FTIR spectroscopic study of supported titanium–magnesium catalysts for propylene polymerization containing diether and succinate as internal donors

IF 4.7 2区 化学 Q2 CHEMISTRY, PHYSICAL
Artem A. Barabanov, Valentina N. Panchenko, Vladimir A. Zakharov, Mikhail A. Matsko
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引用次数: 0

Abstract

The data on the interaction of internal stereoregulating donors (IDs) diethyl 2,4-diisobutyl succinate (DIBS), 2-isopropyl-2-isopentyl-1,3-dimethoxypropane (IPIPDMP) and a mixture of these IDs with the δ-MgCl2 support, and the data on the transformations occurring upon interaction between surface structures of these donors and TiCl4 in model MgCl2/ID/TiCl4 samples were obtained by the chemical analysis and IR spectroscopy. It was found that DIBS interacts with penta- and tetracoordinated Mg ions yielding three types of surface species, while IPIPDMP forms surface species with tetracoordinated Mg ions. In the mixed-donor sample MgCl2/(DIBS+IPIPDMP) donors IPIPDMP and DIBS are anchored to different sites of the MgCl2 surface and do not compete with each other. The interaction of the MgCl2/DIBS sample with TiCl4 leads to the replacing of one third of DIBS anchored to tetracoordinated magnesium ions by TiCl4, while two thirds of TiCl4 are anchored to the vacant sites on MgCl2. In the case of MgCl2/IPIPDMP, TiCl4 is mostly anchored to the vacant sites of MgCl2. Treatment of the mixed-donor MgCl2/(DIBS+IPIPDMP) sample with TiCl4 results in partial removal of DIBS and IPIPDMP and TiCl4 fixation at both vacant and freed surface sites. The data obtained for real highly-active titanium–magnesium catalysts for propylene polymerization containing IPIPDMP, DIBS, and the DIBS+IPIPDMP mixture donors are close to those for the respective MgCl2/ID/TiCl4 model samples. The key difference is that the contents of ID and TiCl4 increase abruptly and the ID/TiCl4 molar ratio changes in real TMCs.
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来源期刊
Applied Catalysis A: General
Applied Catalysis A: General 化学-环境科学
CiteScore
9.00
自引率
5.50%
发文量
415
审稿时长
24 days
期刊介绍: Applied Catalysis A: General publishes original papers on all aspects of catalysis of basic and practical interest to chemical scientists in both industrial and academic fields, with an emphasis onnew understanding of catalysts and catalytic reactions, new catalytic materials, new techniques, and new processes, especially those that have potential practical implications. Papers that report results of a thorough study or optimization of systems or processes that are well understood, widely studied, or minor variations of known ones are discouraged. Authors should include statements in a separate section "Justification for Publication" of how the manuscript fits the scope of the journal in the cover letter to the editors. Submissions without such justification will be rejected without review.
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