 250° C. and, when blended with a thermoplastic polymer at 20% solvent and 80% polymer, the blend has a viscosity less than 50% of a viscosity of the thermoplastic polymer absent the phase change solvent, and has a tensile strength at least 70% of a tensile strength of the thermoplastic polymer absent the phase change solvent, and wherein viscosity is measured at a temperature of 50° above a softening point of the polymer, and tensile strength is measured at ambient temperature.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application 60/399,963, filed Jul. 31, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60399963 |
Jul 2002 |
US |