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Effects of Under Bump Metallurgy (UBM) Materials on the Corrosion of Electroless Nickel Films

机译:凸块冶金(UBM)材料对化学镀镍膜腐蚀的影响

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摘要

The "black pad" phenomenon, which refers to the blackening of electroless-plated nickel-phosphorus [Ni(P)] films during the immersion Au process, is reproduced using pure chemicals and its fundamental mechanisms are investigated. In the present analysis, under bump metallurgy (UBM) materials have profound effects on the black pad susceptibility, and the presence of abnormally large nodules (ALNs) is essential to the black pad occurrence. The Ni(P) films over Cu, Ag, and Au substrates all exhibit ALNs and are susceptible to black pads, while those over Ni and Co substrates do not have ALNs and therefore are not susceptible to black pad. In the former cases, submicron scale nodular variations of the surface curvature lead to variations in the P concentration in the Ni(P) films, which induces sufficiently large potential differences to drive galvanic corrosion when exposed to the electrolyte, which is a gold cyanide solution in this study. The UBM effect is ascribed to differences in the Ni(P) film growth mode, where the transition from a layer-by-layer growth mode to an island growth mode is easier over Cu, Ag, and Au UBMs. (C) The Minerals, Metals & Materials Society and ASM International 2015
机译:使用纯化学品重现“黑垫”现象,该现象是指在浸金过程中化学镀镍-磷[Ni(P)]膜变黑的现象,并研究了其基本机理。在目前的分析中,凸块冶金(UBM)材料对黑垫磁化率具有深远的影响,异常大结节(ALN)的存在对于黑垫的出现至关重要。 Cu,Ag和Au衬底上的Ni(P)膜均显示ALN,并且易受黑垫的影响,而Ni和Co衬底上的Ni(P)膜不具有ALN,因此不易受黑垫的影响。在前一种情况下,表面曲率的亚微米级结节形变化会导致Ni(P)膜中P浓度的变化,当暴露于电解质(氰化金溶液)时,会引起足够大的电势差以驱动电化腐蚀在这个研究中。 UBM效应归因于Ni(P)薄膜生长模式的差异,与Cu,Ag和Au的UBM相比,从逐层生长模式到岛状生长模式的过渡更容易。 (C)矿物,金属和材料学会和ASM International 2015

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