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Polymerization and Structure of Opposing Polymer Brushes Studied by Computer Simulations

Autor
Halagan, Krzysztof
Jung, Jaroslaw
Sikorski, Andrzej
Banaszak, Michal
Polanowski, Piotr
Data publikacji
2021
Abstrakt (EN)

A model of the polymerization process during the formation of a pair of polymer brushes was designed and investigated. The obtained system consisted of two impenetrable parallel surfaces with the same number of chains grafted on both surfaces. Coarse-grained chains embedded in nodes of a face-centered cubic lattice with excluded volume interactions were obtained by a ‘grafted from’ procedure. The structure of synthesized macromolecular systems was also studied. Monte Carlo simulations using the dynamic lattice liquid model were employed using dedicated parallel machine ARUZ in a large size and time scale. The parameters of the polymerization process were found to be crucial for the proper structure of the brush. It was found that for high grafting densities, chains were increasingly compressed, and there is surprisingly little interpenetration of chains from opposite surfaces. It was predicted and confirmed that in a polydisperse sample, the longer chains have unique configurations consisting of a stretched stem and a coiled crown.

Słowa kluczowe EN
Dynamic lattice liquid model
Monte Carlo method
Polymer brushes
Polymerization
Dyscyplina PBN
nauki chemiczne
Czasopismo
Polymers
Tom
13
Zeszyt
24
Strony od-do
art.no. 4294
Data udostępnienia w otwartym dostępie
2021-12-08
Licencja otwartego dostępu
Uznanie autorstwa