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Defect site engineering for charge recombination and stability via polymer surfactant incorporation with an ultra-small amount in perovskite solar cells

机译:通过结合钙钛矿型太阳能电池中的聚合物表面活性剂和超少量掺入的电荷复合和稳定性的缺陷现场工程

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摘要

A reduction in defect sites that are produced in the process of perovskite crystallization is crucial for efficient perovskite solar cells. In this study, we incorporate an ultra-small amount (less than 0.1 wt%) of a non-volatile polymer additive, poly(ethylene glycol) tridecyl ether (PTE), into the perovskite precursor solution in order to regulate the crystallization kinetics. Even a tiny amount of PTE additives enables effectively to make film surface smooth, suppress charge recombination both between free charge carriers and between trapped and free charge carriers, and improve the electrical stability under continuous illumination. Our findings show that the defects are associated not only with charge recombination but also with electrical stability under illumination. Incorporating PTE additives, charge extraction is facilitated by a reduction in the loss of photogenerated charge carriers, leading to an improvement in photovoltaic efficiency with enhanced stability for the planar p-i-n perovskite solar cells.
机译:钙钛矿结晶过程中产生的缺陷部位的减少对于有效的钙钛矿太阳能电池至关重要。在这项研究中,我们将超少量(小于0.1 wt%)的非挥发性聚合物添加剂聚(乙二醇)十三烷基醚(PTE)掺入钙钛矿前体溶液中,以调节结晶动力学。即使是极少量的PTE添加剂也可以有效地使薄膜表面光滑,抑制自由电荷载流子之间以及俘获的电荷载流子和自由电荷载流子之间的电荷复合,并改善连续照明下的电稳定性。我们的发现表明,缺陷不仅与电荷复合有关,而且与照明下的电稳定性有关。掺入PTE添加剂,可减少光生电荷载流子的损失,从而促进电荷提取,从而提高了光伏效率,并增强了平面p-i-n钙钛矿太阳能电池的稳定性。

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