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Sub-ns triplet state formation by non-geminate recombination in PSBTBT:PC 70 BM and PCPDTBT:PC 60 BM organic solar cells

机译:通过PSBTBT:PC 70 BM和PCPDTBT:PC 60 BM有机太阳能电池中的非对位重组形成亚ns三重态

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摘要

The solid-state morphology and photo-generated charge carrier dynamics in low-bandgap polymer:fullerene bulk heterojunction photovoltaic blends using the donor–acceptor type copolymers PCPDTBT or its silicon-substituted analogue PSBTBT as donors are compared by two-dimensional (2D) solid-state nuclear magnetic resonance (NMR) and femto-to microsecond broadband Vis-NIR transient absorption (TA) pump–probe spectroscopy. The 2D solid-state NMR experiments demonstrate that the film morphology of PCPDTBT:PC60BM blends processed with additives such as octanedithiol (ODT) are similar to those of PSBTBT:PC60BM blends in terms of crystallinity, phase segregation, and interfacial contacts. The TA experiments and analysis of the TA data by multivariate curve resolution (MCR) reveal that after exciton dissociation and free charge formation, fast sub-nanosecond non-geminate recombination occurs which leads to a substantial population of the polymer's triplet state. The extent to which triplet states are formed depends on the initial concentration of free charges, which itself is controlled by the microstructure of the blend, especially in case of PCPDTBT:PC60BM. Interestingly, PSBTBT:PC70BM blends show a higher charge generation efficiency, but less triplet state formation at similar free charge carrier concentrations. This indicates that the solid-state morphology and interfacial structures of PSBTBT:PC70BM blends reduces non-geminate recombination, leading to superior device performance compared to optimized PCPDTBT:PC60BM blends.
机译:使用二维(2D)固体比较低带隙聚合物:富勒烯本体异质结光伏共混物(使用施主-受体型共聚物PCPDTBT或其硅取代的类似物PSBTBT作为施主)中的固态形态和光生载流子动力学状态核磁共振(NMR)和飞秒至微秒级的宽带Vis-NIR瞬态吸收(TA)泵浦-探针光谱。二维固态NMR实验表明,用诸如辛丹二酚(ODT)之类的添加剂加工的PCPDTBT:PC60BM共混物的薄膜形态在结晶度,相分离和界面接触方面与PSBTBT:PC60BM共混物相似。 TA实验和通过多元曲线分辨率(MCR)对TA数据进行的分析表明,在激子解离和自由电荷形成后,发生了快速的亚纳秒非gegeminate重组,导致大量的聚合物三重态。三重态形成的程度取决于游离电荷的初始浓度,其本身受混合物的微观结构控制,尤其是在PCPDTBT:PC60BM的情况下。有趣的是,PSBTBT:PC70BM共混物显示出更高的电荷产生效率,但在类似的自由电荷载流子浓度下形成的三重态较少。这表明PSBTBT:PC70BM共混物的固态形态和界面结构减少了非叠氮化物的重组,与优化的PCPDTBT:PC60BM共混物相比,具有出色的器件性能。

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