Lu Na, Lei Qiyun, Xu Xinan, Yang Liu, Yang Zhenhai, Liu Zunke, Zeng Yuheng, Ye Jichun, He Sailing
Opt Express. 2022 Jun 6;30(12):21309-21323. doi: 10.1364/OE.459207.
We demonstrate experimentally a flexible crystalline silicon (c-Si) solar cell (SC) based on dopant-free interdigitated back contacts (IBCs) with thickness of merely 50 µm for, to the best of our knowledge, the first time. A MoO thin film is proposed to cover the front surface and the power conversion efficiency (PCE) is boosted to over triple that of the uncoated SC. Compared with the four-time thicker SC, our thin SC is still over 77% efficient. Systematic studies show the front MoO film functions for both antireflection and passivation, contributing to the excellent performance. A double-interlayer (instead of a previously-reported single interlayer) is identified at the MoO/c-Si interface, leading to efficient chemical passivation. Meanwhile, due to the large workfunction difference, underneath the interface a strong built-in electric field is generated, which intensifies the electric field over the entire c-Si active layer, especially in the 50-µm thick layer. Photocarriers are expelled quickly to the back contacts with less recombined and more extracted. Besides, our thin IBC SC is highly flexible. When bent to a radius of 6 mm, its PCE is still 76.6% of that of the unbent cell. Fabricated with low-temperature and doping-free processes, our thin SCs are promising as cost-effective, light-weight and flexible power sources.
据我们所知,我们首次通过实验展示了一种基于无掺杂叉指背接触(IBC)的柔性晶体硅(c-Si)太阳能电池(SC),其厚度仅为50微米。提出用MoO薄膜覆盖前表面,功率转换效率(PCE)提高到未涂层SC的三倍以上。与四倍厚的SC相比,我们的薄SC效率仍超过77%。系统研究表明,前表面的MoO薄膜兼具抗反射和钝化功能,有助于实现优异性能。在MoO/c-Si界面处发现了一个双界面层(而非先前报道的单界面层),实现了有效的化学钝化。同时,由于功函数差异大,在界面下方产生了强内建电场,增强了整个c-Si有源层上的电场,特别是在50微米厚的层中。光生载流子被迅速驱赶到背接触,复合减少,提取增加。此外,我们的薄IBC SC具有高度柔性。当弯曲到6毫米半径时,其PCE仍为未弯曲电池的76.6%。采用低温和无掺杂工艺制造,我们的薄SC有望成为具有成本效益、重量轻且柔性的电源。