Claims
- 1. A macrocyclic module composition comprising:
from three to about twenty-four cyclic synthons coupled to form a closed ring; at least two functional groups for coupling the closed ring to complementary functional groups on at least two other closed rings; wherein each functional group and each complementary functional group comprises an organic functional group containing atoms selected from the group consisting of C, H, N, O, Si, P, S, B, Al, halogens, and metals from the alkali and alkaline earth groups.
- 2. The composition of claim 1, comprising at least two closed rings coupled through said functional groups.
- 3. The composition of claim 1, comprising at least three closed rings coupled through said functional groups.
- 4. A macrocyclic module composition comprising:
from three to about twenty-four cyclic synthons coupled to form a closed ring defining a pore; the closed ring having a first pore dimension in a first conformation when a first group of substituents is located at the pore and a second pore dimension in a second conformation when a second group of substituents is located at the pore; wherein each substituent of each group comprises an organic functional group containing atoms selected from the group consisting of C, H, N, O, Si, P, S, B, Al, halogens, and metals from the alkali and alkaline earth groups.
- 5. A composition, comprising:
(a) from three to about twenty-four cyclic synthons coupled to form a closed ring defining a pore; (b) at least one functional group coupled to the closed ring at the pore and selected to transport a selected species through the pore, wherein the at least one functional group comprises an organic functional group containing atoms selected from the group consisting of C, H, N, O, Si, P, S, B, Al, halogens, and metals from the alkali and alkaline earth groups; (c) a selected species to be transported through the pore.
- 6. The composition of claim 5, wherein the selected species is selected from the group of ovalbumin, glucose, creatinine, H2PO4−, HPO4−2, HCO3−, urea, Na+, Li+, and K+.
- 7. A method of preparing a composition to transport a selected species through the composition, comprising:
selecting a first cyclic synthon, wherein the first cyclic synthon is substituted with at least one functional group comprising an organic functional group containing atoms selected from the group consisting of C, H, N, O, Si, P, S, B, Al, halogens, and metals from the alkali and alkaline earth groups; selecting from two to about twenty-three additional cyclic synthons; incorporating the first cyclic synthon and the additional cyclic synthons into a macrocyclic module composition comprising:
from three to about twenty-four cyclic synthons coupled to form a closed ring defining a pore; wherein the at least one functional group of the first cyclic synthon is located at the pore of the macrocyclic module composition and is selected to transport the selected species through the pore.
- 8. The composition as in any one of claims 1-4 coupled to a solid support selected from the group of Wang resins, hydrogels, aluminas, metals, ceramics, polymers, silica gels, sepharose, sephadex, agarose, inorganic solids, semiconductors, and silicon wafers.
- 9. The composition as in any one of claims 1-4, wherein the macrocyclic module composition retains at least 85% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 10. The composition as in any one of claims 1-4, wherein the macrocyclic module composition retains at least 95% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 11. The composition as in any one of claims 1-4, wherein the macrocyclic module composition retains at least 98% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 12. The composition as in any one of claims 1-5, wherein the cyclic synthons are each independently selected from the group consisting of benzene, cyclohexadiene, cyclohexene, cyclohexane, cyclopentadiene, cyclopentene, cyclopentane, cycloheptane, cycloheptene, cycloheptadiene, cycloheptatriene, cyclooctane, cyclooctene, cyclooctadiene, cyclooctatriene, cyclooctatetraene, naphthalene, anthracene, phenylene, phenanthracene, pyrene, triphenylene, phenanthrene, pyridine, pyrimidine, pyridazine, biphenyl, bipyridyl, decalin, piperidine, pyrrolidine, morpholine, piperazine, pyrazolidine, quinuclidine, tetrahydropyran, dioxane, tetrahydrothiophene, tetrahydrofuran, pyrrole, triptycene, adamantane, bicyclo[2.2.1]heptane, bicyclo[2.2.1]heptene, bicyclo[2.2.2]octane, bicyclo[2.2.2]octene, bicyclo[3.3.0]octane, bicyclo[3.3.0]octene, bicyclo[3.3.1]nonane, bicyclo[3.3.1]nonene, bicyclo[3.2.2]nonane, bicyclo[3.2.2]nonene, bicyclo[4.2.2]decane, 7-azabicyclo[2.2.1]heptane, 1,3-diazabicyclo[2.2.1]heptane, and spiro[4.4]nonane.
- 13. The composition as in any one of claims 1, 4, or 5, wherein each coupled cyclic synthon is independently coupled to two adjacent synthons by a linkage selected from the group consisting of (a) a condensed linkage, and (b) a linkage selected from the group consisting of —NRC(O)—, —OC(O)—, —O—, —S—S—, —S—, —NR—, —(CRR′)p—, —CH2NH—, —C(O)S—, —C(O)O—, —C≡C—, —C≡C—C≡C—, —CH(OH)—, —HC═CH—, —NHC(O)NH—, —NHC(O)O—, —NHCH2NH—, —NHCH2CH(OH)CH2NH—, —N═CH(CH2)pCH═N—, —CH2CH(OH)CH2—, —N═CH(CH2)hCH═N— where h is 1-4, —CH═N—NH—, —OC(O)O—, —OP(O)(OH)O—, —CH(OH)CH2NH—, —CH(OH)CH2—, —CH(OH)C(CH3)2C(O)O—,
- 14. A closed ring composition of the formula:
- 15. The composition of claim 14, wherein the organic functional groups are each independently selected from the group consisting of hydrogen, an activated acid, —OH, —C(O)OH, —C(O)H, —C(O)OCH3, —C(O)Cl, —NRR, —NRRR+, —MgX, —Li, —OLi, —OK, —ONa, —SH, —C(O)(CH2)2C(O)OCH3, —NH-alkyl-C(O)CH2CH(NH2)CO2-alkyl, —CH═CH2, —CH═CHR, —CH═CR2, 4-vinylaryl, —C(O)CH═CH2, —NHC(O)CH═CH2, —C(O)CH═CH(C6H5),
- 16. The composition of claim 14, wherein the macrocyclic module composition retains at least 85% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 17. The composition of claim 14, wherein the macrocyclic module composition retains at least 95% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 18. The composition of claim 14, wherein the macrocyclic module composition retains at least 98% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 19. A closed ring composition of the formula:
- 20. The composition of claim 19, wherein the organic functional groups are each independently selected from the group consisting of hydrogen, an activated acid, —OH, —C(O)OH, —C(O)H, —C(O)OCH3, —C(O)Cl, —NRR, —NRRR+, —MgX, —Li, —OLi, —OK, —ONa, —SH, —C(O)(CH2)2C(O)OCH3, —NH-alkyl-C(O)CH2CH(NH2)CO2-alkyl, —CH═CH2, —CH═CHR, —CH═CR2, 4-vinylaryl, —C(O)CH═CH2, —NHC(O)CH═CH2, —C(O)CH═CH(C6H5),
- 21. The composition of claim 19, wherein the macrocyclic module composition retains at least 85% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 22. The composition of claim 19, wherein the macrocyclic module composition retains at least 95% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 23. The composition of claim 19, wherein the macrocyclic module composition retains at least 98% of film area after thirty minutes on a Langmuir trough at 5-15 mN/m.
- 24. A closed ring composition of the formula:
- 25. The composition of claim 24, wherein the organic functional groups are each independently selected from the group consisting of hydrogen, an activated acid, —OH, —C(O)OH, —C(O)H, —C(O)OCH3, —C(O)Cl, —NRR, —NRRR+, —MgX, —Li, —OLi, —OK, —ONa, —SH, —C(O)(CH2)2C(O)OCH3, —NH-alkyl-C(O)CH2CH(NH2)CO2-alkyl, —CH═CH2, —CH═CHR, —CH═CR2, 4-vinylaryl, —C(O)CH═CH2, —NHC(O)CH═CH2, —C(O)CH═CH(C6H5),
- 26. A closed ring composition of the formula:
- 27. The composition of claim 26, wherein X and Rn are each independently selected from the group consisting of hydrogen, an activated acid, —OH, —C(O)OH, —C(O)H, —C(O)OCH3, —C(O)Cl, —NRR, —NRRR+, —MgX, —Li, —OLi, —OK, —ONa, —SH, —C(O)(CH2)2C(O)OCH3, —NH-alkyl-C(O)CH2CH(NH2)CO2-alkyl, —CH═CH2, —CH═CHR, —CH═CR2, 4-vinylaryl,
- 28. A closed ring composition of the formula:
- 29. The composition of claim 28, wherein X and Rn are each independently selected from the group consisting of hydrogen, an activated acid, —OH, —C(O)OH, —C(O)H, —C(O)OCH3, —C(O)Cl, —NRR, —NRRR+, —MgX, —Li, —OLi, —OK, —ONa, —SH, —C(O)(CH2)2C(O)OCH3, —NH-alkyl-C(O)CH2CH(NH2)CO2-alkyl, —CH═CH2, —CH═CHR, —CH═CR2, 4-vinylaryl,
- 30. The composition of claim 14 having the formula:
- 31. The composition of claim 19 having the formula:
- 32. The composition of claim 14 having the formula:
- 33. The composition of claim 14 having the formula:
- 34. The composition of claim 14 having the formula:
- 35. A method for making a macrocyclic module composition comprising:
(a) providing a plurality of a first cyclic synthon; (b) contacting a plurality of a second cyclic synthon with the first cyclic synthons; (c) isolating the macrocyclic module composition.
- 36. The method of claim 35, further comprising contacting a linker molecule with the mixture in (a) or (b).
- 37. A method for making a macrocyclic module composition comprising:
(a) providing a plurality of a first cyclic synthon; (b) contacting a plurality of a second cyclic synthon with the first cyclic synthons; (c) contacting a plurality of the first cyclic synthon with the mixture from (b).
- 38. A method for making a macrocyclic module composition comprising:
(a) providing a plurality of a first cyclic synthon; (b) contacting a plurality of a second cyclic synthon with the first cyclic synthons; (c) contacting a plurality of a third cyclic synthon with the mixture from (b).
- 39. The method of claim 37 or 38, further comprising supporting a cyclic synthon or coupled synthons on a solid phase.
- 40. A method for making a macrocyclic module composition comprising:
(a) contacting a plurality of cyclic synthons with a metal complex template; (b) isolating the macrocyclic module composition.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of application Ser. No. 10/071,377, filed Feb. 7, 2002, now abandoned.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10071377 |
Feb 2002 |
US |
Child |
10226400 |
Aug 2002 |
US |