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Mechanical properties of plasma immersion ion implanted PEEK for bioactivation of medical devices

journal contribution
posted on 2024-11-01, 23:14 authored by Edgar Wakelin, Ali Fathi, Masturina Kracica, Giselle yeo, Steven Wise, Anthony Weiss, Dougal McCullochDougal McCulloch, Fariba Dehghani, David Mckenzie, Marcela Bilek
Plasma immersion ion implantation (PIII) is used to modify the surface properties of polyether ether ketone for biomedical applications. Modifications to the mechanical and chemical properties are characterized as a function of ion fluence (treatment time) to determine the suitability of the treated surfaces for biological applications. Young's modulus and elastic recovery were found to increase with respect to treatment time at the surface from 4.4 to 5.2 MPa and from 0.49 to 0.68, respectively. The mechanical properties varied continuously with depth, forming a graded layer where the mechanical properties returned to untreated values deep within the layer. The treated surface layer exhibited cracking under cyclical loads, associated with an increased modulus due to dehydrogenation and cross-linking; however, it did not show any sign of delamination, indicating that the modified layer is well integrated with the substrate, a critical factor for bioactive surface coatings. The oxygen concentration remained unchanged at the surface; however, in contrast to ion implanted polymers containing only carbon and hydrogen, the oxygen concentration within the treated layer was found to decrease. This effect is attributed to UV exposure and suggests that PIII treatments can modify the surface to far greater depths than previously reported. Protein immobilization on PIII treated surfaces was found to be independent of treatment time, indicating that the surface mechanical properties can be tuned for specific applications without affecting the protein coverage. Our findings on the mechanical properties demonstrate such treatments render PEEK well suited for use in orthopedic implantable devices.

History

Journal

ACS Applied Materials and Interfaces

Volume

7

Issue

41

Start page

23029

End page

23040

Total pages

12

Publisher

American Chemical Society

Place published

United States

Language

English

Copyright

© 2015 American Chemical Society

Former Identifier

2006057601

Esploro creation date

2020-06-22

Fedora creation date

2016-01-07

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