Publication Type Journal Article
Title Hybrid materials based on polyethylene and MCM-41 microparticles functionalized with silanes: Catalytic aspects of in situ polymerization, crystalline features and mechanical properties
Authors M. L. Cerrada A. Bento E. Perez V. Lorenzo João P. Lourenço M R Ribeiro
Groups CATHPRO
Journal MICROPOROUS AND MESOPOROUS MATERIALS
Year 2016
Month September
Volume 232
Number
Pages 86-96
Abstract New nanocomposites based on polyethylene have been prepared by in situ polymerization of ethylene in presence of mesoporous MCM-41. The polymerization reactions were performed using a zirconocene catalyst either under homogenous conditions or supported onto mesoporous MCM-41 particles, which are synthesized and decorated post-synthesis with two silanes before polymerization in order to promote an enhanced interfacial adhesion. The existence of polyethylene chains able to crystallize within the mesoporous channels in the resulting nanocomposites is figured out from the small endothermic process, located at around 80 degrees C, on heating calorimetric experiments, in addition to the main melting endotherm. These results indicate that polyethylene macrochains can grow up during polymerization either outside or inside the MCM-41 channels, these keeping their regular hexagonal arrangements. Mechanical response is observed to be dependent on the content in mesoporous MCM-41 and on the crystalline features of polyethylene. Accordingly, stiffness increases and deformability decreases in the nanocomposites as much as MCM-41 content is enlarged and polyethylene amount within channels is raised. Ultimate mechanical performance improves with MCM-41 incorporation without varying the final processing temperature. (C) 2016 Elsevier Inc. All rights reserved.
DOI http://dx.doi.org/10.1016/j.micromeso.2016.06.011
ISBN
Publisher ELSEVIER SCIENCE BV
Book Title
ISSN 1387-1811
EISSN 1873-3093
Conference Name
Bibtex ID ISI:000380597000009
Observations
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