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快速激光打印纸基多层电路。

Rapid Laser Printing of Paper-Based Multilayer Circuits.

机构信息

Technical Institute of Physics and Chemistry, Chinese Academy of Sciences , No. 29 Zhongguancun East Road, Beijing 100190, P. R. China.

College of Aerospace Engineering, Chongqing University , Chongqing 400044, China.

出版信息

ACS Nano. 2016 Sep 27;10(9):8895-903. doi: 10.1021/acsnano.6b04830. Epub 2016 Sep 12.

Abstract

Laser printing has been widely used in daily life, and the fabricating process is highly efficient and mask-free. Here we propose a laser printing process for the rapid fabrication of paper-based multilayer circuits. It does not require wetting of the paper, which is more competitive in manufacturing paper-based circuits compared to conventional liquid printing process. In the laser printed circuits, silver nanowires (Ag-NWs) are used as conducting material for their excellent electrical and mechanical properties. By repeating the printing process, multilayer three-dimensional (3D) structured circuits can be obtained, which is quite significant for complex circuit applications. In particular, the performance of the printed circuits can be exactly controlled by varying the process parameters including Ag-NW content and laminating temperature, which offers a great opportunity for rapid prototyping of customized products with designed properties. A paper-based high-frequency radio frequency identification (RFID) label with optimized performance is successfully demonstrated. By adjusting the laminating temperature to 180 °C and the top-layer Ag-NW areal density to 0.3 mg cm(-2), the printed RFID antenna can be conjugately matched with the chip, and a big reading range of ∼12.3 cm with about 2.0 cm over that of the commercial etched Al antenna is achieved. This work provides a promising approach for fast and quality-controlled fabrication of multilayer circuits on common paper and may be enlightening for development of paper-based devices.

摘要

激光打印已广泛应用于日常生活中,其制造工艺高效且无需掩模。在这里,我们提出了一种激光打印工艺,用于快速制造基于纸张的多层电路。与传统的液体打印工艺相比,该工艺不需要纸张润湿,因此在制造基于纸张的电路方面更具竞争力。在激光打印的电路中,银纳米线 (Ag-NWs) 被用作导电材料,因为它们具有出色的电性能和机械性能。通过重复打印过程,可以获得多层三维 (3D) 结构电路,这对于复杂电路应用非常重要。特别是,通过改变 Ag-NW 含量和层压温度等工艺参数,可以精确控制打印电路的性能,这为具有设计性能的定制产品的快速原型制作提供了绝佳机会。我们成功演示了一种具有优化性能的基于纸张的高频射频识别 (RFID) 标签。通过将层压温度调整到 180°C 并将顶层 Ag-NW 的面密度调整到 0.3 mg cm(-2),可以使打印的 RFID 天线与芯片共轭匹配,并实现约 12.3cm 的大读取范围,比商用蚀刻 Al 天线的读取范围大约 2.0cm。这项工作为在普通纸张上快速且质量可控地制造多层电路提供了一种有前途的方法,可能为基于纸张的设备的发展提供启示。

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