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Effect of band-aligned double absorber layers on photovoltaic characteristics of chemical bath deposited PbS/CdS thin film solar cells

机译:带状双吸收层对化学浴沉积PbS / CdS薄膜太阳能电池光伏特性的影响

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Here we report the highest energy conversion efficiency and good stability of PbS thin film-based depleted heterojunction solar cells, not involving PbS quantum dots. The PbS thin films were grown by the low cost chemical bath deposition (CBD) process at relatively low temperatures. Compared to the quantum dot solar cells which require critical and multistep complex procedures for surface passivation, the present approach, leveraging the facile modulation of the optoelectronic properties of the PbS films by the CBD process, offers a simpler route for optimization of PbS-based solar cells. Through an architectural modification, wherein two band-aligned junctions are stacked without any intervening layers, an enhancement of conversion efficiency by as much as 30% from 3.10 to 4.03% facilitated by absorption of a wider range of solar spectrum has been obtained. As an added advantage of the low band gap PbS stacked over a wide gap PbS, the devices show stability over a period of 10 days.
机译:在这里,我们报道了不涉及PbS量子点的基于PbS薄膜的耗尽型异质结太阳能电池的最高能量转换效率和良好的稳定性。通过低成本的化学浴沉积(CBD)工艺在相对较低的温度下生长PbS薄膜。与需要关键和多步骤复杂表面钝化的量子点太阳能电池相比,本方法利用CBD工艺对PbS薄膜的光电子特性进行方便的调制,为优化基于PbS的太阳能提供了更简单的途径细胞。通过结构上的修改,其中两个带取向的结被堆叠而没有任何中间层,通过吸收更宽的太阳光谱,获得了从3.10到4.03%高达30%的转换效率增强。作为在宽间隙PbS上堆叠的低带隙PbS的附加优势,该器件在10天的时间内显示出稳定性。

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