Claims
- 1. A process to produce a mono amino, diamino or polyamino aromatic compound, which process comprises:
- (a) reacting at ambient pressure and a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr, an electrophilic aromatic compound: ##STR19## wherein Q.sup.1, Q.sup.2, Q.sup.3, X, Y, and Z are each independently selected from the group consisting of --CN, --NO.sub.2, --COR, --CO.sub.2 R.sub.1, --CONR.sub.2, --SO.sub.2 R, --SO.sub.3 H, --CF.sub.3, --F, --Cl, --Br, --I and --NH.sub.2, wherein R, R.sub.1, and R are independently selected from the group consisting of alkyl having one to six carbon atoms, with the proviso that at least one of Q.sup.1, Q.sup.2, Q.sup.3, X.sup.1, Y.sup.1, and Z.sup.1 is hydrogen,
- with an effective amount of reagent selected from:
- (i) 1,1,1,-trialkylhydrazinium salt wherein alkyl is selected from the group consisting of methyl, ethyl, propyl, butyl and benzyl and the anion is selected from the group consisting of chloride, bromide, iodide, fluoride, sulfate, hydroxide, mesylate, triflate, and tetrafluoroborate,
- (ii) hydroxylamine,
- (iii) O-alkyl hydroxyl amine where alkyl is C.sub.1 to C.sub.10 carbon atoms, or
- (iv) 4-amino-1,2,4-triazole; and combinations thereof, in the presence of tetraalkyl guanidine wherein alkyl is C.sub.1 to C.sub.10 ;
- or the presence of a strong base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide, and combinations thereof;
- in a solvent selected from the group consisting of methanol, ethanol, propanol, butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof, provided that when alcohols are present primarily DATB and picramide are formed; and
- (b) isolating the monoamino, diamino or polyamino aromatic compound produced.
- 2. A process to produce a mono amino, diamino or polyamino aromatic compound, which process comprises:
- (a) reacting at ambient pressure and a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr, an electrophilic aromatic compound of the structure: ##STR20## wherein the electron withdrawing group for each structure of groups R.sup.21 to R.sup.37, R.sup.41 to R.sup.44, R.sup.51 to R.sup.54, R.sup.61 to R.sup.65, R.sup.71 to R.sup.76 and R.sup.80 is independently selected from the group consisting of --CN, --NO.sub.2, --CO.sub.2 R.sub.1, --CONR.sub.2, --SO.sub.2 R, --SO.sub.3 H, --CF.sub.3, --F, --Cl, --Br, --I and --NH.sub.2, where R, R.sub.1 and R.sub.2 are alkyl groups having, from 1 to 6 carbon atoms, with the proviso that at least one of R.sup.21 to R.sup.37, R.sup.41 to R.sup.44, R.sup.51 to R.sup.54, R.sup.61 to R.sup.65, R.sup.71 to R.sup.76 and R.sup.80 for each structure is hydrogen, and with the further proviso that
- for benzene at least one of R.sup.21 to R.sup.26 is an electron withdrawing group, and at least one of R.sup.21 to R.sup.26 is hydrogen;
- for pyridine at least one of R.sup.31 to R.sup.35 is an electron withdrawing group, and at least one of R.sup.31 to R.sup.35 is hydrogen; and
- for naphthalene at least one of R.sup.21 to R.sup.28 is an electron withdrawing group, and at least one of R.sup.21 to R.sup.28 is hydrogen;
- for biphenyl, at least one of R.sup.21 to R.sup.30 is an electron withdrawing group, and at least one of R.sup.21 to R.sup.30 is hydrogen;
- for quinoline at least one of R.sup.31 to R.sup.37 is an electron withdrawing group, and at least one of R.sup.31 to R.sup.37 is hydrogen;
- for 1,4-quinoxaline at least one of R.sup.31 to R.sup.36 is an electron withdrawing group, and at least one of R.sup.31 to R.sup.36 is hydrogen;
- for the six-membered rings containing two nitrogen atoms, at least one of R.sup.41 to R.sup.44 is an electron withdrawing group, and at least one of R.sup.41 to R.sup.44 is hydrogen;
- for the six-membered rings containing three nitrogen atoms, at least one of R.sup.41 to R.sup.43 is an electron withdrawing group, and at least one of R.sup.41 to R.sup.43 is hydrogen; and
- for the five-membered heterocyclic rings containing one, two, or three nitrogens, at least one of R.sup.51 to R.sup.54 is an electron withdrawing group, and at least one of R.sup.51 to R.sup.54 is hydrogen,
- for indole at least one of R.sup.61 to R.sup.65 is an electron withdrawing group, and at least one of R.sup.61 to R.sup.65 is hydrogen;
- for fused pyridine having two six-membered rings, at least one of R.sup.71 to R.sup.76 is an electron withdrawing group, and at least one of R.sup.71 to R.sup.76 is hydrogen;
- wherein R.sup.80 is alkyl having 1 to 6 carbon atoms;
- with an effective amount of reagent selected from the group consisting of:
- (i) 1,1,1-tri-G- substituted-hydrazinium salt wherein G is selected from the group consisting of methyl, ethyl, propyl, butyl and benzyl and the anion is selected from the group consisting of chloride, bromide, iodide, fluoride, sulfate, hydroxide, mesylate, triflate, and tetrafluoroborate;
- (ii) hydroxylamine;
- (iii) O-alkyl hydroxyl amine where alkyl is C.sub.1 to C.sub.10 carbon atoms, or 4-amino-1,2,4-triazole; and combinations thereof;
- in the presence of tetraalkyl guanidine wherein alkyl is C.sub.1 to C.sub.10 or alternatively in the presence of a strong base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide, and combinations thereof;
- in a solvent selected from the group consisting of methanol, ethanol, propanol, butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof, provided that when alcohols are present primarily DATB and picramide are formed; and
- (b) isolating the monoamino, diamino or polyamino aromatic compound product of the structure: ##STR21## for benzene at least one of R.sup.21 to R.sup.26 is an electron withdrawing group, and at least one of R.sup.21 to R.sup.26 is an amino group;
- for pyridine at least one of R.sup.31 to R.sup.35 is an electron withdrawing group, and at least one of R.sup.31 to R.sup.35 is an amino group; and
- for naphthalene, at least one of R.sup.21 to R.sup.28 is an electron withdrawing group, and at least one of R.sup.21 to R.sup.28 is an amino group;
- for biphenyl, at least one of R.sup.21 to R.sup.30 is an electron withdrawing group, and at least one on one of R.sup.21 to R.sup.30 is an amino group;
- for quinoline, at least one of R.sup.31 to R.sup.37 is an electron withdrawing group, and at least one of R.sup.31 to R.sup.37 is an amino group;
- for 1,4- quinoxaline at least one of R.sup.31 to R.sup.36 is an electron withdrawing group, and at least one of R.sup.31 to R.sup.36 is an amino group;
- for the six-membered rings containing two nitrogen atoms at least one of R.sup.41 to R.sup.44 is an electron withdrawing group, and at least one of R.sup.41 to R.sup.44 is an amino group;
- for the six-membered rings containing three nitrogen atoms, at least one of R.sup.41 to R.sup.43 is an electron withdrawing group, and at least one R.sup.41 to R.sup.43 is an amino group; and
- for the five-membered heterocyclic rings containing one, two, or three nitrogens, at least one of R.sup.51 to R.sup.54 is an electron withdrawing group, and at least one of R.sup.51 to R.sup.54 is an amino group,
- for indole at least one of R.sup.61 to R.sup.65 is an electron withdrawing group, and at least one of R.sup.61 to R.sup.65 is an amino group;
- for fused pyridine have two six-membered rings, at least one of R.sup.71 to R.sup.76 is an electron withdrawing group, and at least one of R.sup.11 to R.sup.76 is an amino group;
- wherein R.sup.80 is alkyl having 1 to 6 carbon atoms;
- wherein the electron withdrawing group is selected from --CN, --NO.sub.2, --COR, --CO.sub.2 R.sub.1, --CONR.sub.2, --SO.sub.2 R, --SO.sub.3 H, --CF.sub.3, --F, --Cl, --Br, --I and --NH.sub.2, where R.sub.1 and R.sub.2 are alkyl having from 1 to 6 carbon atoms.
- 3. A process to produce 1,3-diamino-2,4,6-trinitrobenzene (DATB) or 1,3,5-triamino-2,4,6,-trinitrobenzene (TATB), which process comprises:
- (a) reacting at ambient pressure and a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr, a trinitroaromatic starting material compound V: ##STR22## wherein X, Y, and Z are each independently selected from the group consisting of --H, and --NH.sub.2, with the proviso that at least 1 of X, Y, and Z is hydrogen,
- with an amount effective to produce DATB or TATB of 1,1,1,-trialkylhydrazinium salt wherein alkyl is selected from the group consisting of methyl, ethyl, propyl and butyl and the anion is selected from the group consisting of chloride, bromide, fluoride, iodide, sulfate, hydroxide, mesylate, triflate, tetrafluoroborate and combinations thereof,
- in the presence of a strong base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide and combinations thereof;
- in a solvent selected from the group consisting of methanol, ethanol, propanol, butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof, provided that when alcohols are present primarily DATB and picramide are formed; and
- (b) isolating the DATB or TATB produced.
- 4. The process of claim 1 wherein the reaction temperature is between about 10 and 30.degree. C.
- 5. The process of claim 4 wherein DATB is produced and the 1,1,1-trialkylhydrazinium salt is present in between about 1.9 and 2.3 molar equivalents per mole of starting material compound V.
- 6. A process of claim 1 to produce 1,3-diamino-2,4,6-trinitrobenzene (DATB) or 1,3,5-triamino-2,4,6,-trinitrobenzene (TATB), which process comprises:
- (a) obtaining an aromatic compound as a starting material selected from: ##STR23## mixtures thereof from commercial sources or by: (i) reacting ##STR24## at a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr with an amount effective of 1,1,1-trialkylhydrazinium salt wherein alkyl is selected from the group consisting of methyl, ethyl, propyl and butyl and the salt is selected from the group consisting of chloride, bromide and iodide,
- in the presence of a base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide and combinations thereof;
- in a solvent selected from the group consisting of dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide, and mixtures thereof,
- and isolating the product consisting of III, IV or combinations thereof;
- (ii) or nitrating aniline using a mixture of nitric acid and sulfuric acid to produce consisting of III, IV or combinations thereof; or
- (iii) nitrating acetanilide using a mixture of nitric acid and sulfuric acid to produce 4-nitroacetanilide and nitrating further using a mixture of nitric acid and sulfuric acid to produce VI;
- (b) reacting 2-nitroaniline, 4-nitroaniline or combinations thereof with a nitric acid and sulfuric acid mixture under conditions to produce 2,4,6-trinitroaniline (VI);
- (c) reacting at ambient pressure and a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr a trinitro aromatic compound selected from: ##STR25## wherein X, Y, and Z are each independently selected from the group consisting of --H and --NH.sub.2, with the proviso that at least 1 of X, Y, and Z is hydrogen,
- with an effective amount of 1,1,1-trialkylhydrazinium salt wherein alkyl is selected from methyl, ethyl, propyl and butyl and the anion is selected from the group consisting of chloride, bromide, fluoride, iodide, sulfate, hydroxide, mesylate, triflate, tetrafluoroborate,
- in the presence of a base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide, and mixtures thereof;
- in a solvent selected from the group consisting of methanol, ethanol, propanol, butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide, and mixtures thereof; and
- (d) isolating the DATB or TATB produced.
- 7. A process of claim 1 to produce mono or polyamino-, mono or polynitrobenzene, which process comprises:
- (a) obtaining an aromatic compound as a starting material selected from the following structures: ##STR26## wherein R.sup.2, R.sup.3, and R.sup.4 are each independently selected from the group consisting of --H, --CH.sub.3, F, --Cl, --Br, --I, CN, COOH, COOR and OCH.sub.3,
- and R.sup.5 -R.sup.9 are each independently selected from the group consisting of --H, --CH.sub.3, F, --Cl, --Br, --I, --CN, --OCH.sub.3 and mixtures thereof, with the proviso that at least one of R.sup.5 -R.sup.9 is H;
- (b) reacting at ambient pressure and a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr a nitroaromatic compound;
- with an effective amount of 1,1-di J-substituted-1,2-di-r-hydrazinium salt wherein dialkyl is selected from methyl, ethyl, propyl, butyl, hexyl, cyclohexyl, dodecyl, pyridyl, --CH.sub.2 (CH.sub.2).sub.n CH.sub.2 --, and --(CH.sub.2 CH.sub.2)O(CH.sub.2 CH.sub.2)--, where n is between 1 to 10, R is selected from the group consisting of H, C.sub.1 -C.sub.20 alkyl and aryl, and the anion is selected from the group consisting of chloride, bromide, fluoride, iodide, sulfate, hydroxide, mesylate, triflate, and tetrafluoroborate,
- in the presence of a base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide and mixtures thereof;
- in a solvent selected from the group consisting of methanol, ethanol, propanol, butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformnamide, dimethylacetamide and mixtures thereof; and
- (C) isolating the monoamino, diamino or triaminosubstituted nitroaromatic compound produced.
- 8. The process of claim 1 to produce 1,3-diamino-2,4,6-trinitrobenzene (DATB) or 1,3,5-triamino-2,4,6,-trinitrobenzene (TATB), which process comprises:
- (a) reacting at ambient pressure and a temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr, a trinitroaromatic starting material compound of the structure: ##STR27## wherein X, Y, and Z are each independently selected from the group consisting of --H and --NH.sub.2, with the proviso that at least 1 of X, Y, and Z is hydrogen;
- with an effective amount of 4-amino-1,2,4-triazole, hydroxylamine or O-alkyl hydroxylamine wherein alkyl has 1 to 10 carbon atoms, provided that hydroxylamine and O-alkyl hydroxylamine, when used, produce primarily DATB;
- in the presence of a strong base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide and combinations thereof;
- in a solvent selected from the group consisting of methanol, ethanol, n-propanol, iso-propanol, n-butanol, iso-butanol, sec-butanol, tert-butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof, provided that when alcohols are present primarily DATB is formed; and
- (b) isolating the DATB or TATB produced.
- 9. The process of claim 1 wherein
- the trinitroaromatic starting material compound is selected from 1,3,5-trinitrobenzene, 2,4,6-trinitroaniline, or 1,3-diamino-2,4,6-trinitrobenzene;
- the strong base is selected from sodium methoxide and the solvent is selected from dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide or mixtures thereof.
- 10. The process of claim 1 to produce 1,3-diamino-2,4,6-trinitrobenzene (DATB) or 1,3,5-triamino-2,4,6,-trinitrobenzene (TATB), which process comprises:
- (a) obtaining an aromatic starting material compound of the structure: ##STR28## mixtures thereof from commercial sources or by: (i) reacting ##STR29## with an amount of 4-amino-1,2,4-triazole, hydroxylamine, effective to produce compound III or IV, or mixtures thereof;
- in the presence of a base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide, and combinations thereof;
- in a solvent selected from the group consisting of dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof, or isolating the product which is III;
- (ii) or nitrating aniline using a mixture of nitric acid and sulfuric acid to produce compound III, compound IV or combinations thereof; or
- (iii) nitrating acetanilide using a mixture of nitric acid and sulfuric acid to produce 4-nitroacetanilide and nitrating further using a mixture of nitric acid and sulfuric acid to produce compound VI;
- (b) reacting 2-nitroaniline, 4-nitroaniline or combinations thereof with a nitric acid, and sulfuric acid mixture under conditions to produce 2,4,6-trinitroaniline;
- (A) reacting at temperature of between about 0 and 50.degree. C. for between about 0.1 and 24 hr a trinitroaromatic starting material compound: ##STR30## wherein X, Y, and Z are each independently selected from the group consisting of --H and --NH.sub.2, with the proviso that at least one of X, Y, and Z is hydrogen;
- with an effective amount of 4-amino-1,2,4-triazole, hydroxylamine, or O-alkylhydroxylamine where alkyl has 1 to 10 carbon atoms;
- in the presence of a base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide and mixtures thereof;
- in a solvent selected from the group consisting of methanol, ethanol, propanol, butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof provided that when an alcohol is present or when hydroxylamine or its O-alkyl hydroxylamine replaces 4-amino-1,2,4-triazole, primarily DATB is produced; and
- (B) isolating the DATB or TATB produced.
- 11. A process to produce 1,3,5-triamino-2,4,6,-trinitrobenzene (TATB), which process comprises:
- (a) reacting at ambient pressure and a temperature of between about 70 and 100.degree. C. for between about 0.1 and 24 hr, a trinitroaromatic starting material compound of the structure: ##STR31## wherein X, Y, and Z are each independently selected from the group consisting of --H and --NH.sub.2, with the proviso that at least 1 of X, Y, and Z is hydrogen;
- with an effective amount of a VNS reagent selected from the group consisting of alkyl hydrazinium halide wherein alkyl has 1 to 6 carbon atoms, 4-amino-1,2,4-triazole, hydroxylamine or O-alkyl hydroxylamine wherein alkyl has 1 to 10 carbon atoms;
- in the presence of a strong base selected from the group consisting of sodium butoxide, potassium butoxide, potassium propoxide, sodium propoxide, sodium ethoxide, potassium ethoxide, sodium methoxide, potassium methoxide and combinations thereof;
- in a solvent selected from the group consisting of methanol, ethanol, n-propanol, iso-propanol, n-butanol, iso-butanol, sec-butanol, tert-butanol, dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof, provided that when alcohols are present primarily DATB is formed; and
- (b) isolating the TATB produced.
- 12. The process of claim 11 wherein the reaction temperature is between about 80 and 100.degree. C.; and hydroxylamine is used.
- 13. The process of claim 11 wherein TATB is produced and the hydroxylamine is present in step (a) in between about 3.9 and 5.5 molar equivalents per mole of the trinitroaromatic starting material compound.
- 14. The process of claim 11 wherein the trinitroaromatic starting material compound is selected from the group consisting of 1,3,5-trinitrobenzene, 2,4,6-trinitroaniline and 1,3-diamino-2,4,6-trinitrobenzene.
- 15. The process of claim 11 wherein the 4-amino-1,2,4-triazole is present in between about 3.9 and 5.5 mole eq.
- 16. The process of claim 11 wherein the strong base is selected from the group consisting of sodium ethoxide and potassium tert-butoxide.
- 17. The process of claim 11 wherein
- the starting material compound is selected from 1,3,5-trinitrobenzene and, 2,4,6-trinitroaniline;
- the strong base is selected from the group consisting of sodium ethoxide and potassium tert-butoxide; and
- the solvent is DMSO, and hydroxylamine is used.
- 18. A process for the production of quaternary alkyl hydrazine in situ for subsequent reaction as an aminating agent, which process comprises:
- (a) reacting an alkyl substituted unsymmetrical hydrazine with an alkylating agent selected from the group consisting of alkyl halide and dimethyl sulfate at between about 10 and 50.degree. C. for between about 0.1 and 4 hours in a solvent to produce the quaternary alkyl hydrazine.
- 19. The process of claim 18 wherein
- in the alkyl halide, alkyl is selected from the group consisting of alkyl having 1 to 6 carbon atoms and halide is selected from the group consisting of Cl, Br and I,
- in the dialkyl sulfate the alkyl is from C1 to C6,
- the temperature is between about 20 and 50.degree. C.,
- the time is between about 0.5 and 2.0 hours; and
- the dipolaraprotic solvent is selected from the group consisting of dimethylsulphoxide, N-methylpyrrolidone, hexamethylphosphoramide, dimethylformamide, dimethylacetamide and mixtures thereof.
- 20. The process of claim 3 wherein said process is conducted using a quaternary hydrazine generated in situ in step (a) at between about 70 and 100.degree. C. for between about 0.5 and 24 hours; and
- said process in step (a) further includes tetralkyl guanidine wherein alkyl is selected from the group consisting of alkyl having 1 to 6 carbon atoms.
RELATED APPLICATIONS
This application is a continuation-in-part and claims priority on International Application PCT/US96/06663, filed May 10, 1996, which is a continuation-in-part of U.S. Ser. No. 08/440,017, filed May 12, 1995, now U.S. Pat. No. 5,569,783, and a continuation-in-part of U.S. Ser. No. 08/440,024, filed May 12, 1995, now U.S. Pat. No. 5,633,406, all of which are incorporated herein by reference in their entirety.
ORIGIN OF THE INVENTION
The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the U.S. Department of Energy and the University of California, for the operation of Lawrence Livermore National Laboratory, Livermore, Calif.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4032377 |
Benziger et al. |
Jun 1977 |
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Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
PCTUS9606663 |
May 1996 |
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Parent |
440017 |
May 1995 |
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