重组
材料科学
光伏系统
有机太阳能电池
光电子学
开路电压
聚合物太阳能电池
异质结
太阳能电池
电压
生物系统
化学物理
计算物理学
物理
化学
聚合物
生物
基因
复合材料
量子力学
生物化学
生态学
作者
Joachim Vollbrecht,В. В. Брус,Seo‐Jin Ko,Jaewon Lee,Akchheta Karki,David Xi Cao,Kilwon Cho,Guillermo C. Bazan,Thuc‐Quyen Nguyen
标识
DOI:10.1002/aenm.201901438
摘要
Abstract In this study, a comprehensive analytical model to quantify the total nongeminate recombination losses, originating from bimolecular as well as bulk and surface trap‐assisted recombination mechanisms in nonfullerene‐based bulk heterojunction organic solar cells is developed. This proposed model is successfully employed to obtain the different contributions to the recombination current of the investigated solar cells under different illumination intensities. Additionally, the model quantitatively describes the experimentally measured open‐circuit voltage versus light intensity dependence. Most importantly, it is possible to calculate the experimental results with the same fitting parameter values from the presented model. The validity of this model is also proven by a combination of other independent, steady‐state, and transient experimental techniques. This new powerful analytical tool will enable researchers in the photovoltaic community to take into account the synergetic contribution from all relevant types of nongeminate recombination losses in different optoelectronic systems and target their analysis of recombination dynamics at any operating voltage.
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