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首页> 外文期刊>ACS Omega >High-Efficiency Double Absorber PbS/CdS Heterojunction Solar Cells by Enhanced Charge Collection Using a ZnO Nanorod Array
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High-Efficiency Double Absorber PbS/CdS Heterojunction Solar Cells by Enhanced Charge Collection Using a ZnO Nanorod Array

机译:通过使用ZnO纳米棒阵列增强电荷收集的高效双吸收PbS / CdS异质结太阳能电池

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The device architecture of solar cells remains critical in achieving high photoconversion efficiency while affordable and scalable routes are being explored. Here, we demonstrate a scalable, low cost, and less toxic synthesis route for the fabrication of PbS/CdS thin-film solar cells with efficiencies as high as ~5.59%, which is the highest efficiency obtained so far for the PbS-based solar cells not involving quantum dots. The devices use a stack of two band-aligned junctions that facilitates absorption of a wider range of the solar spectrum and an architectural modification of the electron-accepting electrode assembly consisting of a very thin CdS layer (~10 nm) supported by vertically aligned ZnO nanorods on a ~50 nm thick ZnO underlayer. Compared to a planar electrode of a 50 nm thick CdS film, the modified electrode assembly enhanced the efficiency by ~39% primarily due to a significantly higher photon absorption in the PbS layer, as revealed by a detailed three-dimensional finite difference time-domain optoelectronic modeling of the device.
机译:太阳能电池的设备架构对于实现高光电转换效率仍然至关重要,同时正在探索价格合理且可扩展的路线。在这里,我们展示了一种可扩展,低成本,低毒性的合成路线,用于制造PbS / CdS薄膜太阳能电池,效率高达〜5.59%,这是迄今为止基于PbS的太阳能电池获得的最高效率不涉及量子点的细胞这些设备使用两个能带对齐的结的堆叠,从而促进了更宽范围的太阳光谱的吸收,并且对电子接受电极组件的结构进行了修改,该组件由非常薄的CdS层(〜10 nm)组成,并由垂直对齐的ZnO支撑纳米棒位于〜50 nm厚的ZnO底层上。与50 nm厚的CdS膜的平面电极相比,改进的电极组件将效率提高了约39%,这主要是由于PbS层中的光子吸收明显更高,这由详细的三维有限差分时域显示设备的光电建模。

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