Li Hongke, Zhu Xiaoyang, Li Zhenghao, Yang Jianjun, Lan Hongbo
Shandong Engineering Research Center for Additive Manufacturing, Qingdao University of Technology, Qingdao 266520, China.
Nanomaterials (Basel). 2020 Jan 5;10(1):107. doi: 10.3390/nano10010107.
Nano-silver paste, as an important basic material for manufacturing thick film components, ultra-fine circuits, and transparent conductive films, has been widely used in various fields of electronics. Here, aiming at the shortcomings of the existing nano-silver paste in printing technology and the problem that the existing printing technology cannot achieve the printing of high viscosity, high solid content nano-silver paste, a nano-silver paste suitable for electric-field-driven (EFD) micro-scale 3D printing is developed. The result shows that there is no oxidation and settlement agglomeration of nano-silver paste with a storage time of over six months, which indicates that it has good dispersibility. We focus on the printing process parameters, sintering process, and electrical conductivity of nano-silver paste. The properties of the nano-silver paste were analyzed and the feasibility and practicability of the prepared nano-silver paste in EFD micro-scale 3D printing technology were verified. The experiment results indicate that the printed silver mesh which can act as transparent electrodes shows high conductivity (1.48 Ω/sq) and excellent transmittance (82.88%). The practical viability of the prepared nano-silver paste is successfully demonstrated with a deicing test. Additionally, the experimental results show that the prepared silver mesh has excellent heating properties, which can be used as transparent heaters.
纳米银浆作为制造厚膜元件、超细电路和透明导电膜的重要基础材料,已广泛应用于电子领域的各个方面。在此,针对现有纳米银浆在印刷技术方面的不足以及现有印刷技术无法实现高粘度、高固含量纳米银浆印刷的问题,开发了一种适用于电场驱动(EFD)微尺度3D打印的纳米银浆。结果表明,储存时间超过六个月的纳米银浆没有氧化和沉降团聚现象,这表明其具有良好的分散性。我们重点研究了纳米银浆的印刷工艺参数、烧结工艺和电导率。分析了纳米银浆的性能,验证了所制备的纳米银浆在EFD微尺度3D打印技术中的可行性和实用性。实验结果表明,用作透明电极的印刷银网具有高电导率(1.48Ω/sq)和优异的透光率(82.88%)。通过除冰测试成功证明了所制备的纳米银浆的实际可行性。此外,实验结果表明,所制备的银网具有优异的加热性能,可作为透明加热器使用。