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通过在低温烧结下修饰已形成的银颗粒来提高银纳米线墨水的导电性。

Conductivity enhancement of Ag nanowire ink by decoratingformed Ag particles under low-temperature sintering.

作者信息

Feng Junyan, Xing Bo, Xu Jiahao

机构信息

College of Mechanical and Electronic Engineering, Jiaxing NanHu University, Jiaxing 314001, People's Republic of China.

College of Information Science and Engineering, Jiaxing University, Jiaxing 314001, People's Republic of China.

出版信息

Nanotechnology. 2024 Feb 9;35(17). doi: 10.1088/1361-6528/ad21a4.

Abstract

Silver nanowires (AgNWs) have attractive applications in the fabrication of flexible electronics because of their adequate electrical conductivity, mechanical properties, and oxidation resistance. However, the film produced by AgNW ink needs to be sintered at temperatures above 200 °C to obtain high electrical conductivity, which is incompatible with commonly used flexible substrates such as paper or polymer materials. In this study, the AgNW network was decorated byreduced Ag particles (AgPs) to improve the structural integrity and conductivity of the film. After sintering at 80 °C, the pores and voids within the AgNW network were filled with Ag particles smaller than 200 nm, and the porosity of the film was markedly reduced. The lowest resistivity value was 3.9 × 10Ω cm after sintering at 100 °C, only 10.8% and 8.5% of the resistivity values of the films produced from AgNW and ion inks, respectively. During sintering, Ag nucleated on the surface of AgNWs, and its growth and agglomeration resulted in interconnections between the AgNWs and Ag particles. Thereafter, the bridging and filling effect of the Ag particles facilitated the formation of a compact and firm network, improving the film conductivity. The line film printed from the composite ink with 10 layers exhibited a low resistivity of 7.3 × 10Ω·m. Even after 5000 bending cycles, the resistivity of the line only increased by 4.47 × 10Ω·cm from the initial value. The composite ink reported in this study is a promising candidate for the low-cost printing of ultralow-power-consumption wearable electronic devices.

摘要

银纳米线(AgNWs)因其具有足够的导电性、机械性能和抗氧化性,在柔性电子器件制造中具有诱人的应用前景。然而,由AgNW油墨制成的薄膜需要在200℃以上的温度下烧结才能获得高导电性,这与纸或聚合物材料等常用柔性基板不相容。在本研究中,通过还原银颗粒(AgPs)对AgNW网络进行修饰,以改善薄膜的结构完整性和导电性。在80℃烧结后,AgNW网络内的孔隙和空隙被小于200nm的银颗粒填充,薄膜的孔隙率显著降低。在100℃烧结后,最低电阻率值为3.9×10Ω·cm,分别仅为AgNW和离子油墨制成薄膜电阻率值的10.8%和8.5%。在烧结过程中,Ag在AgNWs表面成核,其生长和团聚导致AgNWs与Ag颗粒之间形成互连。此后,Ag颗粒的桥接和填充作用促进了致密且牢固网络的形成,提高了薄膜的导电性。由10层复合油墨印刷的线条薄膜表现出7.3×10Ω·m的低电阻率。即使经过5000次弯曲循环,线条的电阻率仅比初始值增加了4.47×10Ω·cm。本研究报道的复合油墨是低成本印刷超低功耗可穿戴电子设备的有前途的候选材料。

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