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The importance of surface roughness in the adhesion of electroless-plated metal in inkjet printed grooves

机译:表面粗糙度对喷墨印刷凹槽中化学镀金属附着力的重要性

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Good metal to silicon adhesion is essential in achieving high fill factor and low series resistance in high-efficiency solar cells, and electroless plating has provided a cost-effective method of metallising the grooves of these cells. Unfortunately the smoothness and shallowness of grooves created using inkjet printing can limit the mechanical adhesion of the deposited metal. In this paper we examine the importance of roughness in achieving a successful adhesion between electroless-deposited nickel and the silicon surface in inkjet printed grooves. We investigate several low HF or HF-free chemical solutions commonly used for etching the surface of inkjet-printed grooves with minimum impact on the sensitive dielectric layer. We conclude by presenting a roughening technique suitable for inkjet printed solar cell fabrication.
机译:良好的金属与硅之间的附着力对于在高效太阳能电池中实现高填充因子和低串联电阻至关重要,化学镀已提供了一种使这些电池的凹槽金属化的经济高效的方法。不幸的是,使用喷墨印刷产生的凹槽的光滑度和浅度会限制沉积金属的机械粘附力。在本文中,我们研究了粗糙度对于实现化学沉积镍与喷墨印刷凹槽中的硅表面之间成功粘合的重要性。我们研究了几种低HF或无HF的化学溶液,这些溶液通常用于蚀刻喷墨印刷凹槽的表面,并且对敏感介电层的影响最小。最后,我们提出一种适用于喷墨印刷太阳能电池制造的粗糙化技术。

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