Claims
- 1. A method of preparing catalysts for polymerization of alpha-olefins comprising contacting, in substantial absence of proton donors, a soluble magnesium compound of the general formula
- Mg(OSiR.sup.1 R.sup.2 R.sup.3).sub.2
- with a titanium alkoxide of the formula Ti(OR.sup.4).sub.4 in combination with at least one transition metal alkoxide having a general formula selected from the group consisting of
- (a) M.sup.1 (OR.sup.4).sub.4 wherein M.sup.1 is at least one metal selected from the group consisting of zirconium, vanadium and hafnium,
- (b) M.sup.2 O(OR.sup.4).sub.3 wherein M.sup.2 is vanadium,
- (c) [M.sup.3 (OR.sup.4).sub.5 ].sub.2 where M.sup.3 is at least one material selected from the group consisting of niobium and tantalum,
- (d) M.sup.4 O.sub.2 (OR.sup.4).sub.2 and M.sup.4.sub.2 O.sub.3 (OR.sup.4).sub.2 wherein M.sup.4 is chromium, and
- (e) at least one material selected from the group consisting of tungsten alkoxides and molybdenum alkoxides,
- in a sauturated aliphatic hydrocarbon solvent to form a solution, then forming a precipitate by chlorinating the solution in the substantial absence of free oxygen and recovering the precipitate for use as a catalyst, wherein each of R.sup.1, R.sup.2 and R.sup.3 is, independently, alkyl groups or alkoxy groups containing from 1 to about 20 carbon atoms or aryl groups, aryloxy groups, cycloalkoxy groups or cycloalkyl groups containing from 6 to 14 carbon atoms, and each R.sup.4 is, independently, alkyl groups or etherically substituted alkyl groups containing from 1 to 20 carbon atoms, aryl groups, cycloalkyl groups or etherically substituted aryl groups or cycloalkyl groups containing from 6 to 14 carbon atoms.
- 2. A method as described in claim 1 wherein the transition metal alkoxides are vanadium or zirconium alkoxides selected from the group consisting of vanadium tri-n-propoxide oxide, vanadium tri-i-propoxide oxide, vanadium tri-n-butoxide oxide, vanadium trimethoxide oxide, vanadium (di-i-propoxide)(2-ethoxyethoxide) oxide, vanadium tri-n-octadecoxide oxide, vanadium tetraethoxide dimer, vanadium tetra-n-propoxide dimer, vanadium tetra-i-propoxide dimer, vanadium di(isopropoxide)bis(2-ethoxyethoxide) dimer and monomer, vanadium di(isopropoxide)bis(2-(2-n-dodecanoxyethoxyethoxide) dimer and monomer, vanadium tetra-n-octadecoxide dimer; zirconium tetra(isopropoxide), zirconium tetra(n-butoxide), zirconium tetra(phenoxide), zirconium di(isopropoxide) bis(2-ethoxyethoxide), zirconium tetra (methoxide), zirconium tetra(cyclohexoxide), zirconium tetra(n-octadecoxide), zirconium di(isopropoxide)bis(2-(2-n-dodecanoxyethoxy)ethoxide).
- 3. A method as described in claim 1 wherein the transition metal alkoxide is selected from the group consisting of chromium, niobium, hafnium alkoxides selected from the group consisting of di-i-propyl chromate, diethyl chromate, dimethyl chromate, di-n-butyl chromate, di-n-octadecyl chromate, bis(2-ethoxyethyl) chromate, bis(2-(2-dodecanoxyethoxyethyl) chromate; niobium pentaethoxide dimer, niobium penta-n-propoxide dimer, niobium penta-i-propoxide dimer, niobium penta-n-butoxide dimer, niobium penta-n-octadecoxide dimer, niobium tri(isopropoxide)bis(2-ethoxyethoxide) dimer and monomer, niobium (isopropoxide) (2-ethoxyethoxide) dimer and monomer, niobium (isopropoxide)(2-(2-n-dodecanoxyethoxy) ethoxide dimer and monomer, niobium pentamethoxide dimer; hafnium tetra(isopropoxide), hafnium tetra(n-butoxide), hafnium tetra(phenoxide), hafnium di(isopropoxide) bis(2-ethoxyethoxide), hafnium tetra (methoxide), hafnium tetra (cyclohexoxide), hafnium tetra(n-octadecoxide), hafnium di(isopropoxide) bis(2-(2-n-dodecanoxyethoxy)ethoxide).
- 4. A method as described in claim 1 wherein the transition metal alkoxide is molybdenum,tungsten or tantalum alkoxides selected from the group consisting of tungsten hexaphenoxide (W(OPh).sub.6), disodium hexamolybdenum tetradecamethoxide (Na.sub.2 [Mo.sub.6 (OMe).sub.8 ](OMe).sub.6 ; tantalum pentaethoxide dimer, tantalum penta-n-propoxide dimer, tantalum penta-i-propoxide dimer, penta-n-butoxide dimer, tantalum pent-n-octadecoxide dimer, tantalum tri(isopropoxide) bis(2-ethoxyethoxide) dimer and monomer, tantalum (isopropoxide) (2-ethoxyethoxide) dimer and monomer (mixture of alkoxide substitution), tantalum (isopropoxide)(2-(2-n-dodecanoxyethoxyethoxide) dimer or monomer, tantalum pentamethoxide dimer.
- 5. A method as described in claim 4 wherein the solution is chlorinated with a compound containing chlorine bonded to hydrogen, metal, or organic groups.
- 6. A method as described in claim 1 wherein the molar quantity of titanium equals or exceeds the total molar quantity of any other transition metal species.
- 7. A method as described in claim 6 wherein the molar ratio of titanium to other transition metal species ranges between about 1:1 to about 100:1, respectively.
- 8. A method as described in claim 7 when the molar ratio of magnesium to transition metal alkoxide ranges from about 0.1:1 to about 500:1 respectively.
Parent Case Info
This is a continuation-in-part of application Serial No. 429,632 filed Sept. 30, 1982 and now U.S. Pat. No. 4,440,869.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3135809 |
Bosmajian |
Jun 1964 |
|
4440869 |
Shannon et al. |
Apr 1984 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
429632 |
Sep 1982 |
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