J4 ›› 2018, Vol. 35 ›› Issue (1): 86-94.

• 激光应用 • 上一篇    下一篇

基于石墨烯/CuInS2的杂化聚合物太阳电池性能研究

孟维利1,董超1,齐娟娟2,陈俊伟2,王命泰1   

  1. 1. 中科院合肥物质研究院应用技术研究所
    2. 中科院合肥物质研究院
  • 收稿日期:2016-10-08 修回日期:2016-10-12 出版日期:2018-01-28 发布日期:2018-04-04

Performance of hybrid polymer solar cells based on graphene/CuInS2

  • Received:2016-10-08 Revised:2016-10-12 Published:2018-01-28 Online:2018-04-04

摘要: 用石墨烯/CuInS2量子点复合物(rGO/CuInS2-QDs)和聚(2-甲氧基-5-(2-乙基己氧基)-1,4-对苯乙炔)(MEH-PPV)制备了MEH-PPV/rGO-CuInS2杂化聚合物太阳电池。用动态测试的方法研究了电池的电荷传输动力学特点。实验结果表明,与MEH-PPV/rGO器件相比,MEH-PPV/rGO-CuInS2器件的电子传输时间和电子寿命均有显著的增加,我们认为两者增加的主要原因分别是由于CuInS2量子点的表面缺陷态捕获和CuInS2量子点作为阻挡层的存在促进了电子-空穴对的有效分离。而且,我们证实了MEH-PPV/rGO-CuInS2电池中短路电流的增加主要与聚合物中激子分离增加和载流子复合减少有关;器件的开路电压主要是由石墨烯的功函和聚合物的最高已占分子轨道(HOMO)之间的能级差决定,同时受石墨烯中电子浓度的影响。

关键词: CuInS2

Abstract: Solar cells are fabricated by blending the reduced graphene oxide-CuInS2 quantum dots hybrid (rGO/CuInS2-QDS) with poly(2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylene vinylene) (MEH-PPV), producing MEH-PPV/rGO-CuInS2 devices. We studied the MEH-PPV/rGO-CuInS2 devices with dynamic method to reveal the features in charge transport dynamics in the devices. The results show that the MEH-PPV/rGO-CuInS2 devices exhibit significantly increased electron transit time and electron lifetime, which are attributed to the surface electron trapping on the CuInS2-QDS and the barrier effect of CuInS2-QDS on the rGO sheets by increasing the spatial e?h separation, respectively. Moreover, it is demonstrated that the increased short-circuit current in the MEH-PPV/rGO-CuInS2 devices is mainly related to the increased polymer exciton dissociation and reduced charge recombination, while the open-circuit voltage is determined by the energy difference between the highest occupied molecular orbital level of MEH-PPV and the work-function of rGO but significantly correlates with the concentration of the electrons in rGO.

Key words: CuInS2