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在纸质基材上对喷墨打印的银纳米颗粒墨水进行选择性激光烧结,以实现高导电图案。

Selective laser sintering of inkjet-printed silver nanoparticle inks on paper substrates to achieve highly conductive patterns.

作者信息

Balliu Enkeleda, Andersson Henrik, Engholm Magnus, Öhlund Thomas, Nilsson Hans-Erik, Olin Håkan

机构信息

Mid Sweden University, Department of Electronics Design, Sundsvall, 851 70, Sweden.

Mid Sweden University, Department of Natural Sciences, Sundsvall, 851 70, Sweden.

出版信息

Sci Rep. 2018 Jul 10;8(1):10408. doi: 10.1038/s41598-018-28684-4.

Abstract

Development of cost-effective and environmentally friendly manufacturing methods will enable important advances for the production of large-scale flexible electronics. Laser processing has shown to be a promising candidate that offers a fast and non-destructive way to produce highly conductive patterns on flexible substrates such as plastics. However, an emerging option with a lower environmental impact is instead the use of cellulose-based flexible substrates, such as paper. In this work we investigate the use of laser sintering of silver nanoparticle inks, which were inkjet-printed on three different types of paper. Patterns with a high conductivity could be manufactured where a special care was taken to prevent the substrates from damage by the intense laser light. We found that the best results was obtained for a photopaper, with a conductivity of 1.63 ∗ 10 S/m corresponding to nearly 26% of the bulk silver conductivity. In addition, we demonstrate laser sintering to fabricate a fully functional near field communication tag printed on a photopaper. Our results can have an important bearing for the development of cost-effective and environmentally friendly production methods for flexible electronics on a large scale.

摘要

开发具有成本效益且环保的制造方法将推动大规模柔性电子产品生产取得重要进展。激光加工已被证明是一种很有前景的方法,它提供了一种快速且无损的方式,可在诸如塑料等柔性基板上制作高导电图案。然而,一种对环境影响较小的新兴选择是使用基于纤维素的柔性基板,如纸张。在这项工作中,我们研究了对喷墨打印在三种不同类型纸张上的银纳米颗粒墨水进行激光烧结。在特别注意防止基板被强激光损坏的情况下,可以制造出具有高导电性的图案。我们发现,对于相纸而言能获得最佳结果,其电导率为1.63×10 S/m,几乎相当于块状银电导率的26%。此外,我们展示了通过激光烧结在相纸上制作一个功能齐全的近场通信标签。我们的结果对于大规模柔性电子产品的经济高效且环保的生产方法的开发可能具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf0f/6039461/26d3f989a851/41598_2018_28684_Fig1_HTML.jpg

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