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Identifying the Signatures of Intermolecular Interactions in Blends of PM6 with Y6 and N4 Using Absorption Spectroscopy

机译:利用吸收光谱法鉴定PM6与Y6和N4共混物中分子间相互作用的特征

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摘要

In organic solar cells, the resulting device efficiency depends strongly on the local morphology and intermolecular interactions of the blend film. Optical spectroscopy was used to identify the spectral signatures of interacting chromophores in blend films of the donor polymer PM6 with two state-of-theart nonfullerene acceptors, Y6 and N4, which differ merely in the branching point of the side chain. From temperature-dependent absorption and luminescence spectroscopy in solution, it is inferred that both acceptor materials form two types of aggregates that differ in their interaction energy. Y6 forms an aggregate with a predominant J-type character in solution, while for N4 molecules the interaction is predominantly in a H-like manner in solution and freshly spin-cast film, yet the molecules reorient with respect to each other with time or thermal annealing to adopt a more J-type interaction. The different aggregation behavior of the acceptor materials is also reflected in the blend films and accounts for the different solar cell efficiencies reported with the two blends.
机译:在有机太阳能电池中,由此产生的器件效率很大程度上取决于共混膜的局部形态和分子间相互作用。利用光谱法鉴定了供体聚合物PM6与两种状态非富勒烯受体Y6和N4的共混膜中相互作用发色团的光谱特征,它们仅在侧链的分支点上有所不同。通过溶液中温度依赖的吸收和发光光谱,可以推断出两种受体材料形成了两种相互作用能不同的聚集体。Y6在溶液中形成具有主要J型特征的聚集体,而对于N4分子,在溶液和新鲜的旋铸膜中,相互作用主要以类似H的方式发生,但分子随着时间或热退火而相互重新定向,采用更多的J型相互作用。受体材料的不同聚集行为也反映在共混膜中,并解释了两种共混物报告的不同太阳能电池效率。

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