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Combined Experimental and Simulation Studies of Cross-Linked Polymer Brushes under Shear
Author(s) -
Manjesh Kumar Singh,
Chengjun Kang,
Patrick Ilg,
Rowena Crockett,
Martin Kröger,
Nicholas D. Spencer
Publication year - 2018
Publication title -
macromolecules
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.994
H-Index - 313
eISSN - 1520-5835
pISSN - 0024-9297
DOI - 10.1021/acs.macromol.8b01363
Subject(s) - polymer , materials science , tribology , polymer brush , glycidyl methacrylate , composite material , indentation , polymer chemistry , molecular dynamics , solvent , chemistry , copolymer , computational chemistry , polymerization , organic chemistry
We have studied the effect of cross-linking on the tribological behavior of polymer brushes using a combined experimental and theoretical approach. Tribological and indentation measurements on poly(glycidyl methacrylate) brushes and gels in the presence of dimethylformamide solvent were obtained by means of atomic force microscopy. To complement experiments, we have performed corresponding molecular dynamics (MD) simulations of a generic bead-spring model in the presence of explicit solvent and cross-linkers. Our study shows that cross-linking leads to an increase in friction between polymer brushes and a counter-surface. The coefficient of friction increases with increasing degree of cross-linking and decreases with increasing length of the cross-linker chains. We find that the brush-forming polymer chains in the outer layer play a significant role in reducing friction at the interface.

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