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Formation of OTS self-assembled monolayers at chemically treated titanium surfaces

机译:在经过化学处理的钛表面上形成OTS自组装单层

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摘要

Enhanced biocompatibility of titanium implants highly depends on the possibility of achieving high degrees of surface functionalization for a low immune response and/or enhanced mineralization of bioactive minerals, such as hydroxyapatite. In this respect, surface modification with Self Assembled Monolayers (SAMs) has a great potential in delivering artificial surfaces of improved biocompatibility. Herein, the effectiveness of common chemical pre-treatments, i.e. hydrogen peroxide (H_2O_2) and Piranha (H_2SO_4 + H_2O_2), in facilitating surface decontamination and hydroxylation of titanium surfaces to promote further surface functionalization by SAMs is investigated. The quality of the octadecyltrichlorosilane (OTS) based SAM appeared to strongly depend upon the surface morphology, the density and nature of surface hydroxyl sites resulting from the oxidative pre-treatments. Contrary to common belief, no further hydroxylation of the titanium substrate was observed after the selected chemical pre-treatments, but the number of hydroxyl groups available on the surface was decreased as a result of the formation of a titanium oxide layer with a gel-type structure. Further examinations by atomic force microscopy, infrared spectroscopy and X-ray photoelectron spectroscopy also revealed that mild oxidizing conditions were sufficient to remove surface contamination without detrimental effects on surface hydroxylation state and surface roughness. Furthermore, the adsorption of the alkylsiloxane molecules forming the SAM film is believed to proceed through hydrolysis at surface acidic hydroxyl groups rather than randomly. This site dependent adsorption process has significant implications for further functionalization of titanium based implants. It also highlights the difficulty of achieving an OTS based SAM at the surface of titanium and question the quality of SAMs reported at titanium surfaces so far.
机译:钛植入物的增强的生物相容性高度依赖于实现高度表面功能化以降低免疫应答和/或增强生物活性矿物质(例如羟基磷灰石)矿化的可能性。在这方面,用自组装单分子膜(SAMs)进行表面修饰在交付生物相容性得到改善的人造表面方面具有巨大潜力。在此,研究了常用的化学预处理方法,即过氧化氢(H_2O_2)和食人鱼(H_2SO_4 + H_2O_2)在促进钛表面的表面去污和羟基化以促进SAMs进一步表面官能化方面的有效性。基于十八烷基三氯硅烷(OTS)的SAM的质量似乎在很大程度上取决于表面形态,氧化预处理产生的表面羟基的密度和性质。与通常的看法相反,在选择的化学预处理后,未观察到钛基材的进一步羟基化,但是由于形成了凝胶型氧化钛层,表面上可利用的羟基数量减少了结构体。通过原子力显微镜,红外光谱和X射线光电子能谱的进一步检查还显示,温和的氧化条件足以去除表面污染,而对表面羟基化状态和表面粗糙度无不利影响。此外,据信形成SAM膜的烷基硅氧烷分子的吸附是通过在表面酸性羟基上的水解而不是无规进行的。这种取决于位置的吸附过程对于钛基植入物的进一步功能化具有重要意义。它还强调了在钛表面获得基于OTS的SAM的困难,并质疑迄今为止在钛表面报道的SAM的质量。

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  • 来源
    《Journal of materials science》 |2011年第8期|p.1813-1824|共12页
  • 作者

    E. Ajami; K.-F. Aguey-Zinsou;

  • 作者单位

    School of Engineering and Materials Science, Queen Mary, University of London, London El 4NS, UK;

    School of Engineering and Materials Science, Queen Mary, University of London, London El 4NS, UK School of Chemical Engineering, The University of New South Wales, Sydney, NSW 2052, Australia;

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