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Synthesis of submicron sized silver powder for metal deposition via laser sintered inkjet printing

机译:通过激光烧结喷墨印刷合成用于金属沉积的亚微米级银粉

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摘要

Submicron sized silver powder was prepared from AgNO_3 using a chemical-reduction method. A spherical silver power exhibiting an average particle size distribution of 0.2-0.4 μm and an excellent dispersibility was achieved and applied to the inkjet printing process. A drop-on-demand (DOD) inkjetting system was used to print the silver particles suspended in a terpineol solvent. Through sintering at 300 °C, the size of the particles adjacent to the borderline of droplets were gradually increased and necking was observed between the droplets. Alternatively, the substrate for the particles could be heated to a lower temperature, and the sintering process of the conducting line was completed by the application of a laser beam. Increase in the laser power reduces the resistivity of the line. Through microstructure analysis, the necks between droplets were sintered at a specific energy density (ψ = 0.0398 J mm~-3). The conducting lines were soldered and of a larger aggregation, between which a discontinuous micro-crack was observed. This was attributed to the surface tension effect and shrinkage during solidification. Influence of the densification parameters on resistivity was significant.
机译:使用化学还原法从AgNO_3制备亚微米级的银粉。呈现出平均粒度分布为0.2-0.4μm且具有优异的分散性的球形银粉,并将其应用于喷墨印刷工艺。按需滴注(DOD)喷墨系统用于打印悬浮在松油醇溶剂中的银颗粒。通过在300℃下烧结,与液滴的边界线相邻的颗粒的尺寸逐渐增大,并且在液滴之间观察到颈缩。或者,可以将用于颗粒的基材加热至较低的温度,并且通过施加激光束来完成导线的烧结过程。激光功率的增加会降低线的电阻率。通过微结构分析,以特定的能量密度(ψ= 0.0398 J mm〜-3)烧结液滴之间的颈。导线被焊接并具有较大的聚集,在它们之间观察到不连续的微裂纹。这归因于表面张力效应和凝固过程中的收缩。致密化参数对电阻率的影响很大。

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