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Morphological investigation of P3HT/PCBM heterojunction and its effects on the performance of bilayer organic solar cells

机译:P3HT / PCBM异质结的形态研究及其对双层有机太阳能电池性能的影响

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摘要

Organic solar cells utilizing a P3HT/PCBM bilayer (BL) as their photoactive layer are fabricated using a sequential solution process. The film morphology and solar cell performance are investigated by changing the thickness of PCBM layer. The power conversion efficiency (PEC) of a BL solar cell strongly depends on the thickness of the PCBM layer; this value increases significantly after thermal annealing above the glass transition temperature of the P3HT. Based on the water contact angle and photoluminescence (PL) measurements, most of the PCBM was diffused into the amorphous P3HT region after thermal annealing. The external quantum efficiency spectrum reveals that the morphology of the P3HT in the BL solar cell is crystalline, even without thermal annealing, in contrast to the bulk heterojunction films. Moreover, thermal annealing improves charge collection efficiency by generating crystalline P3HT and PCBM domains. The transient photovoltage experiments suggest that the morphology of P3HT and PCBM in the BL solar cell reduces the charge recombination better than that in the BHJ solar cell. The BL solar cell exhibits a PEC of 3.54%, similar to that of the BHJ solar cell.
机译:使用顺序溶液工艺来制造利用P3HT / PCBM双层(BL)作为其光敏层的有机太阳能电池。通过改变PCBM层的厚度来研究膜的形态和太阳能电池的性能。 BL太阳能电池的功率转换效率(PEC)很大程度上取决于PCBM层的厚度;在高于P3HT的玻璃化转变温度进行热退火后,该值会显着增加。根据水接触角和光致发光(PL)测量,热退火后,大部分PCBM扩散到非晶P3HT区域。外部量子效率光谱表明,与体异质结薄膜相比,BL太阳能电池中P3HT的形态是晶体,即使没有热退火也是如此。此外,热退火通过生成晶体P3HT和PCBM域来提高电荷收集效率。瞬态光电压实验表明,BL太阳能电池中P3HT和PCBM的形态比BHJ太阳能电池更好地降低了电荷复合。 BL太阳能电池的PEC为3.54%,与BHJ太阳能电池相似。

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