Atomic force microscopy characterization of polyethylene terephthalate grafting with poly(styrene sulfonate)

02 February 2022, Version 2
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Polyethylene terephthalate (PET) is widely used to elaborate biomaterials and medical devices in particular for long-term implant applications but tuning their surface properties remains challenging. We investigate surface functionalization by grafting poly(sodium 4-styrene sulfonate, PNaSS) with the aim of enhancing protein adhesion and cellular activity. Elucidating the topography and molecular level organization of the modified surfaces is important for understanding and predicting biological activity. In this work, we explore several grafting methods including thermal grafting, thermal grafting in the presence of Mohr's salt, and UV activation. We characterize the different surfaces obtained using atomic force microscopy (AFM), contact angle (CA), and X-ray photoelectron spectroscopy (XPS). We observe an increase in the percentage of sulfur atoms (XPS) that correlates with changes in (CA), and we identify by AFM characteristic features, which we interpret as patches of polymers on the PET surfaces. This work demonstrates tuning of biomaterials surface by functionalization and illustrates the capability of atomic force microscopy to provide insights into the spatial organization of the grafted polymer.

Keywords

Peakforce Quantitative Nano-mechanical Properties (PF-QNM)
Polyelectrolyte brushes
Polyethylene Terephthalate (PET)
Poly(sodium 4-styrene sulfonate (PNaSS)

Supplementary materials

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Title
Atomic force microscopy characterization of polyethylene terephthalate grafting with poly(styrene sulfonate)
Description
Polyethylene terephthalate (PET) is widely used to elaborate biomaterials and medical devices in particular for long-term implant applications but tuning their surface properties remains challenging. We investigate surface functionalization by grafting poly(sodium 4-styrene sulfonate, PNaSS) with the aim of enhancing protein adhesion and cellular activity.
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