2021 Annual Meeting
(442b) Multiscale Modeling and Characterization of Radical-Initiated Modification of Molten Polyolefins
Authors
NMR+GC/MS spectroscopy of model compounds were also used to further elucidate the dominant reaction pathways for the initiation and the termination mechanisms. On the basis of the intrinsic kinetic dataset discerned from both computational chemistry and model compound studies, quantitative relationships between the product properties and the reaction conditions are therefore revealed with the intension to establish a polymer topology based kinetic model. To evaluate the quality of the resulting kinetic model for radical grafting reactions, it is compared to a factorial design of melt processing experiments on industrial grade polyolefin samples, including comparisons of the degree of grafting via FTIR, the molar mass measured via high temperature GPC, and the linear rheology of the polymer melts. The results show strong correlation between model predictions and the experimental results across a wide range of parameter space, suggesting the predictive ability of this approach for complex chemical networks.