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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A new approach for additive-free room temperature sintering of conductive patterns using polymer-stabilized Sn nanoparticles
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A new approach for additive-free room temperature sintering of conductive patterns using polymer-stabilized Sn nanoparticles

机译:使用聚合物稳定的锡纳米粒子进行导体图案的无添加剂室温烧结的新方法

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摘要

Tin nanoparticles (Sn NPs) are of considerable interest for conductive printing because of their low melting temperature and low cost. In the present study, polyvinylpyrrolidone (PVP) stabilized metallic Sn NPs were synthesized by a polyol process and the size of Sn NPs was controlled from 15 to 89 nm by adjusting the amount of PVP. For the first time, we demonstrated that conductive patterns fabricated from the inks of metallic Sn NPs were achieved readily at room temperature under N-2 without reducing gases or additives. The lowest obtained resistivity was 1.1 x 10 (3) Omega cm, which was 100 times higher than that of bulk Sn. The size of Sn NPs, the amount of the stabilizing agent, and the low melting temperature of Sn NPs were found to be the main factors controlling the conductivity of the obtained Sn pattern in room temperature sintering. This study offers a new approach for the room temperature fabrication of conductive electronics using the printing technique.
机译:锡纳米颗粒(Sn NPs)的熔融温度低且成本低,因此对导电印刷引起了极大的关注。在本研究中,通过多元醇工艺合成了聚乙烯吡咯烷酮(PVP)稳定的金属Sn NP,并通过调节PVP的量将Sn NP的尺寸控制在15至89 nm之间。首次,我们证明了在室温下在N-2下,无需还原气体或添加剂即可轻松获得由金属Sn NPs油墨制成的导电图案。最低的电阻率为1.1 x 10(3)Ω厘米,是块状Sn的100倍。发现Sn NP的尺寸,稳定剂的量和Sn NP的低熔融温度是控制室温烧结中获得的Sn图案的导电性的主要因素。这项研究为使用印刷技术在室温下制造导电电子产品提供了一种新方法。

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