Claims
- 1. The process of reacting an organic halide with an aromatic substrate to form an aromatic product comprising the steps of: charging a reaction vessel with a metallic hexacarbonyl compound having the general formula M(CO).sub.6 wherein M is selected from the group consisting of Cr, Mo and W, adding an aromatic substrate having the general formula ##SPC9##
- wherein R' is independently selected from the group consisting of hydrogen and hydroxide, with the proviso that at least one said R' is hydroxide, reacting said metallic hexacarbonyl compound with part of said aromatic substrate to yield an arene metal tricarbonyl catalyst having the general formula ##SPC10##
- charging the reaction vessel with an organic halide having the general formula RX wherein R is selected from the group consisting of an alkyl group having from 1 to about 20 carbon atoms, a cyclohexyl and an alkyl substituted phenyl group having from 7 to about 12 carbon atoms, wherein the X constituent is attached to an alkyl carbon, and X is selected from the group consisting of bromine, chlorine and fluorine, heating said reaction vessel from ambient temperatures to a temperature sufficient to cause said catalyst to remove the halide from said organic halide with generation of a carbonium ion from said organic halide so that said carbonium ion will attack the remaining part of said aromatic substrate to yield the aromatic product.
- 2. The process as in claim 1, wherein said carbonium ion is formed in a temperature range from a few degrees above said ambient temperature to about 135.degree. C.
- 3. The process as in claim 1, wherein said reaction is carried out in an inert atmosphere.
- 4. The process as in claim 3, wherein said inert atmosphere is nitrogen.
- 5. The process as in claim 1, wherein said reaction is carried out in a solvent selected from the group consisting of a saturated liquid hydrocarbon and liquid aryl compounds.
- 6. The process as in claim 1, wherein said organic halides are selected from the group consisting of n-propyl chloride, t-butyl chloride, cyclohexyl chloride, cyclohexyl fluoride, cyclohexyl bromide, n-chloroheptane and benzyl chloride.
- 7. The process as in claim 1, wherein said aromatic substrate is phenol.
- 8. The process as in claim 1, wherein the metal of said arene metal tri-carbonyl catalyst is molybdenum and where the R' constituent of said catalyst is selected from the group consisting of hydrogen and hydroxide radicals.
- 9. The process of reacting an organic halide in the presence of an arene metal tri-carbonyl catalyst with an aromatic substrate to form an aromatic product comprising the steps of: charging a reaction vessel with an organic halide having the general formula RX wherein R is selected from the group consisting of an alkyl group having from 1 to about 20 carbon atoms, a cyclohexyl and an alkyl substituted phenyl group having from 7 to about 12 carbon atoms, wherein the X constituent is attached to an alkyl carbon, and X is selected from the group consisting of bromine, chlorine and fluorine, adding an aromatic substrate having the general formula ##SPC11##
- wherein R' is independently selected from the group consisting of hydrogen and hydroxide, with the proviso that at least one said R' is hydroxide, adding an arene metal tricarbonyl catalyst having the general formula ##SPC12##
- wherein R" is independently selected from the group consisting of hydrogen, alkyl groups having from 1 to about 6 carbon atoms, alkoxide groups having from 1 to about 4 carbon atoms, aryl and aryloxide groups having from 6 to about 12 carbon atoms including alkyl substituents, amino, halide, alkyl benzoate esters having from 1 to 3 carbon atoms, sulfonyl chloride and hydroxide, and M is selected from the group consisting of Cr, Mo, and W, heating said reaction vessel from ambient temperatures to a temperature sufficient to cause said catalyst to remove the halide from said organic halide with generation of a carbonium ion from said organic halide so that said carbonium ion will attack said aromatic substrate to yield the aromatic product.
CROSS REFERENCE TO RELATED APPLICATION
This application is a divisional application of U.S. Ser. No. 339,637, now U.S. Pat. No. 3,832,403 which is in turn a continuation-in-part application of U.S. Ser. No. 119,908, filed Mar. 1, 1971, now abandoned.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3832403 |
Farona et al. |
Aug 1974 |
|
Non-Patent Literature Citations (1)
Entry |
Farona et al., "J. Am. Chem. Soc.", vol. 93, pp. 2826-2827 (1971). |
Divisions (1)
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Number |
Date |
Country |
Parent |
339637 |
Mar 1973 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
119908 |
Mar 1971 |
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