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Fabrication of c-Si solar cells using boric acid as a spin-on dopant for back surface fieldud

机译:使用硼酸作为背面场的旋涂掺杂剂制造c-si太阳能电池

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摘要

Cost effective solar cells are paramount for solar power to compete with traditional power generation. Here we present results on two low cost, both side textured c-Si solar cells. One solar cell had an Al back surface field (BSF), while the other had boron BSF fabricated by using spin-on boric acid as a p-type dopant. As compared to the Al-BSF solar cell, an improvement in efficiency of 1.7% was observed for a solar cell with boron BSF. Since boron BSF is stronger than Al-BSF, an improvement in efficiency can be attributed to an increase in long wavelength response, collection efficiency and reduced back surface recombination. The boron BSF solar cell showed an efficiency of 12.9% with V-oc of 0.56 V, J(sc) of 32.2 mA cm(-2) and FF of 0.72. These parameters are expected to significantly increase further with the addition of layers such as anti-reflection/passivation layers at the front side, and back surface passivation with local back surface field, etc.
机译:具有成本效益的太阳能电池对于太阳能与传统发电的竞争至关重要。在这里,我们介绍了两种低成本的两面纹理c-Si太阳能电池的结果。一个太阳能电池具有Al背面电场(BSF),而另一个太阳能电池具有通过使用旋涂硼酸作为p型掺杂剂制造的硼BSF。与Al-BSF太阳能电池相比,具有硼BSF的太阳能电池的效率提高了1.7%。由于硼BSF比Al-BSF强,因此效率的提高可归因于长波长响应的增加,收集效率的提高和背面重组的减少。硼BSF太阳能电池的效率为12.9%,V-oc为0.56 V,J(sc)为32.2 mA cm(-2),FF为0.72。预计这些参数会随着在正面添加诸如防反射/钝化层以及具有局部背面场的背面钝化等层而进一步显着增加。

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