首页> 外文期刊>Analytical and Bioanalytical Chemistry >Advanced surface characterization of silver nanocluster segregation in Ag–TiCN bioactive coatings by RBS, GDOES, and ARXPS
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Advanced surface characterization of silver nanocluster segregation in Ag–TiCN bioactive coatings by RBS, GDOES, and ARXPS

机译:RBS,GDOES和ARXPS对Ag-TiCN生物活性涂层中银纳米团簇的分离进行了先进的表面表征

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摘要

Surface modification by means of wear protective and antibacterial coatings represents, nowadays, a crucial challenge in the biomaterials field in order to enhance the lifetime of bio-devices. It is possible to tailor the properties of the material by using an appropriate combination of high wear resistance (e.g., nitride or carbide coatings) and biocide agents (e.g., noble metals as silver) to fulfill its final application. This behavior is controlled at last by the outmost surface of the coating. Therefore, the analytical characterization of these new materials requires high-resolution analytical techniques able to provide information about surface and depth composition down to the nanometric level. Among these techniques are Rutherford backscattering spectrometry (RBS), glow discharge optical emission spectroscopy (GDOES), and angle resolved X-ray photoelectron spectroscopy (ARXPS). In this work, we present a comparative RBS–GDOES–ARXPS study of the surface characterization of Ag–TiCN coatings with Ag/Ti atomic ratios varying from 0 to 1.49, deposited at room temperature and 200 °C. RBS analysis allowed a precise quantification of the silver content along the coating with a non-uniform Ag depth distribution for the samples with higher Ag content. GDOES surface profiling revealed that the samples with higher Ag content as well as the samples deposited at 200 °C showed an ultrathin (1–10 nm) Ag-rich layer on the coating surface followed by a silver depletion zone (20–30 nm), being the thickness of both layers enhanced with Ag content and deposition temperature. ARXPS analysis confirmed these observations after applying general algorithm involving regularization in addition to singular value decomposition techniques to obtain the concentration depth profiles. Finally, ARXPS measurements were used to provide further information on the surface morphology of the samples obtaining an excellent agreement with SEM observations when a growth model of silver islands with a height d = 1.5 nm and coverage θ = 0.20 was applied to the sample with Ag/Ti = 1.49 and deposited at room temperature.
机译:如今,通过耐磨和抗菌涂层进行表面改性是生物材料领域中至关重要的挑战,以延长生物设备的使用寿命。通过使用高耐磨性(例如,氮化物或碳化物涂层)和杀生物剂(例如,贵金属如银)的适当组合来调整材料的性能,以实现其最终应用。该行为最后由涂层的最外表面控制。因此,这些新材料的分析表征需要高分辨率的分析技术,该技术必须能够提供有关纳米级表面和深度成分的信息。这些技术包括卢瑟福背散射光谱(RBS),辉光放电光发射光谱(GDOES)和角分辨X射线光电子能谱(ARXPS)。在这项工作中,我们对RBS–GDOES–ARXPS进行了比较研究,研究了在室温和200°C沉积的Ag / Ti原子比从0到1.49的Ag-TiCN涂层的表面特性。通过RBS分析,可以对具有较高Ag含量的样品进行精确的沿镀层的银含量定量,且Ag深度分布不均匀。 GDOES表面分析表明,具有较高Ag含量的样品以及200°C沉积的样品在涂层表面均显示出超薄(1-10 nm)富Ag层,其后是银耗尽区(20-30 nm) ,是两层的厚度随Ag含量和沉积温度而增加。 ARXPS分析在应用除奇异值分解技术之外的涉及正则化的通用算法以获得浓度深度曲线后,证实了这些观察结果。最后,当将具有d = 1.5nm和覆盖角θ= 0.20的银岛生长模型应用于含Ag的样品时,使用ARXPS测量来提供有关样品表面形态的更多信息,从而获得与SEM观察的极佳一致性/Ti=1.49,并在室温下沉积。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2013年第19期|6259-6269|共11页
  • 作者单位

    Instituto de Ciencia de Materiales de Madrid (ICMM–CSIC)">(1);

    GRF–CFUM Physics Department University of Minho">(2);

    SEG–CEMUC Department of Mechanical Engineering University of Coimbra">(3);

    Departamento de Física Aplicada (CXII) Universidad Autónoma de Madrid">(4);

    GRF–CFUM Physics Department University of Minho">(2);

    SEG–CEMUC Department of Mechanical Engineering University of Coimbra">(3);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ag–TiCN; Surface characterization; SEM; RBS; GDOES; ARXPS;

    机译:银-钛表面表征;扫描电镜苏格兰皇家银行;GDOES;ARXPS;

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