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dc.contributor.authorHeyndrickx, Woutereng
dc.date.accessioned2011-10-20T12:46:22Z
dc.date.available2011-10-20T12:46:22Z
dc.date.issued2011-09-29eng
dc.identifier.isbn978-82-308-1838-1 (print version)en_US
dc.identifier.urihttps://hdl.handle.net/1956/5130
dc.language.isoengeng
dc.relation.haspartPaper I: On the Nature of the Active Site in Ruthenium Olefin Coordination-Insertion Polymerization Catalysts. W. Heyndrickx, G. Occhipinti, Y. Minenkov and V. R. Jensen J. Mol. Catal. A: Chem. 2010, 324, 64-74. Full-text not available.en_US
dc.relation.haspartPaper II: Neutral Nickel Oligo- and Polymerization Catalysts: The Importance of Alkyl Phosphine Intermediates in Chain Termination. W. Heyndrickx, G. Occhipinti, Y. Minenkov and V. R. Jensen Chem.-Eur. J. 2011. Accepted. Full-text not available.en_US
dc.relation.haspartPaper III: Neutral Nickel Oligo- and Polymerization Catalysts: Towards Computational Catalyst Prediction and Design. W. Heyndrickx, G. Occhipinti and V. R. Jensen. To be submitted. Full-text not available.en_US
dc.relation.haspartPaper IV: Striking a Compromise: Polar Functional Group Tolerance Versus Insertion Barrier Height for Olefin Polymerization Catalysts. W. Heyndrickx, G. Occhipinti, P. Bultinck and V. R. Jensen To be submitted. Full-text not available.en_US
dc.relation.haspartPaper V: De Novo Optimization of Functional Coordination Compounds using a Fragment-Based Evolutionary Algorithm. Y. Chu, W. Heyndrickx, G. Occhipinti, V. R. Jensen and B. K. Alsberg To be submitted. Full-text not available.en_US
dc.titleTheory-Based Mechanistic Insight as Stepping Stone for Catalyst Development in Olefin Polymerizationen_US
dc.typeDoctoral thesis
dc.rights.holderCopyright the author. All rights reserveden_US
dc.subject.nsiVDP::Mathematics and natural science: 400::Chemistry: 440en_US


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