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Anchor Group Bottlebrush Polymers as Oil Additive Friction Modifiers.


ABSTRACT: Surface-tethered polymers have been shown to be an efficient lubrication strategy for boundary and mixed lubrication by providing a solvated film between solid surfaces. We have assessed the performance of various graft copolymers as friction modifier additives in oil and revealed important structure-property relationships for this application. The polymers consisted of an oil-soluble, grafted poly(lauryl acrylate) segment and a polar, linear poly(4-acryloylmorpholine) anchor group. Reversible addition-fragmentation chain transfer polymerization was used to access various architectures with control of the grafting density and position of the anchor group. Macrotribological studies displayed promising results with ≈50% reduction in friction coefficient at low polymer treatment rates. QCM-D experiments, neutron reflectometry, small-angle neutron scattering, and atomic force microscopy were used to gather detailed information on these polymers' surface adsorption characteristics, film structure, and solution behavior.

SUBMITTER: Kerr A 

PROVIDER: S-EPMC10591277 | biostudies-literature | 2023 Oct

REPOSITORIES: biostudies-literature

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Anchor Group Bottlebrush Polymers as Oil Additive Friction Modifiers.

Kerr Andrew A   Häkkinen Satu S   Hall Stephen C L SCL   Kirkman Paul P   O'Hora Paul P   Smith Timothy T   Kinane Christian J CJ   Caruana Andrew A   Perrier Sébastien S  

ACS applied materials & interfaces 20231009 41


Surface-tethered polymers have been shown to be an efficient lubrication strategy for boundary and mixed lubrication by providing a solvated film between solid surfaces. We have assessed the performance of various graft copolymers as friction modifier additives in oil and revealed important structure-property relationships for this application. The polymers consisted of an oil-soluble, grafted poly(lauryl acrylate) segment and a polar, linear poly(4-acryloylmorpholine) anchor group. Reversible a  ...[more]

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