材料科学
有机太阳能电池
异质结
三元运算
平面的
光电子学
聚合物太阳能电池
结晶度
活动层
能量转换效率
纳米技术
图层(电子)
聚合物
复合材料
计算机科学
计算机图形学(图像)
薄膜晶体管
程序设计语言
作者
Siqi Liu,Dong Chen,Xiaotian Hu,Zhi Xing,Ji Wan,Lin Zhang,Licheng Tan,Weihua Zhou,Yiwang Chen
标识
DOI:10.1002/adfm.202003223
摘要
Abstract Bulk heterojunction (BHJ) processing technology has had an irreplaceable role in the development of organic solar cells (OSCs) in the past decades due to the significant advantages in achieving high‐power conversion efficiency (PCE). However, the difficulty in exploring and regulating morphology makes it inadequate for upscaling large‐area OSCs. In this work, printable high‐performance ternary devices are fabricated by a pseudo‐planar heterojunction (PPHJ) strategy. The fullerene derivative indene‐C 60 bisadduct (ICBA) is incorporated into PM6/IT‐4F system to expand the vertical phase separation and facilitate an obvious PPHJ structure. After the addition of ICBA, the IT‐4F enriches on the surface of active layer, while PM6 is accumulated underneath. Furthermore, it increases the crystallinity of PM6, which facilitates exciton dissociation and charge transfer. Accordingly, 1.05 cm 2 devices are fabricated by blade‐coating with an enhanced PCE of 14.25% as compared to the BHJ devices (13.73%). The ternary PPHJ strategy provides an effective way to optimize the vertical phase separation of organic semiconductor during scalable printing methods.
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