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在溅射 Ti/TiN 纳米多层膜上生物合成羟基磷灰石涂层及其在模拟体液中的腐蚀行为。

Biosynthesis of calcium hydroxylapatite coating on sputtered Ti/TiN nano multilayers and their corrosion behavior in simulated body solution.

机构信息

Central Electrochemical Research Institute, Karaikudi 630006, India.

出版信息

J Biomater Appl. 2012 Feb;26(6):687-705. doi: 10.1177/0885328210377534. Epub 2010 Sep 6.

Abstract

Titanium/titanium nitride (Ti/TiN) nanoscale multilayered films were deposited onto 316L stainless steel substrates by reactive magnetron sputtering using a Ti target. Coatings characterized by X-ray diffraction showed that the stack possesses centered cubic structure. The X-ray photoelectron spectroscopy survey spectra on the etched surfaces of the stack film on steel exhibited the characteristic Ti2p, N1s, and O1s peaks at the corresponding binding energies 454.5, 397.0, and 530.6 eV, respectively. Platelet adhesion experiments were carried out to examine the interaction between blood and the materials in vitro. The results indicated that the smoothness and lower isoelectric point contribute to better hemocompatibility of the Ti/TiN nanoscale multilayered coating. The biomediated synthesis of calcium hydroxylapatite (HA) was carried out on coated substrates using calcium-depositing bacteria. The observation of low corrosion current density (I(corr)) for the calcium HA-coated Ti/TiN specimens in simulated body fluid confirmed their highly resistive nature under the testing condition.

摘要

采用反应磁控溅射法,以 Ti 靶为溅射源,在 316L 不锈钢基底上沉积了 Ti/TiN 纳米多层膜。X 射线衍射分析表明,所制备的多层膜具有面心立方结构。X 射线光电子能谱对多层膜在钢基底上的刻蚀表面进行全扫描分析,结果表明,在相应的结合能 454.5、397.0 和 530.6 eV 处分别出现 Ti2p、N1s 和 O1s 的特征峰。利用血小板黏附实验,在体外研究了材料与血液之间的相互作用。结果表明,光滑的表面和较低的等电点有助于提高 Ti/TiN 纳米多层膜的血液相容性。采用具有成骨能力的钙沉积细菌在涂层基底上进行了钙羟基磷灰石(HA)的生物介导合成。在模拟体液中,对钙 HA 涂层的 Ti/TiN 样品的低腐蚀电流密度(Icorr)的观察证实了它们在测试条件下的高耐腐蚀性。

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