In-Situ Thermometry Reveals Fragmentation Behavior Based on Local Temperature in α-Olefin Polymerization Catalysts
Article Details
Journal Info
Journal of the American Chemical Society
American Chemical Society
Authors (11)
Joren M. Dorresteijn
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Bas Terlingen
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Koen W. Bossers
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Thimo S. Jacobs
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Yevkeni Wisse
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Peter de Peinder
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Virginie Cirriez
R&D Polymer Differentiation Team
Alexandre Welle
R&D Polymer Differentiation Team
Eelco T. C. Vogt
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Florian Meirer
Inorganic Chemistry and Catalysis Group, Debye Institute of Nanomaterials Science and Institute for Circular and Sustainable Chemistry
Bert M. Weckhuysen
Inorganic Chemistry and Catalysis group, Institute for Sustainable and Circular Chemistry, Faculty of Science, Utrecht University, Universiteitsweg 99, 3584 CG Utrecht, The Netherlands