Hydroxyapatite-zirconia composite thin films showing improved mechanical properties and bioactivity

Citations

SCOPUS

1

초록

Nano-crystalline hydroxyapatite (HAp) films were formed at the Ti surface by a single-step microarc oxidation (MAO), and HAp-zirconia composite (HZC) films were obtained by subsequent chemical vapor deposition (CVD) of zirconia onto the HAp. Through the CVD process, zero- and one-dimensional zirconia nanostructures having tetragonal crystallinity (t-ZrO2) were uniformly distributed and well incorporated into the HAp crystal matrix to form nanoscale composites. In particular, (t-ZrO2) was synthesized at a very low temperature. The HZC films did not show secondary phases such as tricalcium phosphate (TCP) and tetracalcium phosphate (TTCP) at relatively high temperatures. The most likely mechanism for the formation of the t-ZrO2 and the pure HAp at the low processing temperature was proposed to be the diffusion of Ca2+ ions. The HZC films showed increasing micro-Vickers hardness values with increases in the t-ZrO2 content. The morphological features and phase compositions of the HZC films showed strong dependence on the time and temperature of the CVD process. Furthermore, they showed enhanced cell proliferation compared to the TiO2 and HAp films most likely due to the surface structure change.

키워드

Biomaterials; Hydroxyapatite; MTT assay; Zirconium dioxide; Composite thin films; Crystallinities; CVD process; Hap crystal; High temperature; Low processing temperature; Micro Vickers hardness; Microarc oxidation; Morphological features; MTT assay; Nano scale; Nanocrystallines; One-dimensional; Secondary phasis; Single-step; Tetracalcium phosphate; TiO; Tricalcium phosphates; Very low temperatures; Zirconium dioxide; Apatite; Bioceramics; Biological materials; Calcium; Cell membranes; Cell proliferation; Composite films; Hydroxyapatite; Mechanical properties; Processing; Surface structure; Vickers hardness; Zirconia; Zirconium; Zirconium alloys; Chemical vapor deposition
제목
Hydroxyapatite-zirconia composite thin films showing improved mechanical properties and bioactivity
저자
Kim M.-S.; Ryu J.-J.; Sung Y.-M.
DOI
10.3740/MRSK.2009.19.2.085
발행일
2009
유형
Article
저널명
한국재료학회지
권
19
호
2
페이지
85 ~ 89