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无掺杂全背接触硅纳米孔太阳能电池,采用 MoOx 和 LiF 薄膜。

Dopant-Free All-Back-Contact Si Nanohole Solar Cells Using MoOx and LiF Films.

机构信息

Department of Energy Engineering, Ulsan National Institute of Science and Technology (UNIST) , Ulsan 689-798, Korea.

出版信息

Nano Lett. 2016 Feb 10;16(2):981-7. doi: 10.1021/acs.nanolett.5b03955. Epub 2016 Jan 19.

Abstract

We demonstrate novel all-back-contact Si nanohole solar cells via the simple direct deposition of molybdenum oxide (MoOx) and lithium fluoride (LiF) thin films as dopant-free and selective carrier contacts (SCCs). This approach is in contrast to conventionally used high-temperature thermal doping processes, which require multistep patterning processes to produce diffusion masks. Both MoOx and LiF thin films are inserted between the Si absorber and Al electrodes interdigitatedly at the rear cell surfaces, facilitating effective carrier collection at the MoOx/Si interface and suppressed recombination at the Si and LiF/Al electrode interface. With optimized MoOx and LiF film thickness as well as the all-back-contact design, our 1 cm(2) Si nanohole solar cells exhibit a power conversion efficiency of up to 15.4%, with an open-circuit voltage of 561 mV and a fill factor of 74.6%. In particular, because of the significant reduction in Auger/surface recombination as well as the excellent Si-nanohole light absorption, our solar cells exhibit an external quantum efficiency of 83.4% for short-wavelength light (∼400 nm), resulting in a dramatic improvement (54.6%) in the short-circuit current density (36.8 mA/cm(2)) compared to that of a planar cell (23.8 mA/cm(2)). Hence, our all-back-contact design using MoOx and LiF films formed by a simple deposition process presents a unique opportunity to develop highly efficient and low-cost nanostructured Si solar cells.

摘要

我们通过简单地直接沉积氧化钼(MoOx)和氟化锂(LiF)薄膜作为无掺杂和选择性载流子接触(SCC),展示了新型全背接触硅纳米孔太阳能电池。这种方法与传统上使用的高温热掺杂工艺形成对比,后者需要多步图案化工艺来制作扩散掩模。MoOx 和 LiF 薄膜都被插入到 Si 吸收体和 Al 电极之间,在背面电池表面交错排列,有利于在 MoOx/Si 界面处有效收集载流子,并抑制 Si 和 LiF/Al 电极界面处的复合。通过优化 MoOx 和 LiF 薄膜厚度以及全背接触设计,我们的 1 cm²硅纳米孔太阳能电池的功率转换效率高达 15.4%,开路电压为 561 mV,填充因子为 74.6%。特别是,由于俄歇/表面复合的显著减少以及 Si 纳米孔的优异光吸收,我们的太阳能电池在短波长光(约 400nm)下的外量子效率达到 83.4%,与平面电池(23.8 mA/cm²)相比,短路电流密度(36.8 mA/cm²)显著提高了 54.6%。因此,我们使用 MoOx 和 LiF 薄膜通过简单沉积工艺形成的全背接触设计为开发高效、低成本的纳米结构硅太阳能电池提供了独特的机会。

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