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FAILURE MECHANISMS FOR SOLAR CELLS WITH LASER DOPED SELECTIVE EMITTER AND PLATED NI-CU METAL CONTACTS

机译:具有激光掺杂选择发射极和镀Ni-Cu金属触点的太阳能电池的失效机制

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Al-BSF solar cells with a laser doped selective emitter and plated Ni-Cu contacts are an attractive approach for industrial fabrication. Yet the contact adhesion of the plated Ni-Cu contacts due to diffusion barriers in the contact area and electrical stability against tempering induced non-ohmic Ni shunts are two main challenges for this cell concept. This work presents failure mechanisms of laser doped solar cells. Microscopic characterization analyzes process induced defects separately, which result in poor contact adhesion and non-ohmic shunting. A process route is presented, which yields in solar cells with pseudo fill factors above 80 % and a sufficient contact adhesion of 1 N/mm.
机译:具有激光掺杂选择性发射器和电镀Ni-Cu接触的Al-BSF太阳能电池是工业制造的有吸引力的方法。然而,由于接触面积的扩散屏障和抵抗回火诱导的非欧姆Ni分流器的电镀屏障引起的电镀Ni-Cu触点的接触粘附是这种细胞概念的两个主要挑战。这项工作介绍了激光掺杂太阳能电池的失效机制。显微镜表征分别分别分析过程诱导的缺陷,这导致接触粘附性差和非欧姆分流。提出了一种过程路线,其在80%以上的伪填充因子和1n / mm的足够接触粘合性的太阳能电池中产生。

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