2018
DOI: 10.1021/acs.jpcc.7b12667
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Structural Characterization of Electron Donors in Ziegler–Natta Catalysts

Abstract: Ziegler–Natta catalysis is a very important industrial process for the production of polyolefins. However, the catalysts are not well-understood at the molecular level. Yet, atomic-scale structural information is of pivotal importance for rational catalyst development. We applied a solid-state NMR/density functional theory tandem approach to gain detailed insight into the interactions between the catalysts’ support, MgCl2, and organic electron donors. Because of the heterogeneity of the samples, large line wid… Show more

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Cited by 31 publications
(40 citation statements)
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“…Ball milling MgCl 2 in the presence of electron donors yields nanoparticles with much smaller dimensions. On the basis of previous results, 34 we printed the most likely surface type for each sample in bold.…”
Section: Results and Discussionmentioning
confidence: 99%
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“…Ball milling MgCl 2 in the presence of electron donors yields nanoparticles with much smaller dimensions. On the basis of previous results, 34 we printed the most likely surface type for each sample in bold.…”
Section: Results and Discussionmentioning
confidence: 99%
“…Furthermore, we calculated quadrupolar parameters for MgCl 2 (110)–TiCl 4 , MgCl 2 (104)–DMDOMe, and MgCl 2 (110)–DMDOMe adducts using periodic calculations. We used cluster models that were introduced in ref ( 34 ), for the calculations of the quadrupolar parameters for DiBP adducts and for a high-coverage model of DMDOMe. In the calculations, the donor molecules are coordinated in either the “bridge” or the “chelate” mode (see Figures 5 , S8, and S9 ) and TiCl 4 adopts the so-called Corradini site (see Figure 6 ).…”
Section: Results and Discussionmentioning
confidence: 99%
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“…In order to achieve this goal, it is important to synthesize some efficient catalysts. It is wellknown that conventional Ziegler-Natta catalysts 26,27 and metallocene catalysts [28][29][30] have many disadvantages due to their polar centers as early transition metals, for instance, poor tolerance to polar groups and large amounts of cocatalyst. However, owing to the lower oxophilicity, single active site and resistance toward deactivation by polar functionalities, the design of late-transition-metal catalysts has attracted widespread interest.…”
Section: Introductionmentioning
confidence: 99%