Claims
- 1. A method of preparing a styryl-like compound characterized in that
- an indoline derivative of formula (3): ##STR26## is reacted with one substance selected from the group consisting of aromatic aldehydes, heterocyclic aldehydes, aromatic nitroso compounds and heterocyclic nitroso compounds, to form a styryl-like compound represented by the following chemical formula (1): ##STR27## wherein Q is unsubstituted benzene, substituted benzene, or condensed ring; each of R.sub.1 and R.sub.2 is lower alkyl, hydroxyalkyl or alkoxyalkyl; R.sub.3 is hydrogen, alkyl, alkoxy, halogen, nitrile, aromatic or phenoxy; Y represents oxygen or sulfur; Z is alkylene of 2 to 4 carbon atoms unsubstituted or substituted by an alkyl which will form a ring structure together with --N--C--Y; A represents a condensation reaction residue of a member selected from the group consisting of aromatic aldehyde which is free of hydroxyl radicals ortho to the aldehyde function, heterocyclic aldehyde, aromatic nitroso compound which is free of hydroxyl radicals ortho to the aldehyde function, and heterocyclic nitroso compound.
- 2. A method of preparing a styryl-like compound comprising steps of
- forming an indolino quaternary salt derivative represented by the following formula (5) ##STR28## by heat-reaction between an indolenine derivative represented by the following formula (4) ##STR29## and a quaternary salt agent of one substance selected from the group consisting of halogeno alkyl alcohol with or without substituted radicals and halogeno alkyl mercaptan with or without substituted radicals, which agent is represented by XZYH which is ethylene bromohydrin, ethylene chlorohydrin, trimethylene chlorohydrin, trimethylene bromohydrin, tetramethylene chlorohydrin, tetramethylene bromohydrin, 1-chloro-2-propanol, 2-chloro-1-propanol, 2-chloroethyl mercaptan or 3-chloropropyl mercaptan,
- forming an indoline derivative having the following formula (3) ##STR30## by treating said indolino quaternary salts derivative of formula (5) with alkali, and
- forming a styryl-like compound represented by the following formula (1) ##STR31## by reacting said indoline derivative of formula (3) with one substance selected from the group consisting of aromatic aldehyde, heterocyclic aldehyde, aromatic nitroso compounds and heterocyclic nitroso compounds, in the presence of alkali or in the absence of alkali,
- wherein Q represents benzene ring with or without substituted radicals and/or condensed ring(s); R.sub.1 and R.sub.2 represent lower alkyl radicals hydroxyalkyl radicals or alkoxyalkyl radicals of the same or different kinds; R.sub.3 represents hydrogen, alkyl radical, alkoxy radical, halogen, nitrile radical, aromatic radical or phenoxy radical; Y represents oxygen (O) or sulfur (S); Z represents alkylene radical of carbon number of 2 to 4 with or without alkyl substitution radical(s) necessary to form a ring structure together with ##STR32## A represents a condensation reaction reside of one selected from the group consisting of aromatic aldehyde, except aromatic aldehydes having OH-radical in ortho-position with regard to CHO-radical in the benzene ring, heterocyclic aldehyde, aromatic nitroso compound; and heterocyclic nitroso compound; X represents an anion.
- 3. A method of preparing a styryl-like compound wherein a styryl die having formula (2) ##STR33## is reacted with an alkali to form a styryl-like compound represented by formula (1): ##STR34## wherein Q is unsubstituted benzene, substituted benzene or a condensed ring; each of R.sub.1 and R.sub.2 is lower alkyl, hydroxyalkyl or alkoxyalkyl; R.sub.3 represents hydrogen, alkyl, alkoxy, halogen, nitrilo, aromatic or phenoxy; Y is oxygen (O) or sulfur (S); Z is alkylene 2 to 4 carbon atoms, unsubstituted or substituted by an alkyl radical which will form a ring structure together with --N--C--Y; A represents a condensation reaction residue of a member selected from the group consisting of aromatic aldehyde, heterocyclic aldehyde, aromatic nitroso compound and heterocyclic nitrosos compound, and X is an anion.
- 4. A method of claim 3, wherein the aromatic aldehyde is selected from the group consisting of benzaldehyde, p-acetaminobenzaldehyde, p-bromobenzaldehyde, m-bromobenzaldehyde, o-bromobenzaldehyde, p-dimethylaminobenzaldehyde, p-diethylaminobenzaldehyde, p-dibutylamino-benzaldehyde, o-chlorobenzaldehyde, p-chlorobenzaldehyde, p-anisaldehyde, o-anisaldehyde, p-tolu-aldehyde, m-tolu-aldehyde, o-tolu-aldehyde, o-ethoxybenzaldehyde, p-ethoxybenzaldehyde, p-fluorobenzaldehyde, o-fluorobenzaldehyde, p-nitro-benzaldehyde, m-nitrobenzaldehyde, o-nitrobenzaldehyde, p-cyanobenzaldehyde, o-cyanobenzaldehyde, 2,4-dichlorobenzaldehyde, 2,6-dichlorobenzaldehyde, 3,4-dichlorobenzaldehyde, 3,5-dichlorobenzaldehyde, 2,4-dimethoxybenzaldehyde, 2,5-dimethoxybenzaldehyde, 3,4-dimethoxybenzaldehyde, 3,5-dimethoxybenzaldehyde, 2,4-dimethylbenzaldehyde, 2,5-dimethylbenzaldehyde, 3,4-dimethylbenzaldehyde, 3,5-dimethylbenzaldehyde, veratraldehyde(3,4-dimethoxybenzaldehyde), 4-isopropylbenzaldehyde, o-(2-chloroethyl)benzaldehyde, 2,4,6-trimethylbenzaldehyde, 2,4,6-triethoxybenzaldehyde, 3,4-dimethyl-p-anisaldehyde, 2,5-dimethyl-p-anisaldehyde, 2-chloro-5-nitrobenzaldehyde, 2-chloro-6-nitrobenzaldehyde, 2-chloro-3-nitro-benzaldehyde, 5-chloro-2-nitrobenzaldehyde, vanillin, isovanillin, 5-bromovanillin, 2-chloro-4-dimethylaminobenzaldehyde, 2-chloro-6-fluorobenzaldehyde, 5-bromo-veratraldehyde, 6-bromo-veratraldehyde, 5-bromo-2-methoxy-benzoaldehyde, 1-naphto-aldehyde, 2-naphtoaldehyde, p-dimethylamino-cinnamaldehyde, p-diethylamino-cinnamaldehyde, p-nitro-cinnamaldehyde, o-nitro-cinnamaldehyde, .alpha.-chloro-cinnamaldehyde, 9-anthraldehyde, 10-chloro-9-anthraldehyde, 9-phenanthrene-carboxaldehyde and fluorencarboxaldehyde.
- 5. A method of claim 3, wherein the aromatic nitroso compound is selected from the group consisting of p-dimethylaminonitrosobenzene, p-diethylaminonitrosobenzene, p-methylnitrosobenzene(p-nitrosotoluen), p-nitro-nitrosobenzene, o-nitronitrosobenzene and 3-nitroso-2-nitrotoluene.
- 6. A method of claim 3, wherein the heterocyclic aldehyde is selected from the group consisting of furfural, 5-methylfurfural, 5-bromo-furfural, 4-isopropylfurfural, 2-thiophene-carboxaldehyde, 5-methyl-thiophene-carboxaldehyde, 3-methoxybenzothiophene-2-carboxaldehyde, 2-pyridinecarboxaldehyde, 3-pyridinecarboxaldehyde, 4-pyridinecarboxaldehyde, 1-ethylindole-3-carboxaldehyde, 1-methylindole-3-carboxaldehyde, 1-methyl-2-phenylindole-3-carboxaldehyde, N-methyl-carbazole-2-carboxaldehyde, N-ethyl-7-bromo-carbazole-2-carboxaldehyde, N-(n-octyl)-7-nitrocarbazole-2-carboxaldehyde, benzofuran-2-carboxaldehyde, dibenzofuran-2-carboxaldehyde, pyrrole-2-aldehyde, N-methylpyrrole-2-aldehyde, N-phenylpyrrole-2-aldehyde, 3-methylpyrrole-2-aldehyde, 2-ethyl-pyrrole-5-aldehyde, benzothiazole-2-aldehyde, 6-methylbenzothiazole-2-aldehyde, 6-chlorobenzothiazole-2-aldehyde, 5-chlorobenzothiazole-2-aldehyde, 6-methoxybenzothiazole-2-aldehyde, 5,6-dichlorobenzothiazole-2-aldehyde, benzoselenazole-2-aldehyde, 6-methoxybenzoselenazole-2-aldehyde, 2,4-dimethylpyrrole-2-aldehyde, 4,6-dichloro-pyrimidine-5-carboxaldehyde, 2-formyl-4,6-dimethylpyrimidine, quinoline-2-aldehyde, acridine-10-aldehyde, 2,4-diphenyl-5,6,7-hexahydrobenzopyran-8-carboxaldehyde and 2,4-diphenyl-6-methyl-5,6,7-pentahydrobenzopyran-8-carboxaldehyde.
- 7. A method of claim 3, wherein the heterocyclic nitroso compound is selected from the group consisting of 3-nitrosoindole, 2-methyl-3-nitrosoindole and 3-nitroso-2-phenylindole.
Priority Claims (1)
Number |
Date |
Country |
Kind |
49/108090 |
Sep 1974 |
JP |
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BACKGROUND OF THE INVENTION
This application is a continuation-in-part of application Ser. No. 611,834 filed Sept. 9, 1975, now abandoned.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3975379 |
Schmitt |
Aug 1976 |
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Non-Patent Literature Citations (1)
Entry |
Abramenko, P. I., "Polymethine Dyes . . ." in Chem. Abs. vol. 78, p. 80, 1973, 85893b. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
611834 |
Sep 1975 |
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