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Silicon nanocrystals as light converter for solar cells

机译:硅纳米晶体作为太阳能电池的光转换器

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摘要

In this work, we investigate the potential use of silicon nanocrystals (Si-nc) into photovoltaics technology as one possible way to increase the silicon solar efficiency at low cost. The Si-nc were prepared ex situ (pulverizing of electrochemical etched porous silicon), embedded into spin-on-glass antireflecting SiO_2 based solution and then spun onto standard silicon solar cells. The Si-nc/SiO_2 layer serves as a luminescence down-converter. Indeed, the high energetic photons are absorbed within the converter 'Si-nc' and transformed via its photoluminescence (PL) to red ones (~700 nm) which are then converted much more efficiently in silicon solar cell. We first quantify the size of the Si-nc. Then we present investigations of Si-nc based converter with different PL intensities and its influence on solar cell performances (internal quantum efficiency (IQE), current-voltage characteristic). We observe increase in IQE in the region where the PL of Si-nc appears. We also report the correlation between the converter PL intensity and IQE. To get insight into the potential of such converter, we introduced a simplified one-dimensional model. The results of the modelling are shown and compared with experimental data.
机译:在这项工作中,我们研究了将硅纳米晶体(Si-nc)用于光伏技术的潜在用途,以此作为一种低成本提高硅太阳能效率的可能方法。预先制备Si-nc(粉碎电化学蚀刻后的多孔硅),将其嵌入玻璃旋涂式减反射SiO_2基溶液中,然后纺丝到标准硅太阳能电池上。 Si-nc / SiO_2层用作发光下变频器。实际上,高能光子在转换器“ Si-nc”中被吸收,并通过其光致发光(PL)转换为红色(〜700 nm),然后在硅太阳能电池中更有效地转换。我们首先量化Si-nc的大小。然后,我们研究了具有不同PL强度的基于Si-nc的转换器及其对太阳能电池性能(内部量子效率(IQE),电流-电压特性)的影响。我们观察到Si-nc PL出现区域的IQE升高。我们还报告了转换器PL强度和IQE之间的相关性。为了深入了解这种转换器的潜力,我们引入了简化的一维模型。显示了建模结果,并与实验数据进行了比较。

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