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Performance enhancement of fullerene-based solar cells by light processing

机译:通过光处理增强富勒烯基太阳能电池的性能

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A key challenge to the commercialization of organic bulk heterojunction solar cells is the achievement of morphological stability, particularly under thermal stress conditions. Here we show that a low-level light exposure processing step during fabrication of blend polymer:PC60BM solar cells can result in a 10-fold increase in device thermal stability and, under certain conditions, enhanced device performance. The enhanced stability is linked to the light-induced oligomerization of PC60BM that effectively hinders their diffusion and crystallization in the blend. We thus suggest that light processing may be a promising, general and cost-effective strategy to optimize fullerene-based solar cell performance. The low level of light exposure required suggests not only that this may be an easily implementable strategy to enhance performance, but also that light-induced PC60BM oligomerization may have inadvertently influenced previous studies of organic solar cell device behaviour.
机译:有机体异质结太阳能电池商业化的关键挑战是形态稳定性的实现,特别是在热应力条件下。在这里,我们显示了在共混聚合物:PC 60 BM太阳能电池制造过程中进行的低水平曝光处理步骤可以使器件的热稳定性提高10倍,并且在某些条件下可以增强器件的性能性能。增强的稳定性与光诱导的PC 60 BM的低聚有关,后者有效地阻碍了PC 60 BM在共混物中的扩散和结晶。因此,我们建议光处理可能是优化基于富勒烯的太阳能电池性能的有前途的,通用的和具有成本效益的策略。所需的低水平曝光不仅表明这可能是一种易于实施的增强性能的策略,而且还表明光诱导的PC 60 BM的低聚可能无意中影响了先前对有机太阳能电池装置的研究行为。

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