Claims
- 1. An organic peroxide having the formula: ##EQU7## wherein R.sub.1 is selected from the group consisting of furyl, alkyl substituted furyl radicals having 4- 15 carbon atoms; R.sub.2 is selected from the group consisting of hydrogen, alkyl radicals having 1- 12 carbon atoms, cycloalkyl, alkyl substituted cycloalkyl radicals having 5- 20 carbon atoms, alkyl radicals having 1-12 carbon atoms, and phenyl and alkyl substituted phhenyl radicals; R.sub.3 and R.sub.4 are each selected from the group consisting of hydrogen, alkyl radicals having 1-12 carbon atoms, cycloalkyl and, alkyl substituted cycloalkyl radicals having 5- 20 carbon atoms; phenyl and alkyl substituted phenyl radicals having 6- 20 carbon atoms; alkyl radicals having 1- 12 carbon atoms, phenylalkyl radicals having 7- 20 carbon atoms; and R.sub.3 and R.sub.4 taken together with the two adjacent carbon atoms to which they are respectively bonded may form a cycloaliphatic ring selected from the group consisting of alkyl, phenyl, phenylalkyl, alkylidene, phenylalkylidene and hydroxyphenylalkylidene substituted cycloaliphatic rings having 5- 25 carbon atoms; R.sub.5 and R.sub.6 are each selected from the group consisting of alkyl radicals having 4- 12 carbon atoms, phenylalkyl radicals having 9- 18 carbon atoms; cyclalkyl and alkyl substituted cycloalkyl radicals having 5- 21 carbon atoms; phenylcycloalkyl and alkyl substituted phenylcycloalkyl radicals having 9- 25 carbon atoms; alkyl radicals having 4- 12 carbon atoms and phenylalkyl radicals having 9- 18 carbon atoms.
- 2. The peroxide of claim 1 wherein R.sub.5 and R.sub.6 are tertiary alkyl.
- 3. The peroxide of claim 2 wherein R.sub.5 and R.sub.6 are selected from the group consisting of tertiary butyl, tertiary amyl, and cumyl.
- 4. The peroxide of claim 1 which is selected from the group consisting of
- 1-furyl-3,3-di(ter.-butyl-peroxy)-propene-1;
- 1-furyl-2-methyl-3,3-di(ter.-butyl-peroxy)-propene-1;
- 5. A process for the preparation of an organic peroxide having the formula: ##EQU8## wherein R.sub.1 is selected from the group consisting of furyl and, alkyl substituted furyl radicals having 4- 15 carbon atoms; R.sub.2 is selected from the group consisting of hydrogen, alkyl radicals having 1- 12 carbon atoms, cycloalkyl and alkyl substituted cycloalkyl radicals having 5-20 carbon atoms, alkyl radicals having 1- 12 carbon atoms; and phenyl and alkyl substituted phenyl radicals; R.sub.3 and R.sub.4 are each selected from the group consisting of hydrogen, alkyl radicals having 1- 12 carbon atoms, cycloalkyl and alkyl substituted cycloalkyl radicals having 5- 20 carbon atoms; phenyl and, alkyl substituted phenyl radicals having 6- 20 carbon atoms; alkyl radicals having 1 - 12 carbon atoms, and phenylalkyl radicals having 7- 20 carbon atoms; and R.sub.3 and R.sub.4 taken together with the two adjacent carbon atoms to which they are respectively bonded may form a cycloaliphatic ring selected from the group consisting of alkyl, phenyl, phenylalkyl, alkylidene, phenylalkylidene and hydroxyphenylalkylidene substituted cycloaliphatic rings having 5- 25 carbon atoms; R.sub.5 and R.sub.6 are each selected from the group consisting of alkyl radicals having 4- 12 carbon atoms, phenylalkyl radicals having 9- 18 carbon atoms, cycloalkyl and alkyl substituted cycloalkyl radicals having 5- 21 carbon atoms; phenylcycloalkyl and alkyl substituted phenylcycloalkyl radicals having 9- 25 carbon atoms; alkyl radicals having 4- 12 carbon atoms, and phenylalkyl radicals having 9- 18 carbon atoms, this process comprising reacting a hydroperoxide selected from the group consisting of R.sub.5 OOH and R.sub.6 OOH, wherein R.sub.5 and R.sub.6 are as defined above, with an unsaturated carbonyl compound, having the formula: ##EQU9## wherein R.sub.1 R.sub.2, R.sub.3, R.sub.4 are as defined above dissolved in a suitable solvent in the presence of a sulfonic acid catalyst at a temperature between about -30.degree. and +80.degree.C., the molar ratio of said carbonyl compound to said hydroperoxide being between about 1:2 and 1:10.
- 6. The process of claim 5, wherein the said molar ratio is between about 1:2.5 and 1:5.
- 7. The process of claim 5, wherein said reaction temperature is between about -10.degree. and 50.degree.C.
- 8. The process of claim 5, wherein said sulfonic acid catalyst is p-toluene sulfonic acid.
- 9. The process of claim 5 which is carried out in a solvent selected from the group consists of linear aliphatic hydrocarbons having 6- 10 carbon atoms, linear aliphatic halogenated hydrocarbons having 1 or 2 carbon atoms and from 1 to 4 chlorine atoms, aromatic hydrocarbons having from 6 to 9 carbon atoms which may be halogenated with 1 or 2 chlorine atoms, cycloaliphatic hydrocarbons having 6- 10 carbon atoms and ethers.
Priority Claims (1)
Number |
Date |
Country |
Kind |
20222/69 |
Jul 1969 |
IT |
|
Parent Case Info
This is a division, of application Ser. No. 53,267, filed July 8, 1970, now U.S. Pat. No. 3,896,176.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3296184 |
Portolani et al. |
Jan 1967 |
|
3822317 |
D'Angelo et al. |
Jul 1974 |
|
Divisions (1)
|
Number |
Date |
Country |
Parent |
53267 |
Jul 1970 |
|