The chemical interaction between the procatalyst MgCl 2 /TiCl 4 /EB (EB = ethylbenzoate) and the cocatalyst triethylaluminium was investigated with the purpose to find a relationship between the degree of titanium reduction and the catalytic activity in ethene and propene polymerizations. This inter
Isoselectivity Distribution of Isospecific Centers in Supported Titanium-Based Ziegler-Natta Catalysts
✍ Scribed by Yury V. Kissin; John C. Chadwick; Ines Mingozzi; Giampiero Morini
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 404 KB
- Volume
- 207
- Category
- Article
- ISSN
- 1022-1352
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✦ Synopsis
Abstract
Summary: This article describes the quantitative aspects of the isoselectivity distribution of isospecific centers in five supported titanium‐based Ziegler–Natta catalyst systems containing different internal and external organic donors. Highly crystalline poly(propylene) fractions of the polymers (insoluble in o‐xylene at 95 °C) were analyzed by analytical Tref and gel permeation chromatography (GPC) methods. Separation of the Tref curves into the peaks of sterically uniform components (each represented by the Lorentz function) showed that all these “isotactic” poly(propylene) fractions are nonuniform materials. Each highly crystalline fraction contains several distinct components that differ in stereoregularity. The [mmmm] values for different components (which have approximately the same isotacticity in different polymers) range from as high as 0.986–0.993 to much lower values, in the 0.935–0.955 range. The number of Tref components and their relative contents are substantially different for the crystalline fractions of the polymers produced with different catalyst systems; these parameters depend on the nature of the internal and the external electron donors in the catalysts. GPC analysis of the crystalline poly(propylene) fractions showed that each consists of four or five Flory components (the components produced by kinetically uniform active centers) with widely different average molecular weights, from ≈1 × 10^4^ to ≈1.3 × 10^6^. In general, the probabilities of chain transfer reactions for different active centers decrease with the increase in their isospecificity.
Resolution of the Tref curve of the highly crystalline fraction of poly(propylene) prepared with catalyst system 3.
magnified imageResolution of the Tref curve of the highly crystalline fraction of poly(propylene) prepared with catalyst system 3.
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## Abstract Highly active Ziegler‐Natta catalysts have been synthesized using an electrochemical process in their preparation, with the aim of producing selectively titanium(III) species from TiCl~4~. The use of an undivided cell, an aluminium anode and a halogenated solvent (dichloromethane or 1,2
## Abstract **Summary:** The article discusses two subjects: (a) temperature effects on the molecular weight, molecular weight distribution and stereoregularity of crystalline fractions of propylene polymers prepared with a supported TiCl~4~/dibutyl phthalate/MgCl~2~ – Al(__i__‐Bu)~3~ catalyst syst
A fractional poisoning method has shown that all groups of Ziegler catalyst centres, both stereospecific and non-stereospecific, have a similar distribution of propagation rate constants. The most regular and highly molecular isotactic fraction is quite uniform by stereoregularity. Most of the poiso