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Stability of Multilayered Ag/Ag3Sn/Sn Films Noncyanide Electroplateded for high-reflective back-electrode

机译:用于高反射背电极的多层电镀Ag / Ag 3 Sn / Sn薄膜非氰化物的稳定性

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Due to the problems of environmental pollution and energy consumption, the design of high-reflective back-electrode (HRBE) was proposed and applied to flip-chip and verticalpackaged high-power LED packaging processes. The working reliability of the Ag-based reflective electrode material is a key technical bottleneck in the development of a HRBE that has a simple structure, a low manufacturing cost, and a high reliability in a complicated working environment. In this work, multilayered Ag/Ag3Sn/Sn films were prepared by non-cyanide electrodeposition and annealing and we studied their properties. Multilayered Ag/Ag3Sn/Sn exhibited superior high specular reflectance compared to pure Ag films. After immersing in 2 ml/L (NH4)2Sxsolution for 60min, the multilayered Ag/Ag3Sn/Sn films still maintained the initial reflectivity, and the pure Ag film decreased significantly. In addition, the contact resistance of the pure Ag film increases significantly with the increase of the immersing time and eventually fails. These results show that Ag/Ag3Sn/Sn films have excellent reflectivity and sulfidation resistance, paving the way for the preparation of efficient HRBE.
机译:针对环境污染和能耗问题,提出了高反射背电极(HRBE)的设计,并将其应用于倒装芯片和垂直封装的大功率LED封装工艺。 Ag基反射电极材料的工作可靠性是HRBE的发展中的关键技术瓶颈,该HRBE具有简单的结构,低的制造成本以及在复杂的工作环境中的高可靠性。在这项工作中,多层Ag / Ag 3 通过非氰化物电沉积和退火制备了Sn / Sn膜,并研究了它们的性能。多层银/银 3 与纯银薄膜相比,锡/锡显示出更高的高镜面反射率。浸入2 ml / L(NH 4 2 小号 x 溶液60min,多层Ag / Ag 3 Sn / Sn膜仍保持初始反射率,而纯Ag膜显着下降。另外,纯Ag膜的接触电阻随着浸渍时间的增加而显着增加,并最终失效。这些结果表明,Ag / Ag 3 Sn / Sn膜具有出色的反射率和抗硫化性,为制备高效HRBE铺平了道路。

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