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Initial reactivity of rf magnetron sputtered calcium phosphate thin films in simulated body fluids

机译:射频磁控溅射磷酸钙薄膜在模拟体液中的初始反应性

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Radio frequency (rf) magnetron sputtering of calcium phosphate (CaP) is a promising technique to apply thin bioactive films on bulk implant materials. In this paper the interaction is studied of thin (similar to 100 nm) CaP films with Ca/P ratios ranging from 0.6 to 4.7, with simulated body fluids (SBFs) of different Ca and PO4 concentrations. Analysis of the thickness and composition of the coatings was done with ion beam analysis.Amorphous coatings of all compositions were found to dissolve in all meta-stable SBFs. For coatings with a Ca/P ratio of 1.6, dissolution was linear and congruent.By heat-treating the coatings for 30 min at 650 degrees C, coatings were crystallized. Crystallized coatings with a Ca/P ratio of 1.6 remain inert when immersed in SBF for days. When immersed in doubly concentrated SBF, after an induction period of 40-60 min where virtually no apposition of material is observed, a CaP precipitate is formed. After formation of these CaP crystals, continuous growth can proceed in SBFs with lower Ca and PO4 concentrations.During the induction period, CaP sediments were found on the coating surface. Their role remains unclear, but their presence seems to be correlated with the ability to grow a precipitate layer from the solution. Completion of the induction period is essential for growth of the precipitate. (c) 2004 Elsevier B.V. All rights reserved.
机译:磷酸钙(CaP)的射频(rf)磁控管溅射技术是在大块植入材料上应用生物活性薄膜的有前途的技术。本文研究了Ca / P比在0.6到4.7之间的CaP薄膜(类似于100 nm)与不同Ca和PO4浓度的模拟体液(SBFs)的相互作用。用离子束分析法对涂层的厚度和组成进行了分析,发现所有组成的非晶态涂层都溶解在所有亚稳定的SBF中。对于Ca / P比为1.6的涂层,溶出度是线性且一致的。通过在650摄氏度下将涂层热处理30分钟,使涂层结晶。 Ca / P比为1.6的结晶涂层在SBF中浸泡几天后仍保持惰性。当浸入到双重浓缩的SBF中时,在40-60分钟的诱导期后,几乎没有观察到材料的沉积,形成了CaP沉淀。这些CaP晶体形成后,可以在Ca和PO4浓度较低的SBF中连续生长。在诱导期间,在涂层表面发现了CaP沉积物。它们的作用仍然不清楚,但是它们的存在似乎与从溶液中生长沉淀层的能力有关。诱导期的完成对于沉淀物的生长至关重要。 (c)2004 Elsevier B.V.保留所有权利。

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