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RD pilot-line production of multi-crystalline Si solar cells with top efficiencies exceeding 19

机译:最高效率超过19%的多晶硅太阳能电池的研发中试生产

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In this paper we report on latest results from our pilot production of multi-crystalline (mc) p-type Si cells in the Reiner-Lemoine Research Center at Q-Cells. The cells are double-side contacted and feature a lowly doped emitter, a fineline-printed Ag grid in combination with plating as front metallization and a dielectric passivated rear with local contacts. Using material based on Siemens and upgraded metallurgical grade (100% UMG) feedstock, we achieve stable median cell efficiencies of well above 18 % including the whole brick distribution. Top efficiencies exceeding 19 % (total area) are reached with a standard isotextured front and single anti-reflexion coating. In this work, we show the latest cell optimization progress corresponding to the front metallization process. Furthermore, we report on an independently confirmed cell efficiency of 19.5 % on a large-area multi-crystalline Si solar cell (243 cm2). This efficiency was achieved by implementing next generation process steps. To our knowledge, this result represents the highest energy conversion efficiencies on multi-crystalline Si material achieved so far.
机译:在本文中,我们报告了在Q-Cells的Reiner-Lemoine研究中心试生产多晶(mc)p型Si电池的最新结果。电池是双面接触的,具有低掺杂的发射极,细线印刷的Ag栅以及与电镀相结合的前金属化层以及具有局部触点的电介质钝化后层。使用基于西门子的材料和升级的冶金级(100%UMG)原料,我们实现了包括整个砖块分布在内的稳定的平均电池效率,远高于18%。使用标准的同质纹理正面和单一抗反射涂层,可以达到超过19%(总面积)的最高效率。在这项工作中,我们显示了与正面金属化过程相对应的最新单元优化进度。此外,我们报告了独立确认的大面积多晶硅Si太阳能电池(243 cm2)的电池效率为19.5%。该效率是通过实施下一代工艺步骤来实现的。据我们所知,该结果代表了迄今为止在多晶硅材料上实现的最高能量转换效率。

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