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Ramp;D pilot-line production of multi-crystalline Si solar cells with top efficiencies exceeding 19

机译:R& D型多晶硅Si太阳能电池的延长效率超过19%

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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,我们报告了我们在Q细胞的Reiner-Lemoine研究中心中的多晶硅(MC)P型Si细胞的试验生产中的最新结果。电池是双面接触的,并且具有差低掺杂的发射器,具有作为前导金属化的电镀的精度印刷的AG网格,并且具有局部触点的电介质钝化。使用基于西门子和升级冶金等级(100%UMG)原料的材料,我们实现了高于18%的稳定中位细胞效率,包括整个砖分布。达到超过19%(总面积)的最高效率与标准的肌细纹前方和单一防反射涂层达到。在这项工作中,我们展示了与前金属化过程相对应的最新的细胞优化进度。此外,我们在大面积多晶硅Si太阳能电池(243cm 2)上的独立确认的细胞效率报告为19.5%。通过实施下一代流程步骤来实现这种效率。据我们所知,该结果代表到目前为止实现的多晶硅材料的最高能量转换效率。

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