材料科学
有机太阳能电池
三氧化钼
能量转换效率
工作职能
光电子学
异质结
光伏系统
混合太阳能电池
钼
单层
图层(电子)
工作(物理)
聚合物太阳能电池
有机分子
二硫化钼
电流密度
纳米技术
表面改性
化学工程
小分子
自组装单层膜
表征(材料科学)
分子
活动层
电流(流体)
无机化学
作者
Qiao Zheng,Ziqi Zhou,Yifan Xie,Jionghua Wu,Deng Hui,Caixia Zhang,Weihuang Wang,Shuying Cheng
标识
DOI:10.1088/1361-6463/ae357d
摘要
Abstract Molybdenum trioxide (MoO 3 ) is widely employed as hole transport layers (HTLs) in inverted organic solar cells (IOSCs). However, it still suffers from inadequate hole extraction. To address this challenge, we developed a novel surface modification strategy using a self-assembled molecules [4-(3,6-dimethyl-9H-carbazol-9-yl) butyl] phosphonic acid (Me-4PACz). The modification significantly enhances the hole extraction, reduces electrical resistance, and increases the work function of MoO 3 film. When applied to single-junction IOSCs based on the PM6:Y6 bulk heterojunction system, the modified MoO 3 HTL demonstrates a remarkable improvement in power conversion efficiency from 16.25% to 17.26%. Comprehensive characterization reveals that the Me-4PACz modification leads to substantial enhancements in both short-circuit current density ( J SC ) and fill factor. Notably, the modified devices also exhibit improved operational stability, suggesting the great potential interfacial engineering strategy for the high performance of IOSCs.
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