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用于喷墨打印柔性电子的单分散银纳米粒子的合成。

Synthesis of monodisperse silver nanoparticles for ink-jet printed flexible electronics.

机构信息

Beijing National Laboratory for Molecular Sciences (BNLMS), Key Lab of Organic Solids, Laboratory of New Materials, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

出版信息

Nanotechnology. 2011 Oct 21;22(42):425601. doi: 10.1088/0957-4484/22/42/425601. Epub 2011 Sep 22.

Abstract

In this study, monodisperse silver nanoparticles were synthesized with a new reduction system consisting of adipoyl hydrazide and dextrose at ambient temperature. By this facile and rapid approach, high concentration monodisperse silver nanoparticles were obtained on a large scale at low protectant/AgNO(3) mass ratio which was highly beneficial to low cost and high conductivity. Based on the synthesized monodisperse silver nanoparticles, conductive inks were prepared with water, ethanol and ethylene glycol as solvents, and were expected to be more environmentally friendly. A series of electrocircuits were fabricated by ink-jet printing silver nanoparticle ink on paper substrate with a commercial printer, and they had low resistivity in the range of 9.18 × 10( - 8)-8.76 × 10( - 8) Ω m after thermal treatment at 160 °C for 30 min, which was about five times that of bulk silver (1.586 × 10( - 8) Ω m). Moreover, a radio frequency identification (RFID) antenna was fabricated by ink-jet printing, and 6 m wireless identification was realized after an Alien higgs-3 chip was mounted on the printed antenna by the flip-chip method. These flexible electrocircuits produced by ink-jet printing would have enormous potential for low cost electrodes and sensor devices.

摘要

在这项研究中,通过一种新的还原体系(由己二酰肼和葡萄糖组成)在环境温度下合成了单分散银纳米粒子。通过这种简单快速的方法,在低保护剂/AgNO3 质量比下大规模获得了高浓度的单分散银纳米粒子,这非常有利于降低成本和提高导电性。基于合成的单分散银纳米粒子,用水、乙醇和乙二醇作为溶剂制备了导电油墨,有望更加环保。通过商业打印机在纸基上喷墨打印银纳米粒子油墨,制备了一系列电电路,经 160°C 热处理 30 分钟后,其电阻率在 9.18×10(-8) -8.76×10(-8) Ω m 范围内,约为块状银的五倍(1.586×10(-8) Ω m)。此外,通过喷墨打印制作了一个射频识别(RFID)天线,在印刷天线上通过倒装芯片法安装 Alien higgs-3 芯片后,实现了 6 m 的无线识别。通过喷墨打印制作的这些柔性电路在低成本电极和传感器设备方面具有巨大的潜力。

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