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首页> 外文期刊>Applied Surface Science >Transformation of medical grade silicone rubber under Nd:YAG and excimer laser irradiation: First step towards a new miniaturized nerve electrode fabrication process
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Transformation of medical grade silicone rubber under Nd:YAG and excimer laser irradiation: First step towards a new miniaturized nerve electrode fabrication process

机译:Nd:YAG和准分子激光辐照下医用级硅橡胶的转变:迈向新的小型化神经电极制造工艺的第一步

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摘要

Medical grade silicone rubber, poly-dimethylsiloxane (PDMS) is a widely used biomaterial. Like for many polymers, its surface can be modified in order to change one or several of its properties which further allow this surface to be functionalized. Laser-induced surface modification of PDMS under ambient conditions is an easy and powerful method for the surface modification of PDMS without altering its bulk properties. In particular, we profit from both UV laser inducing surface modification and of UV laser micromachining to develop a first part of a new process aiming at increasing the number of contacts and tracks within the same electrode surface to improve the nerve selectivity of implantable self sizing spiral cuff electrodes. The second and last part of the process is to further immerse the engraved electrode in an autocatalytic Pt bath leading in a selective Pt metallization of the laser irradiated tracks and contacts and thus to a functionalized PDMS surface. In the present work, we describe the different physical and chemical transformations of a medical grade PDMS as a function of the UV laser and of the irradiation conditions used. We show that the ablation depths, chemical composition, structure and morphology vary with (i) the laser wavelength (using an excimer laser at 248 nm and a frequency-quadrupled Nd:YAG laser at 266 nm), (ii) the conditions of irradiation and (iii) the pulse duration. These different modified properties are expected to have a strong influence on the nucleation and growth rates of platinum which govern the adhesion and the thickness of the Pt layer on the electrodes and thus the DC resistance of tracks.
机译:医用级硅橡胶,聚二甲基硅氧烷(PDMS)是一种广泛使用的生物材料。像许多聚合物一样,可以对其表面进行修饰,以改变其一种或几种性能,从而进一步使该表面功能化。在环境条件下,激光诱导的PDMS表面改性是一种简便而强大的PDMS表面改性方法,无需改变其整体性能。尤其是,我们既受益于UV激光诱导的表面改性,也受益于UV激光微加工,以开发新工艺的第一部分,旨在增加同一电极表面内的触点和走线数量,以改善植入式自定尺寸螺旋的神经选择性袖带电极。该方法的第二个也是最后一个部分是将雕刻的电极进一步浸入自催化Pt浴中,从而导致激光照射的迹线和触点的选择性Pt金属化,从而到达功能化的PDMS表面。在当前的工作中,我们描述了医用级PDMS的不同物理和化学转化,它们是UV激光和所用照射条件的函数。我们显示消融深度,化学成分,结构和形态随(i)激光波长(使用248 nm的准分子激光器和266 nm的频率四倍的Nd:YAG激光器)变化,(ii)照射条件(iii)脉冲持续时间。预期这些不同的改性特性会对铂的成核和生长速率产生很大影响,而铂的成核和生长速率决定着电极上Pt层的附着力和厚度,进而决定了走线的直流电阻。

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  • 来源
    《Applied Surface Science》 |2009年第21期|8715-8721|共7页
  • 作者单位

    Universite des Sciences et Technologies de Lille (USTL), 59655 Villeneuve d'Ascq, France Laboratoire de Physique des Lasers, Atomes et Molecules (PhLAM), UMR CNRS 8523, Centre d'Etudes et de Recherches Lasers et Applications (CERLA), FR CNRS 2416, France;

    Universite des Sciences et Technologies de Lille (USTL), 59655 Villeneuve d'Ascq, France Laboratoire de Spectroscopie Infrarouge et Raman (LASIR), UMR CNRS 8516, Centre d'Etudes et de Recherches Lasers et Applications (CERLA), FR CNRS 2416, France;

    Universite des Sciences et Technologies de Lille (USTL), 59655 Villeneuve d'Ascq, France Laboratoire de Structures et Proprietes de VEtat Solide (LSPES), UMR CNRS 8008, France;

    Universite des Sciences et Technologies de Lille (USTL), 59655 Villeneuve d'Ascq, France Laboratoire de Spectroscopie Infrarouge et Raman (LASIR), UMR CNRS 8516, Centre d'Etudes et de Recherches Lasers et Applications (CERLA), FR CNRS 2416, France;

    Universite des Sciences et Technologies de Lille (USTL), 59655 Villeneuve d'Ascq, France Laboratoire de Physique des Lasers, Atomes et Molecules (PhLAM), UMR CNRS 8523, Centre d'Etudes et de Recherches Lasers et Applications (CERLA), FR CNRS 2416, France;

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

    poly-dimethylsiloxane; silicone rubber; irradiation and laser ablation; physical and chemical transformation;

    机译:聚二甲基硅氧烷硅橡胶;照射和激光烧蚀;物理和化学转化;

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