Claims
- 1. An organic aluminoxy compound, which exhibits a .sup.27 Al nuclear magnetic resonance spectrum (.sup.27 Al-NMR spectrum) having an A.sub.1 /A.sub.2 ratio of at most 0.1, wherein A.sub.1 is an area of a region encompassed by a segment of a line which connects a local minimum point existing between a continuous curve "a" containing a peak appearing at around 150 ppm and a continuous curve "b" containing a peak appearing at around 60 ppm to the point where the above curve "b" comes into contact with the base line and also by the above curve "b", and A.sub.2 is an area of a region encompassed by the above curves "a" and "b" and also by the base line, which contains at least 5%, expressed in terms of aluminum atoms, of a portion insoluble in a mixed solvent of toluene and hexane in a ratio by volume of about 2:5 at 30.degree. C. or lower, and being formed from an organoaluminum compound having the formula:
- R.sup.3 Al
- wherein R represents an alkyl group having 1 to 3 carbon atoms, which are the same or different from each other.
- 2. The organic aluminoxy compound of claim 1, wherein the organoaluminum compound R.sup.3 Al is selected from the group consisting of trimethylaluminum, triethylaluminum, tri-n-propylaluminum, and triisopropylaluminum.
- 3. The organic aluminoxy compound of claim 1, which is prepared by reacting said organoaluminum compound in an organic solvent with water.
- 4. The organic aluminoxy compound of claim 3, wherein said reaction is conducted at 0.degree. C. or lower.
- 5. The organic aluminoxy compound of claim 4, wherein said reaction is conducted at from 0.degree. C. to -100.degree. C.
- 6. The organic aluminoxy compound of claim 3, wherein said reaction comprises adding water to said organoalumium compound in organic solvent at a rate of about 0.1 mol/min or less per 1 mol of said organoaluminum compound.
- 7. The organic aluminoxy compound of claim 3, wherein said organic solvent is selected from the group consisting of n-pentane, isopentane, hexane, heptane, octane, nonane, decane, tetradecane, cyclohexane, benzene, toluene, xylene and ethylbenzene.
- 8. The organic aluminoxy compound of claim 1, which is selected from the group consisting of methylaluminoxane, ethylaluminoxane, n-proplaluminoxane and isopropylaluminoxane.
- 9. Methylaluminoxane, which exhibits a .sup.27 Al nuclear magnetic resonance spectrum (.sup.27 Al-NMR spectrum) having an A.sub.1 /A.sub.2 ratio of at most 0.1, wherein A.sub.1 is an area of a region encompassed by a segment of a line which connects a local minimum point existing between a continuous curve "a" containing a peak appearing at around 150 ppm and a continuous curve "b" containing a peak appearing at around 60 ppm to the point where the above curve "b" comes into contact with the base line and also by the above curve "b" and A.sub.2 is an area of a region encompassed by the above curves "a" and "b" and also by the base line, which contains at least 5%, expressed in terms of aluminum atoms, of a portion insoluble in a mixed solvent of toluene and hexane in a ratio by volume of about 2:5 at 30.degree. C. or lower.
- 10. A catalyst for producing a polymer, comprising (A) a transition metal compound, and (B) the organic aluminoxy compound of claim 1.
- 11. A catalyst for producing a polymer, comprising (A) a transition metal compound, (B) the organic aluminoxy compound of claim 1, and (c) a metal compound containing an alkyl group.
- 12. The catalyst for producing a polymer, comprising (A) a transition metal compound, and (B) the methylaluminoxane of claim 2.
- 13. A catalyst for producing a polymer, comprising (A) a transition metal compound, (B) the methylaluminoxane of claim 2, and (C) a metal compound containing an alkyl group.
- 14. The catalyst of any one of claims 10, 11, 12 or 13, wherein said transition metal compound (A) has the formula:
- MR.sup.1.sub.a R.sup.2.sub.b R.sup.3.sub.c R.sup.4.sub.4-(a+b+c)
- or the formula:
- MR.sup.1.sub.d R.sup.2.sub.b R.sup.3.sub.3-(d+e)
- wherein M is a metal of any one of any one of Groups 3 to 10 of the Periodic table or a metal of the lanthamide group; R.sup.1, R.sup.2, R.sup.3 and R.sup.4 each independently represent alkyl, alkoxy, alkythio, aryl, cyclopentadienyl, substituted cyclopentadienyl, indenyl, substituted indenyl, fluorenyl, amino, amido, acyloxy, phosphide, halogen or a chelating ligand; a, b and c each independently represent an integer of 0 to 4; d and e each independently represent an integer of 0 to 3; or wherein any two of R.sup.1, R.sup.2, R.sup.3 and R.sup.4 are bonded to each other via --CH.sub.2 -- or --Si(CH.sub.3).sub.2 --.
- 15. The catalyst of claim 14, wherein the metal M is titanium.
Priority Claims (1)
Number |
Date |
Country |
Kind |
7-333338 |
Dec 1995 |
JPX |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
This application was filed as a request for U.S. examination under 35 U.S.C. .sctn.371 of International application No. PCT/JP96/03699 filed Dec. 19, 1996.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/JP96/03699 |
12/19/1996 |
|
|
8/5/1997 |
8/5/1997 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO97/23488 |
7/3/1997 |
|
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
4-266891 |
Sep 1992 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Chemical Abstracts, vol. 123, abstract No. 314830, 1995. |