Controlled deposition of plasma activated coatings on zirconium substrates

B. Akhavan, M. Bilek
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引用次数: 4

Abstract

Zirconium-based alloys are promising materials for orthopedic prostheses due to their low toxicity, superb corrosion resistivity, and favorable mechanical properties. The integration of such bio-implantable devices with local host tissues can strongly be improved by the development of a plasma polymerized acetylene and nitrogen (PPAN) that immobilizes bio-active molecules. The surface chemistry of PPAN is critically important as it plays a key role in affecting the surface free energy that alters the functionality of bio-active molecules at the surface. The cross-linking degree of PPAN is another key property that directly influences the water-permeability and thus also the stability of films in aqueous media. In this study we demonstrate that by simply tuning the zirconium bias voltage, control over the surface chemistry and cross-linking degree of PANN is achieved.
等离子体活化涂层在锆基体上的受控沉积
锆基合金具有低毒性、优异的耐蚀性和良好的力学性能,是一种很有前途的骨科修复材料。通过等离子体聚合乙炔和氮(PPAN)的发展,固定化生物活性分子,可以大大改善这种生物植入装置与局部宿主组织的整合。PPAN的表面化学非常重要,因为它在影响表面自由能方面起着关键作用,而表面自由能会改变生物活性分子的功能。PPAN的交联度是直接影响膜在水介质中的透水性和稳定性的另一个关键性能。在这项研究中,我们证明了通过简单地调整锆偏置电压,可以实现对聚丙烯腈表面化学和交联度的控制。
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