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黑硅表面对背接触背硅异质结太阳能电池性能的影响。

Influence of black silicon surfaces on the performance of back-contacted back silicon heterojunction solar cells.

作者信息

Ziegler Johannes, Haschke Jan, Käsebier Thomas, Korte Lars, Sprafke Alexander N, Wehrspohn Ralf B

出版信息

Opt Express. 2014 Oct 20;22 Suppl 6:A1469-76. doi: 10.1364/OE.22.0A1469.

Abstract

The influence of different black silicon (b-Si) front side textures prepared by inductively coupled reactive ion etching (ICP-RIE) on the performance of back-contacted back silicon heterojunction (BCB-SHJ) solar cells is investigated in detail regarding their optical performance, black silicon surface passivation and internal quantum efficiency. Under optimized conditions the effective minority carrier lifetime measured on black silicon surfaces passivated with Al(2)O(3) can be higher than lifetimes measured for the SiO(2)/SiN(x) passivation stack used in the reference cells with standard KOH textures. However, to outperform the electrical current of silicon back-contact cells, the black silicon back-contact cell process needs to be optimized with aspect to chemical and thermal stability of the used dielectric layer combination on the cell.

摘要

详细研究了通过电感耦合反应离子刻蚀(ICP-RIE)制备的不同黑硅(b-Si)正面纹理对背接触背硅异质结(BCB-SHJ)太阳能电池性能的影响,包括其光学性能、黑硅表面钝化和内量子效率。在优化条件下,用Al(2)O(3)钝化的黑硅表面上测得的有效少数载流子寿命可能高于参考电池中使用标准KOH纹理的SiO(2)/SiN(x)钝化叠层所测得的寿命。然而,为了超过硅背接触电池的电流,黑硅背接触电池工艺需要针对电池上使用的介电层组合的化学和热稳定性进行优化。

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