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Mechanical characteristics of metal nanoparticle thin film on flexible substrate exposed to saline solution

机译:盐水溶液暴露于柔性基材上金属纳米粒子薄膜的力学特性

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摘要

The robust and reliable mechanical characteristics of metal nanoparticle (NP) thin films on flexible substrates are important because they operate under tensile, bending, and twisting loads. Furthermore, in wearable printed electronics applications, salty solutions such as sweat and seawater can affect the mechanical reliabilities of devices. In this paper, we investigated the effect of sodium chloride (NaCl) solutions on silver (Ag) NP thin films on flexible polymer substrate. After exposure to NaCl solution of Ag NP thin film, we observed the aggregation behavior between Ag NPs and formation of larger pores in the film due to the removal of organic capping layer from the surface of Ag NPs. The average porosity and 5% deviation strains of Ag NP thin films on the polyimide substrate were dramatically increased and decreased from 2.99% to 9.64% and from 3.94% to 0.87%, respectively, after exposure to NaCl solution for 1 h. Also, we verified a drastic deterioration of the surface adhesion of the Ag NP thin film to the substrate by exposure to NaCl solution. We could observe crack propagation and delamination by in-situ scanning electron microscope imaging. In addition, passivation effect by a parylene layer for preventing the permeation of the saline solution was investigated.
机译:柔性衬底上金属纳米颗粒(NP)薄膜的坚固可靠的机械特性非常重要,因为它们在拉伸、弯曲和扭转载荷下工作。此外,在可穿戴印刷电子应用中,汗水和海水等含盐溶液会影响设备的机械可靠性。本文研究了氯化钠(NaCl)溶液对柔性聚合物基底上银(Ag)NP薄膜的影响。在暴露于Ag-NP薄膜的NaCl溶液后,我们观察到Ag-NP之间的聚集行为,以及由于从Ag-NP表面去除有机覆盖层而在薄膜中形成更大的孔。在NaCl溶液中暴露1h后,聚酰亚胺衬底上Ag-NP薄膜的平均孔隙率和5%偏差应变分别从2.99%显著增加和降低至9.64%,从3.94%降低至0.87%。此外,我们还验证了Ag-NP薄膜在NaCl溶液中的表面附着力急剧恶化。我们可以通过原位扫描电子显微镜成像观察裂纹扩展和分层。此外,还研究了帕利灵层对防止盐水渗透的钝化效果。

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