Claims
- 1. Bisanil dye of the formula
- Ar.sub.1 -CH=N-C(CN)=C(CN)-N=CH-Ar.sub.2
- wherein each of Ar.sub.1 and Ar.sub.2 is independently selected from
- 1. benzo(5- and 6-membered)heterocyclic groups containing 0-4 methyl substituents and
- 2. phenyl, naphthyl, 5-membered heterocyclic and 6-membered heterocyclic groups containing 0-3 substituents selected from NO.sub.2, halogen, CN, C.sub.1-4 alkyl, C.sub.1-4 alkoxy, OCH.sub.2 -phenyl, phenyl, CF.sub.3, OH, OC.sub.1-4 alkylene-N(C.sub.1-4 alkyl).sub.2, C.sub.2-4 alkylene-Cl, NHCONH.sub.2, NHCOA, NHSO.sub.2 A, SR.sub.8, SO.sub.2 R.sub.8, NHR.sub.1, NHCOC.sub.1-4 alkylene-B and -NR.sub.1 R.sub.2 wherein:
- a. R.sub.1 is C.sub.1-4 alkyl or C.sub.2-4 alkylene-R.sub.3 ;
- b. R.sub.2 is C.sub.1-4 alkyl, C.sub.2-4 alkylene-R.sub.4 or, if Ar.sub.1 or Ar.sub.2 is phenyl, C.sub.3 alkylene attached to a phenyl position which is ortho to the position to which the nitrogen is attached;
- c. R.sub.3 is CN, halogen, OH, phenyl, C.sub.1-4 alkoxy, OC.sub.1-4 alkylene-CN, CO.sub.2 A, OCOA, OCONHA or CO.sub.2 C.sub.1-4 alkylene-OCOA;
- d. R.sub.4 is CN, halogen, OH, phenyl, OC.sub.1-4 alkylene-CN, CO.sub.2 A, OCOA, CO.sub.2 C.sub.1-4 alkylene-OCOA, SO.sub.2 A, phthalimido, succinimido, glutarimido, OCOCH=CH.sub.2, CH.sub.2 -CH(OCOA)CH.sub.2 OA or CH.sub.2 CH(OCONHA)CH.sub.2 OA;
- e. A is C.sub.1-4 alkyl or R.sub.5 ;
- f. B is halogen, C.sub.1-4 alkoxy or R.sub.5 ;
- g. R.sub.5 is phenyl containing 0-2 substituents selected from C.sub.1-4 alkyl, C.sub.1-4 alkoxy, halogen, NO.sub.2, CN, C.sub.1-4 alkyl-CONH and NR.sub.6 R.sub.7 wherein each of R.sub.6 and R.sub.7 is independently selected from H and C.sub.1-4 alkyl, with at least one of R.sub.6 and R.sub.7 being C.sub.1-4 alkyl; and
- h. R.sub.8 is C.sub.1-4 alkyl, C.sub.2 H.sub.4 OH, C.sub.5-6 cycloalkyl or R.sub.5 ; with at least one of Ar.sub.1 and Ar.sub.2 being a heterocyclic group selected from (1) and (2).
- 2. Dye of claim 1 wherein Ar.sub.1 and Ar.sub.2 are the same.
- 3. Dye of claim 1 wherein Ar.sub.1 and Ar.sub.2 are different.
- 4. Dye of claim 1 wherein the cyano groups are in the cis configuration about the carbon-carbon double bond.
- 5. Dye of claim 1 wherein the cyano groups are in the trans configuration about the carbon-carbon double bond.
- 6. Dye of claim 2 wherein each of Ar.sub.1 and Ar.sub.2 is 3-indolyl.
- 7. Dye of claim 3 wherein Ar.sub.1 is 5-bromo-2-thienyl and Ar.sub.2 is o-methyl-p-N,N-diethylaminophenyl.
- 8. Dye of claim 3 wherein Ar.sub.1 is 5-bromo-2-thienyl and Ar.sub.2 is p-N,N-diethylaminophenyl.
- 9. Dye of claim 3 wherein Ar.sub.1 is 5-bromo-2-thienyl and Ar.sub.2 is ##STR19##
- 10. Process of preparing the bisanil dye of claim 1, which process comprises the steps:
- 1. condensing diaminomaleonitrile and the aromatic aldehyde Ar.sub.1 CHO to produce the monoanil Ar.sub.1 -CH=N-C(CN)=C(CN)-NH.sub.2 ;
- 2. reducing the monoanil from step (1) to produce Ar.sub.1 CH.sub.2 NH-C(CN)=C(CN)-NH.sub.2 ;
- 3. condensing the product from step (2) and the aromatic aldehyde Ar.sub.2 CHO, which aldehyde is the same as or different from the aldehyde of step (1), to produce the monoanil Ar.sub.1 CH.sub.2 NH-C(CN)=C(CN)-N=CH-Ar.sub.2 ; and
- 4. oxidizing the monoanil from step (3) to produce the bisanil Ar.sub.1 -CH=N-C(CN)=C(CN)-N=CH-Ar.sub.2, Ar.sub.1 and Ar.sub.2 being as defined in claim 1.
- 11. Process of claim 10 wherein Ar.sub.1 and Ar.sub.2 are the same.
- 12. Process of claim 10 wherein Ar.sub.1 and Ar.sub.2 are different.
- 13. Process of claim 10 wherein the oxidizing agent employed in step (4) is lead dioxide.
- 14. Process of claim 10 wherein the reducing agent employed in step (2) is sodium borohydride.
- 15. Process of claim 10 wherein step (1) is carried out in the presence of an organic solvent other than a ketone or aldehyde which can react with diaminomaleonitrile, at a temperature of 20.degree. -80.degree. C., for 4-17 hours; step (2) is carried out in the presence of an organic solvent, at a temperature not in excess of 35.degree. C., with at least 0.50 mole of reducing agent per mole of monoanil; and steps (3) and (4) are carried out in the presence of an organic solvent, at ambient temperature.
- 16. Process of claim 15 wherein an acid catalyst is employed in steps (1) and (3) and the temperature in step (2) is 10.degree. -35.degree. C.
- 17. Process of claim 16 wherein in steps (1) and (3) the solvent is selected from tetrahydrofuran, ethyl Cellosolve, dimethylformamide, methanol, ethanol and mixtures thereof, the acid catalyst is selected from sulfuric acid, hydrochloric acid, p-toluenesulfonic acid and trifluoroacetic acid and the temperature is 25.degree. -30.degree. C.; in step (2) the solvent is selected from tetrahydrofuran, methanol, ethanol and ethyl Cellosolve and the temperature is less than 25.degree. C; and in step (4) the solvent is selected from tetrahydrofuran, acetonitrile, benzene, ethyl Cellosolve, acetone, dimethylformamide, dimethylacetamide, dimethylsulfoxide, hexamethylphosphoramide, and N-methylpyrrolidone and the temperature is 25.degree.-30.degree. C.
- 18. Process of claim 17 wherein the solvent employed in step (2) is methanol or ethanol.
- 19. Process of preparing the bisanil dye of claim 1, which process comprises the steps:
- 1. condensing diaminomaleonitrile and a molar equivalent of the aromatic aldehyde Ar.sub.1 CHO, in the presence of an organic solvent selected from the group consisting of dimethylformamide, dimethylacetamide, hexamethylphosphoramide, dimethylsulfoxide and N-methylpyrrolidone, under acidic conditions, at a temperature in the range 140.degree. C. to the boiling point of the solvent, to produce the monoanil ar.sub.1 -CH=C(CN)=C(CN)-NH.sub.2 ; and
- 2. condensing the monoanil from step (1) and a molar equivalent of the aromatic aldehyde Ar.sub.2 CHO, which aldehyde is the same as or different from the aldehyde of step (1), in the presence of an organic solvent selected from the group consisting of dimethylformamide, dimethylacetamide, hexamethylphosphoramide, dimethylsulfoxide, and N-methylpyrrolidone, under acidic conditions, at a temperature in the range 140.degree. C. to the boiling point of the solvent, to produce the bisanil Ar.sub.1 -CH=N-C(CN)=C(CN)-N=CH-Ar.sub.2, Ar.sub.1 and Ar.sub.2 being as defined in claim 1.
- 20. Process of claim 19 wherein the acidic conditions are provided by sulfuric acid, hydrochloric acid, p-toluenesulfonic acid or trifluoroacetic acid.
- 21. Process of claim 20 wherein the acid is sulfuric acid, the temperature is 140.degree.-150.degree. C., the solvent is dimethylformamide and the reaction time is 10-30 minutes.
CROSS REFERENCE TO RELATED APPLICATION
This is a division of application Ser. No. 430,416, filed Jan. 3, 1974, now U.S. Pat. No. 3,927,065.
US Referenced Citations (4)
Divisions (1)
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Number |
Date |
Country |
Parent |
430416 |
Jan 1974 |
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