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Micropatterning of Metal Nanoparticle Ink by Laser-Induced Thermocapillary Flow

机译:激光诱导的热毛细流对金属纳米颗粒油墨的微图案化

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摘要

Selective laser sintering of metal nanoparticle ink is a low-temperature and non-vacuum technique developed for the fabrication of patterned metal layer on arbitrary substrates, but its application to a metal layer composed of large metal area with small voids is very much limited due to the increase in scanning time proportional to the metal pattern density. For the facile manufacturing of such metal layer, we introduce micropatterning of metal nanoparticle ink based on laser-induced thermocapillary flow as a complementary process to the previous selective laser sintering process for metal nanoparticle ink. By harnessing the shear flow of the solvent at large temperature gradient, the metal nanoparticles are selectively pushed away from the scanning path to create metal nanoparticle free trenches. These trenches are confirmed to be stable even after the complete process owing to the presence of the accompanying ridges as well as the bump created along the scanning path. As a representative example of a metal layer with large metal area and small voids, dark-field photomask with Alphabetic letters are firstly created by the proposed method and it is then demonstrated that the corresponding letters can be successfully reproduced on the screen by an achromatic lens.
机译:金属纳米粒子油墨的选择性激光烧结是一种低温,无真空的技术,用于在任意基板上制造带图案的金属层,但是由于以下原因,其在由大面积金属和小空隙组成的金属层中的应用受到很大限制扫描时间的增加与金属图案密度成正比。为了方便地制造这种金属层,我们引入了基于激光诱导的热毛细管流的金属纳米颗粒油墨的微图案化,作为对先前对金属纳米颗粒油墨进行选择性激光烧结工艺的补充过程。通过在较大的温度梯度下利用溶剂的剪切流,将金属纳米颗粒有选择地推离扫描路径,以形成无金属纳米颗粒的沟槽。由于存在伴随的脊以及沿着扫描路径产生的凸起,即使在整个过程之后,这些沟槽也被证实是稳定的。作为具有大的金属面积和小的空隙的金属层的代表性示例,通过所提出的方法首先创建了具有字母字母的暗视场光掩模,然后证明了消色差透镜可以在屏幕上成功地复制相应的字母。 。

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