Effect of dual ion implantation of calcium and phosphorus on the properties of titanium.

Abstract:

:This study is concerned with the effect of dual implantation of calcium and phosphorus upon the structure, corrosion resistance and biocompatibility of titanium. The ions were implanted in sequence, first Ca and then P, both at a dose of 10(17) ions/cm2 at a beam energy of 25 keV. Transmission electron microscopy was used to investigate the microstructure of the implanted layer. The chemical composition of the implanted layer was examined by XPS and SIMS. The corrosion resistance was determined by electrochemical methods in a simulated body fluid (SBF) at a temperature of 37 degrees C. The biocompatibility tests were performed in vitro in a culture of human-derived bone cells (HDBC) in contact with the tested materials. The viability of the cells was determined by an XTT assay and their activity by the measurements of the alkaline phosphatase activity in contact with implanted and non-implanted titanium samples. The in vitro examinations confirmed that, under the conditions prevailing during the experiments, the biocompatibility of Ca + P ion-implanted titanium was satisfactory. TEM results show that the surface layer formed by the Ca + P implantation is amorphous. The corrosion resistance of titanium, examined by the electrochemical methods, appeared to be increased after the Ca + P ion implantation.

journal_name

Biomaterials

journal_title

Biomaterials

authors

Krupa D,Baszkiewicz J,Kozubowski JA,Barcz A,Sobczak JW,Biliński A,Lewandowska-Szumieł M,Rajchel B

doi

10.1016/j.biomaterials.2004.08.015

keywords:

subject

Has Abstract

pub_date

2005-06-01 00:00:00

pages

2847-56

issue

16

eissn

0142-9612

issn

1878-5905

pii

S0142-9612(04)00764-1

journal_volume

26

pub_type

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