论文标题

能量转移到稳定的供体抑制有机太阳能电池中的降解

Energy Transfer to a Stable Donor Suppresses Degradation in Organic Solar Cells

论文作者

Weu, Andreas, Kumar, Rhea, Butscher, Julian F., Lami, Vincent, Paulus, Fabian, Bakulin, Artem A., Vaynzof, Yana

论文摘要

尽管在改善有机光伏设备的稳定性方面取得了许多进步,但在环境条件下的环境退化仍然是一个充满挑战的未来应用障碍。特别是采用富勒烯衍生物的常规系统容易在照明下氧化,从而限制了它们的适用性。在此,我们报告了小分子供体DRCN5T以及富勒烯受体PC70BM的环境稳定性。我们发现该系统表现出卓越的设备稳定性,这主要是由于几乎恒定的短路电流。通过采用超快的飞秒瞬态吸收光谱,我们将这种显着稳定性归因于两种独立的机制:1)DRCN5T对外部因素具有很高的内在抗药性,没有显示衰退的迹象。 2)高度敏感的PC70BM通过通过超快的远程能量转移到供体的超快远程能量转移而稳定在降解中,从而迅速淬灭富勒烯激发态,这是化学氧化的前体。我们建议将这种光保护机制用于改善其他系统的设备稳定性,包括非富勒烯受体和三元混合物。

Despite many advances towards improving the stability of organic photovoltaic devices, environmental degradation under ambient conditions remains a challenging obstacle for future application. Particularly conventional systems employing fullerene derivatives are prone to oxidise under illumination, limiting their applicability. Herein, we report on the environmental stability of the small molecule donor DRCN5T together with the fullerene acceptor PC70BM. We find that this system exhibits exceptional device stability, mainly due to almost constant short-circuit current. By employing ultrafast femtosecond transient absorption spectroscopy we attribute this remarkable stability to two separate mechanisms: 1) DRCN5T exhibits high intrinsic resistance towards external factors, showing no signs of deterioration. 2) The highly sensitive PC70BM is stabilised against degradation by the presence of DRCN5T through ultrafast long-range energy transfer to the donor, rapidly quenching the fullerene excited states which are otherwise precursors for chemical oxidation. We propose that this photoprotective mechanism be utilised to improve the device stability of other systems, including non-fullerene acceptors and ternary blends.

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