Claims
- 1. A process for the preparation of a polysubstituted-triphenylamine derivative represented by the following general formula (4): wherein R7, R8, and R9 may be the same or different and each represent a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom; and Y represents a formyl group, a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom, which comprises reacting a triphenylamine derivative represented by the following general formula (3): wherein R7, R8, and R9 are as defined above with a Vilsmeier reagent prepared from a halogenating reagent and an N-substituted formamide in the presence of a catalyst which is an acid selected from the group consisting of a Lewis acid and/or a protonic acid to form a reaction product, and then subjecting the reaction product to hydrolysis with an alkaline aqueous solution, wherein the catalyst is added separately from the triphenylamine derivative of general formula (3) and the Vilsmeier reagent.
- 2. The process for the preparation of a poly-formyl-substituted triphenylamine derivative represented by the general formula (4) according to claim 1, wherein said Vilsmeier reagent is prepared from at least one halogenating reagent selected from the group consisting of phosphorus oxychloride, phosgene and thionyl chloride and at least one N-substituted formamide selected from the group consisting of N,N-dimethylformamide and N-methylformamide.
- 3. The process for the preparation of a poly-formyl-substituted triphenylamine derivative represented by the general formula (4) according to claim 1, wherein the reaction of the triphenylamine derivative represented by the general formula (3) with said Vilsmeier reagent is conducted in at least one reaction solvent selected from the group consisting of toluene, xylene, chlorobenzene and dichlorobenzene.
- 4. The process for the preparation of a polyformyl-substituted triphenylamine derivative represented by the general formula (4) according to claim 2, wherein the reaction of the triphenylamine derivative represented by the general formula (3) with said Vilsmeier reagent is conducted in at least one reaction solvent selected from the group consisting of toluene, xylene, chlorobenzene and dichlorobenzene.
- 5. The process of claim 1, wherein R7, R8, R9 and Y are H.
- 6. A process for the preparation of a polysubstituted-triphenylamine derivative represented by the following general formula (4): wherein R7, R8, and R9 may be the same or different and each represent a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom; and Y represents a formyl group, a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom, which comprises reacting a triphenylamine derivative represented by the following general formula (3): wherein R7, R8, and R9 are as defined above with a Vilsmeier reagent prepared from a halogenating reagent and an N-substituted formamide in the presence of an acid selected from the group consisting of a Lewis acid and/or a protonic acid to form a reaction product, and then subjecting the reaction product to hydrolysis with an alkaline aqueous solution, wherein the reaction of the triphenylamine derivative represented by the general formula (3) with said Vilsmeier reagent is conducted in the presence of at least one member selected from the group consisting of a Lewis acid selected from the group consisting of zinc chloride, zinc bromide, boron trifluoride, aluminum chloride, titanium tetrachloride and tin chloride and/or a protonic acid selected from the group consisting of hydrogen chloride and hydrogen bromide.
- 7. A process for the preparation of a polysubstituted-triphenylamine derivative represented by the following general formula (4): wherein R7, R8, and R9 may be the same or different and each represent a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom; and Y represents a formyl group, a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom, which comprises reacting a triphenylamine derivative represented by the following general formula (3): wherein R7, R8, and R9 are as defined above with a Vilsmeier reagent prepared from a halogenating reagent and an N-substituted formamide in the presence of an acid selected from the group consisting of a Lewis acid and/or a protonic acid to form a reaction product, and then subjecting the reaction product to hydrolysis with an alkaline aqueous solution wherein the reaction of the triphenylamine derivative represented by the general formula (3) with said Vilsmeier reagent is conducted in the presence of at least one member selected from the group consisting of a Lewis acid selected from the group consisting of zinc chloride, zinc bromide, boron trifluoride, aluminum chloride, titanium tetrachloride and tin chloride and/or a protonic acid selected from the group consisting of hydrogen chloride and hydrogen bromide and further wherein said Vilsmeier reagent is prepared from at least one halogenating reagent selected from the group consisting of phosphorus oxychloride, phosgene and thionyl chloride and at least one N-substituted formamide selected from the group consisting of N,N-dimethylformamide and N-methylformamide.
- 8. A process for the preparation of a polysubstituted-triphenylamine derivative represented by the following general formula (4): wherein R7, R8, and R9 may be the same or different and each represent a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent groups or a halogen atom; and Y represents a formyl group, a hydrogen atom, a lower alkyl group, an alkoxy group, a phenoxy group, an aryl group, which aryl group may have a substituent group, or a halogen atom, which comprises reacting a triphenylamine derivative represented by the following general formula (3): wherein R7, R8, and R9 are as defined above with a Vilsmeier reagent prepared from a halogenating reagent and an N-substituted formamide in the presence of an acid selected from the group consisting of a Lewis acid and/or a protonic acid to form a reaction product, and then subjecting the reaction product to hydrolysis with an alkaline aqueous solution wherein the reaction of the triphenylamine derivative represented by the general formula (3) with said Vilsmeier reagent is conducted in the presence of at least one member selected from the group consisting of a Lewis acid selected from the group consisting of zinc chloride, zinc bromide, boron trifluoride, aluminum chloride, titanium tetrachloride and tin chloride and/or a protonic acid selected from the group consisting of hydrogen chloride and hydrogen bromide, and wherein the reaction of the triphenylamine derivative represented by the general formula (3) with said Vilsmeier reagent is conducted in at least one reaction solvent selected from the group consisting of toluene, xylene, chlorobenzene and dichlorobenzene.
Priority Claims (1)
Number |
Date |
Country |
Kind |
7-065270 |
Mar 1995 |
JP |
|
Parent Case Info
This is a divisional of application Ser. No. 08/894,878 filed Sep. 2, 1997, now U.S. Pat. No. 5,910,610, the disclosure of which is incorporated herein by reference.
US Referenced Citations (6)
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0-650956 A1 |
Mar 1995 |
EP |
2-226159 |
Sep 1990 |
JP |
6-332206 |
Dec 1994 |
JP |
Non-Patent Literature Citations (2)
Entry |
CA:116:193331 of HU 56534, Nov. 1989. |
March “Advanced Organic Chemistry ” textbook , published by McGraw Hill pp. 417-418, 1968.* |