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Progress in high-efficiency emitter-wrap-through cells on medium quality substrates

机译:中等质量底物上高效发射极包裹式电池的研究进展

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One of the most promising cell concepts for high efficiencies on medium quality base material is the emitter-wrap-through (EWT) solar cell. We fabricated solar cells on 1.25 /spl Omega/ cm FZ and 1.4 /spl Omega/ cm Cz(B) material. The performance of EWT, rear contacted cells (RCC) and random-pyramids passivated emitter and rear cells (RP-PERC) on Cz-Si is compared. An EWT efficiency of 18.7% on degraded Cz (/spl tau//sub b/>35 /spl mu/s, W=250 /spl mu/m) outperforms clearly the RCC (14.9%) and even the RP-PERC (18.1%). Spectral response measurements prove the very good collection efficiency of the EWT cells compared to RCC. The cell parameters V/sub oc/, j/sub sc/ and /spl eta/ of EWT and RCC are logged over the entire degradation process and can be fitted very well by a double exponential decay. The high potential for fill factor and therefore efficiency improvement is shown via Suns-V/sub oc/-measurements which indicate a series resistance free fill factor of more than 81%.
机译:在中等质量的基础材料上实现高效率的最有前途的电池概念之一是发射极包裹式(EWT)太阳能电池。我们在1.25 / spl Omega / cm FZ和1.4 / spl Omega / cm Cz(B)的材料上制造了太阳能电池。比较了在Cz-Si上EWT,后接触电池(RCC)和钝化金字塔钝化的发射极和后电池(RP-PERC)的性能。降低的Cz(/ spl tau // sub b /> 35 / spl mu / s,W = 250 / spl mu / m)的EWT效率明显优于RCC(14.9%)甚至RP-PERC( 18.1%)。光谱响应测量证明,与RCC相比,EWT细胞具有非常好的收集效率。 EWT和RCC的电池参数V / sub oc /,j / sub sc /和/ spleta /在整个降解过程中记录下来,并且可以通过双指数衰减很好地拟合。通过Suns-V / sub oc /-测量显示了填充系数的高潜力,从而提高了效率,这表明串联电阻无填充系数超过81%。

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