
Polyolefin Characterization
Description
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The result is a collection of top quality contributions by experienced editors and international authors on such fields as separation and fractionation, high throughput processes, thermal and crystallinity analysis, spectroscopy and rheology.
Equally of high interest for the polymer industry.
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Professor Soares's research interests are: polymerization reactor engineering for Ziegler-Natta, metallocene, late transition metal, free-radical and living free-radical polymerization, polymer microstructural characterization and fractionation, mathematical modeling of polymer microstructure, and in-situ polymer nanocomposites.
Professor Soares is recipient of the Premier's Research Excellence Award (2000), the Union Carbide/Dow Innovation Recognition Program (2000,2001), and the Syncrude/CSChE Canada Innovation Award (2001).
Content
Development of an automated crossfractionation apparatus, TREF-GPC, for a full characterization of the bivariate distribution in polyolefins
Examples of using 3D-GPC-TREF for polyolefin characterization
Separation and characterization of ethylene-propylene copolymers by high-temperature gradient HPLC coupled to FTIR spectroscopy
Molecular topology fractionation of polystyrene stars and long chain branched polyethylene fractions
Crystallization elution fractionation. A new separation process for polyolefin resins
Block Index for Characterizing Olefin Block Copolymers
A mathematical model for the kinetics of crystallization in Crystaf
Characterization of ethylene-1-hexene copolymers made with supported metallocene catalysts: Influence of support type
Application of fractionation technique to the studies of olefin polymerization kinetics and polymer degradation
Synthesis and characterization of ethylene/propylene copolymers in the whole composition range
Characterization of polyethylene nascent powders synthesized by TpTiCl2(OR) catalysts
Characterization of LDPE grafted with diethylmaleate by gamma radiation: Application of FTIR, GPC and SSA techniques
Thermal stability evaluation of PA6/LLDPE/SEBS-g-DEM blends
Using solvents to improve the chemical shift differences between short-chain branch methines and long-chain branch methines in polyethylene copolymers
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