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首页> 外文期刊>ACS applied materials & interfaces >Impact of Aggregation on the Photochemistry of Fullerene Films: Correlating Stability to Triplet Exciton Kinetics
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Impact of Aggregation on the Photochemistry of Fullerene Films: Correlating Stability to Triplet Exciton Kinetics

机译:聚集对富勒烯薄膜光化学的影响:将稳定性与三重素激素动力学相关性

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摘要

The photochemistry and stability of fullerene films is found to be strongly dependent upon film nanomorphology. In particular, PC61BM blend films, dispersed with polystyrene, are found to be more susceptible to photobleaching in air than the more aggregated neat films. This enhanced photobleaching correlated with increased oxygen quenching of PC61BM triplet states and the appearance of a carbonyl FTIR absorption band indicative of fullerene oxidation, suggesting PC61BM photo-oxidation is primarily due to triplet-mediated singlet oxygen generation. PC61BM films were observed to undergo photo-oxidation in air for even modest (<= 40 min) irradiation times, degrading electron mobility substantially, indicative of electron trap formation. This conclusion is supported by observation of red shifts in photo- and electro-luminescence with photo-oxidation, shown to be in agreement with time-dependent density functional theory calculations of defect generation. These results provide important implications on the environmental stability of PC61BM-based films and devices.
机译:发现富勒烯薄膜的光化学和稳定性依赖于薄膜纳米形态。特别地,发现与聚苯乙烯分散的PC61BM共混膜,发现在空气中比较簇的漂白膜更容易受到光博的影响。这种增强的光漂白与PC61BM三重态的增加的氧气猝灭,以及指示富勒烯氧化的羰基FTIR吸收带的外观,表明PC61BM光氧化主要是由于三重态介导的单次氧产生。观察到PC61BM膜在空气中进行光氧化,甚至适度(<= 40分钟)照射时间,基本上降解电子迁移率,指示电子阱形成。通过观察光氧化和电光的红移观察结果支持这一结论,视图与时间依赖性的密度函数理论计算一致。这些结果对基于PC61BM的薄膜和器件的环境稳定性提供了重要意义。

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