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首页> 外文期刊>Energy Technology: Generation,Conversion,Storage,Distribution >Evolution of Photovoltaic Performance in Fully Printable Mesoscopic Carbon-Based Perovskite Solar Cells
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Evolution of Photovoltaic Performance in Fully Printable Mesoscopic Carbon-Based Perovskite Solar Cells

机译:完全可印刷的介质碳基钙钛矿太阳能电池中光伏性能的演变

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摘要

Hole-conductor-free carbon-based perovskite solar cells (C-PSCs) are a promising candidate for commercialization due to low cost, simple, and industry applicable fabrication methods. However, when measuring the photovoltaic parameters of these cells, they do not achieve their maximal performance immediately following their fabrication, but rather require a certain maturation period. Herein, the natural and induced changes that occur in C-PSCs are studied after their fabrication is complete. It is observed that the current density increases by natural maturation, and the open-circuit voltage increases by light-soaking treatment. Using charge extraction, intensity-modulated photovoltage spectroscopy, and voltage decay measurements during the three steps of maturation, it is possible to observe some changes in crystallization and surface traps, which are the cause for the evolution in the photovoltaic parameters. Moreover, in the case of two-step deposition, the cells achieve their final performance already as fresh cells in contrast to the case of one-step deposition cells. The conclusions offer practical information regarding the preparation and optimal measurement conditions of C-PSCs as well as possible prospects for the improvement and optimization of this cell type.
机译:由于低成本,简单,工业适用的制造方法,无孔导体的碳酸钙钛矿太阳能电池(C-PSC)是商业化的有希望的候选者。然而,在测量这些细胞的光伏参数时,它们不会在制造后立即达到其最大性能,而是需要一定的成熟时期。这里,在其制造完成后,研究了C-PSC中发生的自然和诱导的变化。观察到,电流密度随着天然成熟而增加,并且开路电压通过光浸渍处理增加。使用电荷提取,强度调制的光电谱和在成熟三个步骤期间的电压衰减测量,可以观察结晶和表面陷阱的一些变化,这是光伏参数中的进化的原因。此外,在两步沉积的情况下,与一步沉积细胞的情况相比,细胞已经成为新鲜细胞的最终性能。结论提供了有关C-PSC的制备和最佳测量条件的实用信息以及改善和优​​化这种细胞类型的可能前景。

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