DOE OSTI · 2422727
Solid additive engineering enables high-efficiency and eco-friendly all-polymer solar cells
Abstract
Currently, morphology optimization of all-polymer solar cells (all-PSCs) strongly depends on the use of solvent additives, which are usually highly toxic and harmful to the environment and human health. Here, we report a green and volatile solid additive, 2-methoxynaphthalene (2-MN). It was found that the incorporation of 2-MN into a PM6:PY-DT blend can effectively manipulate the aggregations of PM6 and PY-DT during film depositing and thermal annealing processes and results in highly ordered molecular packing and favorable phase-separated morphology. Consequently, a record-high efficiency of 17.32% is achieved for the PM6:PY-DT device. Moreover, 2-MN-processed all-PSCs were fabricated by using non-halogenated solvent. High efficiencies of 17.03% and 16.67% are obtained for all-PSCs fabricated under nitrogen atmosphere and ambient conditions, respectively. Finally, our work shows that the utilization of 2-MN as a green and solid additive is a simple and feasible strategy to optimize the morphology and sheds new light on eco-friendly fabrication and application of all-PSCs.
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Song, Jiali, Li, Yun, Cai, Yunhao, Zhang, Rui, Wang, Shijie, Xin, Jingming, Han, Lili, Wei, Donghui, Ma, Wei, Gao, Feng, Sun, Yanming. 2022-08-24. Solid additive engineering enables high-efficiency and eco-friendly all-polymer solar cells. https://doi.org/10.1016/j.matt.2022.08.011
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