首页> 外文期刊>Advanced Science >Unveiling Excitonic Dynamics in High‐Efficiency Nonfullerene Organic Solar Cells to Direct Morphological Optimization for Suppressing Charge Recombination
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Unveiling Excitonic Dynamics in High‐Efficiency Nonfullerene Organic Solar Cells to Direct Morphological Optimization for Suppressing Charge Recombination

机译:揭示高效非富勒烯有机太阳能电池的激子动力学,以直接形态优化抑制电荷复合。

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Nonfullerene acceptors (NFAs)‐based organic solar cells (OSCs) have recently drawn considerable research interests; however, their excitonic dynamics seems quite different than that of fullerene acceptors‐based devices and remains to be largely explored. A random terpolymer of PBBF11 to pair with a paradigm NFA of 3,9‐bis(2‐methylene‐(3‐(1,1‐dicyanomethylene)‐indanone)‐5,5,11,11‐tetrakis(4‐hexylphenyl)‐dithieno[2,3‐d:2′,3′‐d′]‐s‐indaceno[1,2‐b:5,6‐b′]dithiophene (ITIC) such that both complementary optical absorption and very small offsets of both highest occupied molecular orbital and lowest unoccupied molecular orbital energy levels are acquired is designed and synthesized. Despite the small energy offsets, efficient electron/hole transfer between PBBF11 and ITIC is both clearly observed from steady‐state photoluminescence and transient absorption spectra and also supported by the measured low exciton binding energy in ITIC. Consequently, the PBBF11 :ITIC‐based OSCs afford an encouraging power conversion efficiency (PCE) of 10.02%. Although the good miscibility of PBBF11 and ITIC induces a homogenous blend film morphology, it causes severe charge recombination. The fullerene acceptor of PC 71 BM with varying loading ratios is therefore added to modulate film morphology to effectively reduce the charge recombination. As a result, the optimal OSCs based on PBBF11 :ITIC:PC 71 BM yield a better PCE of 11.4% without any additive or annealing treatment.
机译:基于非富勒烯受体(NFA)的有机太阳能电池(OSC)最近引起了相当大的研究兴趣。然而,它们的激子动力学似乎与基于富勒烯受体的器件大不相同,并且仍需大量研究。 PBBF11的无规三元共聚物与3,9-双(2-亚甲基-(3-(1,1-二氰基亚甲基)-茚满酮)-5,5,11,11-四(4-己基苯基)的典范NFA配对-dithieno [2,3-d:2',3'-d']-s-indaceno [1,2-b:5,6-b']二噻吩(ITIC),使得互补的光吸收和很小的偏移设计并合成了最高占据分子轨道和最低最低未占据分子轨道的能级,尽管能量偏移很小,但从稳态光致发光和瞬态吸收光谱中也清楚地观察到PBBF11和ITIC之间有效的电子/空穴转移由于在ITIC中测得的低激子结合能得到支持,因此,基于PBBF11:ITIC的OSC提供了令人鼓舞的10.02%的功率转换效率(PCE),尽管PBBF11和ITIC的良好混溶性可诱导均匀的共混膜形态因此,具有不同的负载比的PC 71 BM富勒烯受体添加e以调节膜形态以有效地减少电荷复合。结果,基于PBBF11:ITIC:PC 71 BM的最佳OSC无需任何添加或退火处理即可产生11.4%的更好PCE。

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