Claims
- 1. A metal complex comprising:
(A) a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Co(I), Co(II), Co(III), Cr(II), Cr(III), Cr(IV), Cr(V), Cr(VI), V(III), V(IV), V(V), Mo(IV), Mo(V), Mo(VI), W(IV), W(V), W(VI), Pd(II), Ru(II), Ru(III), and Ru(IV); and (B) a cross-bridged macropolycyclic ligand comprising;
(1) an organic macrocycle ring that comprises at least 4 donor atoms, 2 of said donor atoms being non-adjacent donor atoms; and (2) a moiety that comprises a cross-bridged chain that covalently connects at least 2 non-adjacent donor atoms of said organic macrocycle ring, said covalently connected donor atoms being donor atoms that are coordinated to said transition metal; said cross-bridged chain comprising from 2 to, about 5 atoms.
- 2. A metal complex comprising:
(A) a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Co(I), Co(II), Co(III), Cr(II), Cr(III), Cr(IV), Cr(V), Cr(VI), V(III), V(IV), V(V), Mo(IV), Mo(V), Mo(VI), W(IV), W(V), W(VI), Pd(II), Ru(II), Ru(III), and Ru(IV); (B) a cross-bridged macropolycyclic ligand comprising:
(1) an organic macrocycle ring comprising:
(i) at least 4 donor atoms independently selected from the group consisting of N, O, S, and P; 2 to 6 of said donor atoms being coordinated to the same transition metal atom; and (ii) a sufficient number of non-donor atoms to separate said donor atoms from each other by covalent linkages of at least one non-donor atom; and (2) a moiety that comprises a cross-bridged chain, said cross-bridged chain comprising from 2 to 5 atoms and covalently connecting at least 2 non-adjacent, transition metal atom coordinated, donor atoms of said organic macrocycle ring; said cross-bridged macropolycyclic ligand being coordinated by at least 4 of said donor atoms to said transition metal atom; and (C) when said cross-bridged macropolycyclic ligand comprises less than 6 donor atoms coordinated to said transition metal, a sufficient number of non-macropolycyclic ligands to complete the coordination sphere of said transition metal atom; and (D) when said transition metals' charge is not neutralized by said non-macropolycyclic ligands, a sufficient number of counter ions to provide said metal complex with charge neutrality.
- 3. The metal complex of claim 2 wherein each counter ion is selected from the group consisting of tosylate, Cl—, PF6—, ClO4—, BF4—and CF3OSO3—.
- 4. The metal complex of claim 2 comprising one or more transition metal atoms selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV) and mixtures thereof.
- 5. The metal complex of claim 2 wherein at least one of said non-macropolycyclic ligands is covalently bound to said cross-bridged macropolycyclic ligand or at least one of said non-macropolycyclic ligands is covalently bound to an alkyl group that is covalently bound to said cross-bridged macropolycyclic ligand.
- 6. The metal complex of claim 5 wherein at least one of said non-macropolycyclic ligands is covalently bound to at least one non-donor atom of said organic macrocycle ring.
- 7. The metal complex of claim 5 wherein said non-macropolycyclic ligands are independently selected from the group consisting of ROH, NR3, RCN, RS—, RO—, RCOO—, NR2H, NRH2 and RC(O)O— wherein R is substituted alkyl, unsubstituted alkyl, substituted aryl or unsubstituted aryl; and organic phosphates, organic phosphonates, organic sulfates, organic sulfonates, pyridines, pyrazines, pyrazoles, imidazoles, benzimidazoles, pyrimidines, triazoles, and thiazoles.
- 8. The metal complex of claim 2 wherein said non-macropolycyclic ligands are independently selected from the group consisting of ROH, NR3, NRH2, NR2H, RCN, RS—, RO—, RCOO—, RC(O)O— wherein R is substituted alkyl, unsubstituted alkyl, substituted aryl or unsubstituted aryl; and H2O, OH—, OOH—, OCN—, SCN—, N3—, CN—, F—, Cl—, Br—, I—, O2—, NO3—, NO2—, SO42−, SO32−, PO43−, HCO2—, NH3, organic phosphates, organic phosphonates, organic sulfates, organic sulfonates, pyridines, pyrazines, pyrazoles, imidazoles, benzimidazoles, pyrimidines, triazoles, and thiazoles.
- 9. The metal complex of claim 2 comprising from 4 to 6 donor atoms.
- 10. The metal complex of claim 2 wherein said donor atoms are independently selected from the group consisting of N and O.
- 11. The metal complex of claim 10 wherein said donor atoms are N.
- 12. The metal complex of claim 2 wherein at least 3 of said donor atoms are N.
- 13. The metal complex of claim 2 comprising 4 or 5 donor atoms, said donor atoms being coordinated to the same transition metal atom.
- 14. The metal complex of claim 13 comprising 4 donor atoms.
- 15. The metal complex of claim 13 comprising 5 donor atoms, said donor atoms being N.
- 16. The metal complex of claim 2 comprising a single transition metal atom.
- 17. The metal complex of claim 2 wherein at least 4 of the donor atoms in the cross-bridged macropolycyclic ligand, form an apical bond angle, D-M-D, with the same transition metal atom, M, of 180±50° and at least one equatorial bond angle, D-M-D, of 90±20°.
- 18. The metal complex of claim 2 having a coordination geometry selected from the group consisting of distorted octahedral and distorted trigonal prismatic, and wherein the cross-bridged macropolycyclic ligand is in a folded conformation.
- 19. The metal complex of claim 2 wherein 2 of the donor atoms in the cross-bridged macropolycyclic ligand occupy mutually trans positions with respect to the coordination geometry about the metal, and at least 2 of the donor atoms in the cross-bridged macropolycyclic ligand occupy mutually cis-equatorial positions of the coordination geometry.
- 20. The metal complex of claim 2 wherein said organic macrocycle ring comprises at least 12 atoms.
- 21. The metal complex of claim 8 comprising:
(a) a single transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), and Fe(IV); and (b) said organic macrocycle ring comprises 4 or 5 donor atoms independently selected from the group consisting of N and O; said donor atoms being coordinated to said single transition metal atom.
- 22. The metal complex of claim 21 comprising:
(a) at least one non-macropolycyclic ligand independently selected from the group consisting of tosylate, NO3—, Cl—, Br—, H2O, OH—, CH3C(O)O—, HC(O)O—, SO42−, PO43−, CH3OSO331 , CH3CH2OSO3—, CH3SO3— and CH3CH2SO3; and (b) 2 pendant moieties independently selected from the group consisting of methyl, ethyl and propyl; and wherein (c) said organic macrocycle ring comprises 4 N donor atoms, 2 of said donor atoms being non-adjacent bridgehead donor atoms; said donor atoms being separated by 2 or 3 non-donor atoms; (d) said pendant moieties are covalently bound to said non-adjacent non-bridgehead N donor atoms; and (e) said cross-bridged chain is selected from the group consisting of ethylene, propylene, 2-butenylene and o-xylylene.
- 23. The metal complex of claim 21 comprising at least one non-macropolycyclic ligand independently selected from the group consisting of carboxymethyl, 2-hydroxybenzyl and 2-picolyl, and wherein
(a) said organic macrocycle ring comprises 4 N donor atoms, 2 of said donor atoms being non-adjacent bridgehead donor atoms; said donor atoms being separated by 2 or 3 non-donor atoms; (b) said non-macropolycyclic ligand is covalently bound to 1 of said non-adjacent non-bridgehead N donor atoms; and (c) said cross-bridged chain is selected from the group consisting of ethylene, propylene, 2-butenylene and o-xylylene.
- 24. The metal complex of claim 21 wherein at least one non-macropolycyclic ligand is covalently bound to said cross-bridged macropolycyclic ligand.
- 25. The metal complex of claim 2 comprising one or more pendant moieties that are covalently bound to said cross-bridged macropolycyclic ligand; one or more of said pendant moieties being optionally bound to said transition metal.
- 26. The metal complex of claim 25 wherein said one or more pendant moieties are independently selected from the group consisting of H, substituted alkyl, unsubstituted alkyl, substituted aryl or unsubstituted aryl.
- 27. The metal complex of claim 25 wherein one or more of said pendant moieties is bound to a donor atom in the organic macrocycle ring.
- 28. The metal complex of claim 25 comprising one or more transition metal atoms selected from the group consisting of Mn (II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV) and mixtures thereof.
- 29. The metal complex of claim 25 comprising only one transition metal atom per complex.
- 30. The metal complex of claim 25 comprising a tetradentate or pentadentate cross-bridged macropolycyclic ligand.
- 31. The metal complex of claim 25 wherein all the donor atoms in the cross-bridged macropolycyclic ligand are selected from the group consisting of N and O.
- 32. The metal complex of claim 25 wherein the cross-bridged macropolycyclic ligand comprises 4 or 5 donor atoms, all of which are coordinated to the same transition metal atom.
- 33. The metal complex of claim 25 wherein the cross-bridged macropolycyclic ligand comprises 4 nitrogen donor atoms all of which are coordinated to the same transition metal atom.
- 34. The metal complex of claim 25 wherein the cross-bridged macropolycyclic ligand comprises 5 nitrogen atoms all of which are coordinated to the same transition metal atom.
- 35. The metal complex of claim 25 wherein at least 2 of the donor atoms in said metal complex's macrocycle ring form an apical bond angle, D-M-D, with the same transition metal atom, M, of 180±50° and at least 2 of which form one equatorial bond angle of 90±20°.
- 36. The metal complex of claim 25 having a coordination geometry selected from the group consisting of distorted octahedral and distorted trigonal prismatic, and wherein the cross-bridged macropolycyclic ligand is in a folded conformation.
- 37. The metal complex of claim 25 wherein 2 of the donor atoms in the cross-bridged macropolycyclic ligand occupy mutually trans positions of the coordination geometry and at least 2 of the donor atoms in the cross-bridged macropolycyclic ligand, occupy cis-equatorial positions of the coordination geometry.
- 38. The metal complex of claim 25 comprising one or two non-macropolycyclic ligands.
- 39. The metal complex of claim 25 wherein said metal complex's organic macrocycle ring comprises at least 12 atoms.
- 40. A metal complex comprising Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula:
- 41. A metal complex comprising Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula:
- 42. A metal complex comprising Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula:
- 43. A metal complex comprising Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula:
- 44. A metal complex comprising a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged ligand having the formula:
- 45. The metal complex according to claim 44 wherein each A is independently selected from the group consisting of methyl, ethyl, propyl, isopropyl, butyl, isobutyl, tert-butyl, C5-C20 alkyl.
- 46. A metal complex comprising a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged macropolycyclic ligand having the formula:
- 47. A metal complex comprising a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged macropolycyclic ligand having the formula:
- 48. A metal complex comprising a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged macropolycyclic ligand having the formula:
- 49. A catalytic system comprising;
(A) from 1 ppb to 99.9% of a metal complex comprising:
(1) a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Co(I), Co(II), Co(III), Cr(II), Cr(III), Cr(IV), Cr(V), Cr(VI), Ni(II), Ni(III), Cu(I), Cu(II), Cu(III), V(III), V(IV), V(V), Mo(IV), Mo(V), Mo(VI), W(IV), W(V), W(VI), Pd(II), Ru(II), Ru(III), and Ru(IV); and (2) a cross-bridged macropolycyclic ligand comprising;
(a) an organic macrocycle ring that comprises at least 4 donor atoms, 2 of said donor atoms being non-adjacent donor atoms; and (b) a moiety that comprises a cross-bridged chain that covalently connects at least 2 non-adjacent donor atoms of said organic macrocycle ring, said covalently connected donor atoms being donor atoms that are coordinated to said transition metal; said cross-bridged chain comprising from 2 to 10 atoms. (B) the balance to 100%, of one or more adjunct materials.
- 50. A catalytic system comprising;
(A) from 1 ppb to 99.9% of a metal complex comprising:
(1) a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Co(I), Co(II), Co(III), Cr(II), Cr(III), Cr(IV), Cr(V), Cr(VI), Ni(II), Ni(III), Cu(I), Cu(II), Cu(III), V(III), V(IV), V(V), Mo(IV), Mo(V), Mo(VI), W(IV), W(V), W(VI), Pd(II), Ru(II), Ru(III), and Ru(IV); (2) a cross-bridged macropolycyclic ligand comprising:
(a) an organic macrocycle ring comprising:
(i) at least 4 donor atoms independently selected from the group consisting of N, O, S, and P; 2 to 6 of said donor atoms being coordinated to the same transition metal atom; and (ii) a sufficient number of non-donor atoms to separate said donor atoms from each other by covalent linkages of at least one non-donor atom; and (b) a moiety that comprises a cross-bridged chain, said cross-bridged chain comprising from 2 to 10 atoms and covalently connecting at least 2 non-adjacent, transition metal atom coordinated, donor atoms of said organic macrocycle ring; said cross-bridged macropolycyclic ligand being coordinated by at least 4 of said donor atoms to said transition metal atom; and
(3) when said cross-bridged macropolycyclic ligand comprises less than 6 donor atoms coordinated to said transition metal, a sufficient number of non-macropolycyclic ligands to complete the coordination sphere of said transition metal atom; and (4) when said transition metals' charge is not neutralized by said non-macropolycyclic ligands, a sufficient number of counter ions to provide said metal complex with charge neutrality; and. (B) the balance to 100%, of one or more adjunct materials.
- 51. The catalytic system of claim 50 wherein said counter ions that provide said metal complex with charge neutrality are selected from the group consisting of tosylate, Cl—, PF6—, ClO4—, BF4—and CF3OSO3—.
- 52. The catalytic system of claim 50 wherein said metal complex comprises one or more transition metal atoms selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV) and mixtures thereof.
- 53. The catalytic system of claim 50 wherein at least one of said metal complex's non-macropolycyclic ligands is covalently bound to said cross-bridged macropolycyclic ligand or at least one of said non-macropolycyclic ligands is covalently bound to an alkyl group that is covalently bound to said cross-bridged macropolycyclic ligand.
- 54. The catalytic system of claim 50 wherein at least one of said metal complex's non-macropolycyclic ligands is covalently bound to at least one non-donor atom of said organic macrocycle ring.
- 55. The catalytic system of claim 54 wherein said metal complex's non-macropolycyclic ligands are independently selected from the group consisting of ROH, NR3, RCN, RS—, RO—, RCOO—, NR2H, NRH2 and RC(O)O— wherein R is substituted alkyl, unsubstituted alkyl, substituted aryl or unsubstituted aryl; and organic phosphates, organic phosphonates, organic sulfates, organic sulfonates, pyridines, pyrazines, pyrazoles, imidazoles, benzimidazoles, pyrimidines, triazoles, and thiazoles.
- 56. The catalytic system of claim 50 wherein said metal complex's non-macropolycyclic ligands are independently selected from the group consisting of ROH, NR3, NRH2, NR2H, RCN, RS—, RO—, RCOO—, RC(O)O— wherein R is substituted alkyl, unsubstituted alkyl, substituted aryl or unsubstituted aryl; and H2O, OH—, OOH13 , OCN—, SCN—, N313 , CN—, F—, Cl—, Br—, I—, O2—, NO3—, NO2—, SO42−, SO32−, PO43−, HCO2—, NH3, organic phosphates, organic phosphonates, organic sulfates, organic sulfonates, pyridines, pyrazines, pyrazoles, imidazoles, benzimidazoles, pyrimidines, triazoles, and thiazoles.
- 57. The catalytic system of claim 50 wherein said metal complex comprises from 4 to 6 donor atoms.
- 58. The catalytic system of claim 50 wherein said metal complex's donor atoms are independently selected from the group consisting of N and O.
- 59. The catalytic system of claim 58 wherein said metal complex's donor atoms are N.
- 60. The catalytic system of claim 50 wherein at least 3 of said metal complex's donor atoms are N.
- 61. The catalytic system of claim 50 wherein said metal complex comprises 4 or 5 donor atoms, said donor atoms being coordinated to the same transition metal atom.
- 62. The catalytic system of claim 50 wherein said metal complex comprises 4 donor atoms.
- 63. The catalytic system of claim 61 wherein said metal complex comprises 5 donor atoms, said donor atoms being N.
- 64. The catalytic system of claim 50 wherein said metal complex comprises a single transition metal atom.
- 65. The catalytic system of claim 50 wherein at least 4 of the donor atoms in the metal complex's cross-bridged macropolycyclic ligand, form an apical bond angle, D-M-D, with the same transition metal atom, M, of 180±50° and at least one equatorial bond angle, D-M-D, of 90±20°.
- 66. The catalytic system of claim 50 wherein said metal complex has a coordination geometry selected from the group consisting of distorted octahedral and distorted trigonal prismatic, and wherein the cross-bridged macropolycyclic ligand is in a folded conformation.
- 67. The catalytic system of claim 50 wherein 2 of the donor atoms in said metal complex's cross-bridged macropolycyclic ligand occupy mutually trans positions with respect to the coordination geometry about the metal, and at least 2 of the donor atoms in the cross-bridged macropolycyclic ligand occupy mutually cis-equatorial positions of the coordination geometry.
- 68. The catalytic system of claim 50 wherein said metal complex's organic macrocycle ring comprises at least 12 atoms.
- 69. The catalytic system of claim 56 wherein said metal complex comprises:
(a) a single transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), and Fe(IV); and (b) said organic macrocycle ring comprises 4 or 5 donor atoms independently selected from the group consisting of N and O; said donor atoms being coordinated to said single transition metal atom.
- 70. The catalytic system of claim 69 wherein said metal complex comprises:
(a) at least one non-macropolycylic ligand independently selected from the group consisting of tosylate, NO3—, Cl—, Br—, H2O, OH—, CH3C(O)O—, HC(O)O—, HC(O)O—, SO42−, PO43−, CH3OSO3, CH3CH2OSO3—, CH3SO3 and CH3CH2SO3—; and (b) 2 pendant moieties independently selected from the group consisting of methyl, ethyl and propyl; and wherein (c) said organic macrocycle ring comprises 4 N donor atoms, 2 of said donor atoms being non-adjacent bridgehead donor atoms; said donor atoms being separated by 2 or 3 non-donor atoms; (d) said pendant moieties are covalently bound to said non-adjacent non-bridgehead N donor atoms; and (e) said cross-bridged chain is selected from the group consisting of ethylene, propylene, 2-butenylene and o-xylylene.
- 71. The catalytic system of claim 69 wherein said metal complex comprises:
(a) at least one non-macropolycylic ligand independently selected from the group consisting of tosylate, NO3—, Cl—, Br—, H2O, OH—, CH3C(O)O—, HC(O)O—, HC(O)O—, SO42−, PO43−, CH3OSO3—, CH3CH2OSO3—, CH3SO3— and CH3CH2SO3—; and (b) 2 pendant moieties independently selected from the group consisting of methyl, ethyl and propyl; and wherein (c) said organic macrocycle ring comprises 4 N donor atoms, 2 of said donor atoms being non-adjacent bridgehead donor atoms; said donor atoms being separated by 2 or 3 non-donor atoms; (d) said pendant moieties are covalently bound to said non-adjacent non-bridgehead N donor atoms; and (e) said cross-bridged chain is selected from the group consisting of ethylene, propylene, 2-butenylene and o-xylylene.
- 72. The catalytic system of claim 69 wherein at least one of said metal complex's non-macropolycyclic ligands is covalently bound to said cross-bridged macropolycyclic ligand.
- 73. The catalytic system of claim 50 wherein said metal complex comprises one or more pendant moieties that are covalently bound to said cross-bridged macropolycyclic ligand; one or more of said pendant moieties being optionally bound to said transition metal.
- 74. The catalytic system of claim 72 wherein one or more of said pendant moieties is independently selected from the group consisting of H, substituted alkyl, unsubstituted alkyl, substituted aryl or unsubstituted aryl.
- 75. The catalytic system of claim 72 wherein one or more of said pendant moieties is bound to a donor atom in the organic macrocycle ring.
- 76. The catalytic system of claim 72 wherein said metal complex's transition metal atom is selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), and Fe(IV).
- 77. The catalytic system of claim 72 wherein said metal complex comprises only one transition metal atom.
- 78. The catalytic system of claim 72 wherein said metal complex comprises a tetradentate or pentadentate cross-bridged macropolycyclic ligand.
- 79. The catalytic system of claim 72 wherein all the donor atoms in the metal complex's cross-bridged macropolycyclic ligand are selected from the group consisting of N and O.
- 80. The catalytic system of claim 72 wherein the metal complex's cross-bridged macropolycyclic ligand comprises 4 or 5 donor atoms, all of which are coordinated to the same transition metal atom.
- 81. The catalytic system of claim 72 wherein the metal complex's cross-bridged macropolycyclic ligand comprises 4 donor atoms, all of which are coordinated to the same transition metal atom.
- 82. The catalytic system of claim 72 wherein the metal complex's cross-bridged macropolycyclic ligand comprises 5 nitrogen atoms all of which are coordinated to the same transition metal atom.
- 83. The catalytic system of claim 72 wherein at least 2 of the donor atoms in said metal complex's macrocycle ring form an apical bond angle, D-M-D, with the same transition metal atom, M, of 180±50° and at least 2 of which form one equatorial bond angle of 90±20°.
- 84. The catalytic system of claim 72 wherein said metal complex's coordination geometry is selected from the group consisting of distorted octahedral and distorted trigonal prismatic, and wherein the cross-bridged macropolycyclic ligand is in a folded conformation.
- 85. The catalytic system of claim 72 wherein 2 of the donor atoms in the metal complex's cross-bridged macropolycyclic ligand occupy mutually trans positions of the coordination geometry and at least 2 of the donor atoms in the cross-bridged macropolycyclic ligand, occupy cis-equatorial positions of the coordination geometry.
- 86. The catalytic system of claim 72 wherein said metal complex comprises 1 or 2 non-macropolycyclic ligands.
- 87. The catalytic system of claim 72 wherein said metal complex's organic macrocycle ring comprises at least 12 atoms.
- 88. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula: 62wherein in this formula:
each “n” is an integer independently selected from 1 and 2, completing the valence of the carbon atom to which the R moieties are covalently bonded; each “R” and “R1” is independently selected from the group consisting of H, alkyl, alkenyl, alkynyl, aryl, alkylaryl alkylheteroaryl and heteroaryl, or R and/or R1 are covalently bonded to form an aromatic, heteroaromatic, cycloalkyl or heterocycloalkyl ring; said moieties, except for H, being linear or branched and substituted or unsubstituted; each “a” is an integer independently selected from 2 or 3; and (B) the balance to 100%, of one or more adjunct materials.
- 89. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula: 63wherein “R1” is independently selected from the group consisting of H, C1-C20 alkyl, alkenyl and alkynyl; said C1-C20 alkyl, alkenyl and alkynyl moieties being linear or branched and substituted or unsubstituted; and (B) the balance to 100%, of one or more adjunct materials.
- 90. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula: 64wherein in this formula:
each “n” is an integer independently selected from the group consisting of 1 and 2, completing the valence of the carbon atom to which the R moieties are covalently bonded; each “R” and “R1” is independently selected from the group consisting of H, alkyl, alkenyl, alkynyl, aryl, alkylaryl, alkylheteroaryl and heteroaryl, or R and/or R1 are covalently bonded to form an aromatic, heteroaromatic, cycloalkyl or heterocycloalkyl ring; said moieties, except for H, being linear or branched and substituted or unsubstituted each “a” is an integer independently selected from 1, 2 or 3; and (B) the balance to 100%, of one or more adjunct materials.
- 91. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
Mn(II), Mn(III), Mn(IV), or Mn(V); and a cross-bridged ligand having the formula: 65wherein “R1” is independently selected from the group consisting of H, C1-C20 alkyl, alkenyl and alkynyl; said C1-C20 alkyl, alkenyl and alkynyl moieties being linear or branched and substituted or unsubstituted; and (B) the balance to 100%, of one or more adjunct materials.
- 92. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged ligand having the formula: 66wherein m and n are integers from 0 to 2, p is an integer from 1 to 4, and A is a nonhydrogen moiety having no aromatic content; and (B) the balance to 100%, of one or more adjunct materials.
- 93. The catalytic system of claim 92 wherein in said metal complex each A is independently selected from the group consisting of methyl, ethyl, propyl, isopropyl, butyl, isobutyl, tert-butyl, C5-C20 alkyl.
- 94. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged macropolycyclic ligand having the formula: 67wherein “R1” is independently selected from the group consisting of H, C1-C20 alkyl, alkenyl and alkynyl; said C1-C20 alkyl, alkenyl and alkynyl moieties being linear or branched and substituted or unsubstituted; R2 is selected from the group consisting of ethylene, propylene, 2-butenylene and o-xylylene; and all nitrogen atoms in the macropolycyclic rings are coordinated to the transition metal atom; and (B) the balance to 100%, of one or more adjunct materials.
- 95. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged macropolycyclic ligand having the formula: 68wherein:
each “n” is an integer independently selected from 1 and 2, completing the valence of the carbon atom to which the R moieties are covalently bonded; each “R” and “R1” is independently selected from the group consisting of H, alkyl, alkenyl, alkynyl, aryl, alkylaryl, alkylheteroaryl, and heteroaryl, or R and/or R1 are covalently bonded to form an aromatic, heteroaromatic, cycloalkyl or heterocycloalkyl ring, said moieties, except for H, being linear or branched and substituted or unsubstituted; each “a” is an integer independently selected from 2 and 3; and all nitrogen atoms in the macropolycyclic rings are coordinated to the transition metal atom; and (B) the balance to 100%, of one or more adjunct materials.
- 96. A catalytic system comprising:
(A) from 1 ppb to 99.9% of a metal complex comprising:
a transition metal atom selected from the group consisting of Mn(II), Mn(III), Mn(IV), Mn(V), Fe(II), Fe(III), Fe(IV), Cr(II), Cr(III), Cr(IV), Cr(V), and Cr(VI); and a cross-bridged macropolycyclic ligand having the formula: 69wherein “R1” is independently selected from the group consisting of H, C1-C20 alkyl, alkenyl and alkynyl; said C1-C20 alkyl, alkenyl and alkynyl moieties being linear or branched and substituted or unsubstituted; and all nitrogen atoms in the macropolycyclic rings are coordinated to the transition metal atom; and (B) the balance to 100%, of one or more adjunct materials.
CROSS-REFERENCE
[0001] This application claims priority under 35 U.S.C. §120 to U.S. application Ser. No. 10/155,105, filed May 24, 2002, which in turn claims priority to U.S. application Ser. No. 09/380,672, filed Sep. 7, 1999, (now abandoned) which is an entry into the U.S. National Stage under 35 U.S.C. § 371 of PCT International Application Serial No. PCT/IB98/00302, filed Mar. 6, 1998, which claims priority under PCT Article 8 and 35 U.S.C. § 119(e) to U.S. Provisional Application Serial No. 60/040,629, filed Mar. 7, 1997 (now abandoned).
Provisional Applications (1)
|
Number |
Date |
Country |
|
60040629 |
Mar 1997 |
US |
Continuations (2)
|
Number |
Date |
Country |
Parent |
10155105 |
May 2002 |
US |
Child |
10228854 |
Aug 2002 |
US |
Parent |
09380672 |
Sep 1999 |
US |
Child |
10155105 |
May 2002 |
US |