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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Microstructure Analysis of the Interaction between Watts-Type Nickel Electrolyte -and Screen Printed Solar Cell Contacts
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Microstructure Analysis of the Interaction between Watts-Type Nickel Electrolyte -and Screen Printed Solar Cell Contacts

机译:瓦特型镍电解质相互作用的微观结构分析 - 筛网印刷太阳能电池触点

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In this work we present the impact of Watts-type nickel electrolytes on the contact microstructure of the screen-printed silver contacts of silicon solar cells. Both an SEM and TEM analysis were used to investigate the reasons for poor contact adhesion following nickel plating. A failing interface was identified and located exactly between the glass frit and the bulk silver inside the contact. A clearly visible gap occurs at this interface due to a chemical dissolution of the boundary layer between the glass and the silver. In TEM measurements, no distinctive features in the elemental composition were identified at the failing interface that might be responsible for the site-specific dissolution. This suggests that the dissolution starts at the very thin oxide layer between the glass and the silver. Furthermore it became clear that the electrolyte reaches the identified failing interface via pores and cavities in the screen-printed silver layer. Closing these cavities prior to nickel electrolyte exposure thus lead to significantly better contact adhesion values.
机译:在这项工作中,我们呈现瓦特型镍电解质对硅太阳能电池丝网印刷银触头的接触微观结构的影响。 SEM和TEM分析均用于研究镍电镀后接触粘合性差的原因。识别出故障界面,并位于玻璃料和接触内部的散装银之间。由于玻璃和银之间的边界层的化学溶解,在该界面发生清晰可见的间隙。在TEM测量中,在故障的界面中鉴定了元素组合物中的显着特征,该故障界面可能负责特定于场所的溶解。这表明溶解在玻璃和银之间的非常薄的氧化物层开始。此外,很明显,电解质通过丝网印刷银层中的孔和空腔达到识别的失效界面。在镍电解质暴露之前关闭这些空腔,因此导致显着更好的接触粘合值。

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