Gu Weibing, Yuan Wei, Zhong Tao, Wu Xinzhou, Zhou Chunshan, Lin Jian, Cui Zheng
University of Chinese Academy of Sciences China.
Printable Electronics Research Centre, Suzhou Institute of Nanotech and Nano-bionics, Chinese Academy of Sciences(SINANO) Suzhou China 215123
RSC Adv. 2018 Aug 28;8(53):30215-30222. doi: 10.1039/c8ra04468f. eCollection 2018 Aug 24.
Near infrared(NIR) sintering technology is a photonic sintering approach for metal nanoparticle inks, which can selectively sinter metal nanoparticle inks more quickly and efficiently, and it is also compatible with high-throughput manufacturing processes. In this paper, silver nanoparticle (AgNP) ink sintered by near infrared light at a peak wavelength of 1100 nm was investigated. After only 8 seconds of exposure to NIR irradiation, resistivity of 2.78 μΩ cm was achieved for thin films printed with AgNP ink, which was only 1.7-fold higher than that of bulk silver (1.59 μΩ cm). The structure of the sintered silver film was examined by sintering printed silver nanoparticle ink samples having different thicknesses, and the results showed that AgNPs were homogeneously coalesced throughout the cross-sections of films, indicating the formation of dense silver layers. Furthermore, the morphology and electrical resistivity of the sintered AgNP film dried by NIR were compared with those of the film dried on a hot plate. It was found that drying conditions with a relatively long drying time rather than the drying temperature contributed to the reduction of voids in the film and to the improvement in its density and electrical performance. Finally, a flexible hybrid circuit integrated with a microcontroller chip on a poly(ethylene terephthalate)(PET) substrate was fabricated by screen printing with AgNP ink for interconnects, and its surface roughness and flexibility were investigated.
近红外(NIR)烧结技术是一种用于金属纳米颗粒油墨的光子烧结方法,它可以更快速、高效地选择性烧结金属纳米颗粒油墨,并且还与高通量制造工艺兼容。本文研究了在1100 nm峰值波长的近红外光下烧结的银纳米颗粒(AgNP)油墨。在用AgNP油墨印刷的薄膜中,仅经过8秒的近红外辐射曝光,就实现了2.78 μΩ·cm的电阻率,这仅比块状银(1.59 μΩ·cm)高1.7倍。通过烧结具有不同厚度的印刷银纳米颗粒油墨样品来检查烧结银膜的结构,结果表明AgNP在整个膜的横截面上均匀聚结,表明形成了致密的银层。此外,将通过近红外干燥的烧结AgNP膜的形态和电阻率与在热板上干燥的膜进行了比较。发现具有相对较长干燥时间而非干燥温度的干燥条件有助于减少膜中的空隙并改善其密度和电性能。最后,通过用AgNP油墨进行丝网印刷以实现互连,在聚对苯二甲酸乙二酯(PET)基板上制造了集成有微控制器芯片的柔性混合电路,并研究了其表面粗糙度和柔韧性。