Claims
- 1. A process for producing tetrakis(fluoroaryl) borate expressed by Formula (5): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, M represents a hydrogen atom, an alkali metal, an alkaline earth metal, or an alkaline earth metal halide, n represents 2 or 3, and m represents 1 when M represents a hydrogen atom, an alkali metal, or an alkaline earth metal halide, and 2 when M represents an alkaline earth metal,comprising removing an ether compound expressed by Formula (6): R11—O—Y—O—R12 (6) where each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, and Y represents a bivalent hydrocarbon group, from a tetrakis(fluoroaryl)borate•ether complex expressed by Formula (4): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, Y represents a bivalent hydrocarbon group, M represents a hydrogen atom, an alkali metal, an alkaline earth metal, or alkaline earth metal halide, n represents 2 or 3, and m represents 1 when M represents a hydrogen atom, an alkali metal, or an alkaline earth metal halide, and 2 when M represents an alkaline earth metal.
- 2. A process for producing a tetrakis(fluoroaryl) borate•ether complex defined by Formula (7): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, Y represents a bivalent hydrocarbon group, Z+ represents a monovalent cationic compound, and n represents 2 or 3,comprising reacting a tetrakis(fluoroaryl) borate•ether complex expressed by Formula (4): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, Y represents a bivalent hydrocarbon group, M represents a hydrogen atom, an alkali metal, an alkaline earth metal, or an alkaline earth metal halide, n represents 2 or 3, and m represents 1 when M represents a hydrogen atom, an alkali metal, or an alkaline earth metal halide, and 2 when M represents an alkaline earth metal,with a compound generating monovalent cationic compounds.
- 3. The process of claim 2, wherein said monovalent cationic compounds are selected from the group consisting of ammonium cations, anilinium cations, pyridinium cations, quinolinium cations, phosphonium cations, sulfonium cations, iodonium cations, carbenium cations and mixtures thereof.
- 4. The process of claim 2, wherein said compound generating the monovalent cationic compounds is selected from the group consisting of a quaternary ammonium compound, a nitrogen-containing aromatic heterocyclic compound, a quaternary phosphonium compound, a sulfonium compound, an iodonium compound, a carbenium compound and mixtures thereof.
- 5. The process of claim 2, wherein said compound generating the monovalent cationic compounds is selected from the group consisting of tri-n-butylamine•hydrochloride, N,N-dimethylaniline•hydrochloride, N,N-dimethylaniline•sulfate, quinoline•hydrochloride, N-methyl pyridine iodide, tetraphenyl phosphonium bromide, trimethyl sulfonium iodide, diphenyl iodonium chloride, trityl chloride and mixtures thereof.
- 6. A tetrakis(fluoroaryl)borate ether complex defined by Formula (7): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, Y represents a bivalent hydrocarbon group, Z+ represents a monovalent cationic compound, and n represents 2 or 3.
- 7. A process for producing a tetrakis(fluoroaryl) borate defined by Formula (2): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, Z+ represents a monovalent cationic compound, and n represents 2 or 3,comprising removing an ether compound defined by Formula (6): R11—O—Y—O—R12 (6) where each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, and Y represents a bivalent hydrocarbon group,from a tetrakis(fluoroaryl)borate•ether complex defined by Formula (7): where each of R1-R10 represents a hydrogen atom, a fluorine atom, a hydrocarbon group, or an alkoxy group, provided that at least one of R1-R5 represents a fluorine atom and at least one of R6-R10 represents a fluorine atom, each of R11 and R12 represents a hydrocarbon group which may include a substituent group containing a hetero atom, Y represents a bivalent hydrocarbon group, Z+ represents a monovalent cationic compound, and n represents 2 or 3.
Priority Claims (3)
Number |
Date |
Country |
Kind |
9-55310 |
Mar 1997 |
JP |
|
9-55311 |
Mar 1997 |
JP |
|
9-55312 |
Mar 1997 |
JP |
|
Parent Case Info
This application is a divisional application of application Ser. No. 09/779,673, filed on Feb. 9, 2001, now U.S. Pat. No. 6,380,435, which is a divisional application of application Ser. No. 09/171,832, now U.S. Pat. No. 6,215,025, and for which priority is claimed under 35 USC 120. Application Ser. No. 09/171,832 is the national phase of PCT International Application PCT/JP98/00946 filed in Japan on Mar. 9, 1998 under 35 USC 371. The entire contents of each of the above applications are hereby incorporated by reference. This application also claims priority of application Nos. 9-55310, 9-55311, and 9-55312, each filed in Japan and all on Mar. 10, 1997 under 35 USC 119.
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