Effect of an Ultra-thin Molybdenum Trioxide Layer and Illumination Intensity on the Performance of Organic Photovoltaic Devices
作者:Fujun Zhang, Fengyong Sun, Yuzhu Shi, Zuliang Zhuo, Lifang Lu, Dewei Zhao, Zheng Xu, Yongsheng Wang · 发表于:Energy & Fuels · 年份:2010 · DOI:10.1021/ef901325e · 被引用次数:32 · 研究领域:Organic Electronics and Photovoltaics、Conducting polymers and applications、Thin-Film Transistor Technologies
The effect of an ultra-thin molybdenum trioxide (MoO 3 ) layer thickness inserted between the indium tin oxide (ITO) substrate and copper phthalocyanine (CuPc) layer on the performance of organic photovoltaic devices (OPVs) was studied. Experimental results demonstrate that the short-circuit current density ( J sc ) was decreased slightly with the increase of MoO 3 thickness; meanwhile, the fill factor (FF) was increased from 53.5 to 57.7%, respectively, leading to the improved power conversion efficiency with the optimal thickness of MoO 3 (1 nm). The experimental results also reveal that the Ohmic contact is formed with the deposition of MoO 3 . Further, the effect of the MoO 3 layer was checked from the variation of the performance of OPVs under different illumination intensities. It was found that the MoO 3 layer could effectively prevent exciton quenching at the ITO anode side, resulting in the small variation of the FF for the devices with the MoO 3 layer compared to the devices without the MoO 3 layer under high illumination intensity.