Nickel release behavior and surface characteristics of porous NiTi shape memory alloy modified by different chemical processes — Shuilin Wu (2008) | RDL Network
Nickel release behavior and surface characteristics of porous NiTi shape memory alloy modified by different chemical processes
Article 2008 en
Authors
SW
Shuilin Wu
XL
Xiangmei Liu
YC
Yuki Chan
Abstract
1 min read
As a non-line-of-sight surface modification technique, chemical treatment is an effective method to treat porous NiTi with complex surface morphologies and large exposed areas due to its liquidity and low temperature. In the work described here, three different chemical processes are used to treat porous NiTi alloys. Our results show that H(2)O(2) treatment, NaOH treatment, and H(2)O(2) pre-treatment plus subsequent NaOH treatment can mitigate leaching of nickel from the alloy. The porous NiTi samples modified by the two latter processes favor deposition of a layer composed of Ca and P due to the formation of bioactive Na(2)TiO(3) on the surface. Among the three processes, H(2)O(2) pre-treatment plus subsequent NaOH modification is the most effective in suppressing nickel release. Small area X-ray photoelectron spectroscopy reveals that the surfaces treated by different chemical processes have different structures and compositions. The sample modified by the H(2)O(2) treatment is composed of rough TiO(2) on the outer surface and an oxide transition layer underneath whereas the sample treated by NaOH comprises a surface layer of titanium oxide and Na(2)TiO(3) together with a transition layer. The sample processed by the H(2)O(2) and NaOH treatment has a pure Na(2)TiO(3) layer on the surface and a transition layer underneath. These results help to elucidate the different nickel release behavior and bioactivity of porous NiTi alloys processed by different methods.
Shuilin Wu, Xiangmei Liu, Tao Hu, Jiang Jiang, Paul Kim Ho Chu, Kwk Yeung, C.Y. Chung, Chenglin Chu, Zushun Xu, William W. Lu, Kmc Cheung, K. D. K. Luk
Discussion(0)
No comments yet. Be the first to comment.