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首页> 外文期刊>Applied Surface Science >Laser-induced scanning transfer deposition of silver electrodes on glass surfaces: A green and scalable technology
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Laser-induced scanning transfer deposition of silver electrodes on glass surfaces: A green and scalable technology

机译:玻璃表面上的光电极激光诱导的扫描转移沉积:绿色和可扩展技术

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摘要

A pulsed laser ablation backwriting technique with high repetitive rates is implemented for the fabrication of silver coatings on glass surfaces. This method enables geometrical constraint-free deposition of metallic coatings. These exhibit sufficiently low electrical resistance to be used as electrodes in dielectric barrier discharge (DBD) plasma elements. Ambient air deposition of metallic silver electrodes on standard glass slides is explored using a sub-ns UV laser source, combined with hybrid beam scanning methods. The green nature of the overall deposition process includes a preliminary irradiation scan to homogenise the target surface before the subsequent backwriting step. Metal transfer is achieved by combining two phenomena within a simple beam scanning process: LIRT (laser-induced reverse transfer) of silver from the target to the glass, with a partial and secondary LIFT (Laser-Induced Forward Transfer) of silver from the glass to the target. Appropriate selection of pulse energy and pulse repetition rates, beam scanning velocities and target motion enable the growth of sufficiently thick Ag deposits on glass with the required low electrical resistivity and nearly 2D constraint-free geometry. This method avoids the use of vacuum and liquids, resulting in a cheap, facile and green methodology for the deposition of silver electrodes onto transparent substrate surfaces.
机译:利用具有高重复速率的脉冲激光消融答案技术用于在玻璃表面上制造银涂层。该方法使得可以对金属涂层的无几何限制性沉积。这些具有足够低的电阻以用作介电阻挡放电(DBD)等离子体元件中的电极。使用子NS UV激光源探索标准玻璃载玻片上金属银电极的环境空气沉积,与混合束扫描方法组合。整体沉积过程的绿色性质包括初步辐射扫描,以在随后的备写步骤之前使目标表面均匀化。通过在简单的光束扫描过程中组合两个现象来实现金属转移:从靶向玻璃的银色(激光诱导的反向转移),具有来自玻璃的局部和次级升力(激光诱导的前转移)银到目标。 Appropriate selection of pulse energy and pulse repetition rates, beam scanning velocities and target motion enable the growth of sufficiently thick Ag deposits on glass with the required low electrical resistivity and nearly 2D constraint-free geometry.该方法避免了使用真空和液体,从而使银电极沉积在透明基板表面上的廉价,容易和绿色的方法。

著录项

  • 来源
    《Applied Surface Science》 |2021年第1期|149673.1-149673.10|共10页
  • 作者单位

    IQAC-CSIC 08034 Barcelona Spain;

    Karadeniz Technical University 61080 Ortahisar/Trabzon Turkey|INMA (CSIC-Universidad de Zaragoza) c/ María de Luna 3 50018 Zaragoza Spain;

    INMA (CSIC-Universidad de Zaragoza) c/ María de Luna 3 50018 Zaragoza Spain;

    INMA (CSIC-Universidad de Zaragoza) c/ María de Luna 3 50018 Zaragoza Spain;

    ICMS (CSIC-Universidad de Sevilla) c/Américo Vespucio 49 41092 Sevilla Spain;

    ICMS (CSIC-Universidad de Sevilla) c/Américo Vespucio 49 41092 Sevilla Spain;

    ICMS (CSIC-Universidad de Sevilla) c/Américo Vespucio 49 41092 Sevilla Spain;

    INMA (CSIC-Universidad de Zaragoza) c/ María de Luna 3 50018 Zaragoza Spain;

    INMA (CSIC-Universidad de Zaragoza) c/ María de Luna 3 50018 Zaragoza Spain;

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

    DBD; Glass; Laser ablation; LIRT; Metallization;

    机译:DBD;玻璃;激光烧蚀;LIRT;金属化;

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