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Improving the long-term stability of PBDTTPD polymer solar cells through material purification aimed at removing organic impurities

机译:提高pBDTTpD聚合物太阳能电池的长期稳定性

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摘要

While bulk heterojunction (BHJ) solar cells fabricated from high Mn PBDTTPD achieve power conversion efficiencies (PCE) as high as 7.3%, the short-circuit current density (JSC) of these devices can drop by 20% after seven days of storage in the dark and under inert conditions. This degradation is characterized by the appearance of S-shape features in the reverse bias region of current–voltage (J–V) curves that increase in amplitude over time. Conversely, BHJ solar cells fabricated from low Mn PBDTTPD do not develop S-shaped J–V curves. However, S-shapes identical to those observed in high Mn PBDTTPD solar cells can be induced in low Mn devices through intentional contamination with the TPD monomer. Furthermore, when high Mn PBDTTPD is purified via size exclusion chromatography (SEC) to reduce the content of low molecular weight species, the JSC of polymer devices is significantly more stable over time. After 111 days of storage in the dark under inert conditions, the J–V curves do not develop S-shapes and the JSC degrades by only 6%. The S-shape degradation feature, symptomatic of low device lifetimes, appears to be linked to the presence of low molecular weight contaminants, which may be trapped within samples of high Mn polymer that have not been purified by SEC. Although these impurities do not affect initial device PCE, they significantly reduce device lifetime, and solar cell stability is improved by increasing the purity of the polymer materials.
机译:虽然由高Mn PBDTTPD制成的体异质结(BHJ)太阳能电池可实现高达7.3%的功率转换效率(PCE),但将这些器件在电池中存放7天后,其短路电流密度(JSC)可能下降20%。黑暗且在惰性条件下。这种退化的特征是在电流-电压(J-V)曲线的反向偏置区域中出现了S形特征,其幅度随时间增加。相反,由低锰PBDTTPD制成的BHJ太阳能电池不会形成S形的J–V曲线。但是,通过故意地被TPD单体污染,可以在低Mn器件中诱发出与高Mn PBDTTPD太阳能电池中观察到的S形相同的形状。此外,当通过尺寸排阻色谱法(SEC)纯化高锰含量的PBDTTPD以减少低分子量物质的含量时,聚合物器件的JSC随时间推移将更加稳定。在惰性条件下于黑暗中存放111天后,J–V曲线不会发展为S形,而JSC仅下降6%。 S形降解特征是低器件寿命的征兆,似乎与低分子量污染物的存在有关,低分子量污染物的存在可能被捕获在未经SEC纯化的高锰聚合物样品中。尽管这些杂质不会影响初始器件的PCE,但它们会大大缩短器件的使用寿命,并且通过提高聚合物材料的纯度可以提高太阳能电池的稳定性。

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