有机太阳能电池中热蒸发和溶液法阴极改性层的比较研究

Shang Feng, Zichen Liu, Hailiang Zhao, Qingqing Yang, Jidong Zhang, D. Qin
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引用次数: 1

摘要

采用热蒸发酞菲啉(Bphen)、掺镱酞菲啉(Bphen:Yb)和溶液处理(N,N-二甲基铵- N-氧化物)丙基苝二酰亚胺(PDINO)阴极修饰层制备了有机太阳能电池。与原始Bphen相比,Bphen:Yb显示出更高的电子迁移率,从而增加了器件的填充因子,表明Bphen中存在弱n掺杂Yb。由于费米能级的钉住,Bphen:Yb与光活性层形成欧姆接触,支撑了高效的电子传递和器件的提取。与传统的PDINO相比,尽管电子迁移率较低,但Bphen:Yb使器件的光吸收增加,器件的形貌更平滑,从而提高了器件的功率转换效率。目前的研究表明,将热蒸发弱氮掺杂阴极修饰层与溶液处理光活性层相结合是制备高效、低成本有机太阳能电池的一种很有前途的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study on thermally evaporated and solution processed cathode modifying layers in organic solar cells
Organic solar cells have been fabricated using cathode modifying layers of thermally evaporated bathophenanthroline (Bphen), ytterbium doped Bphen (Bphen:Yb), and solution processed (N,N-dimethyl-ammonium N-oxide)propyl perylene diimide (PDINO). Compared to pristine Bphen, Bphen:Yb shows higher electron mobility and thereby increases fill factor of device, demonstrating the weak n-doping of Yb in Bphen. As a result of Fermi level pinning, Bphen:Yb forms an ohmic contact with photoactive layer, underpinning efficient electron transport and extraction of device. Compared to conventional PDINO, despite lower electron mobility, Bphen:Yb enables increased optical absorption of device and smoother morphology of device, thereby improving power conversion efficiency of device. The current research points out that the integration of thermally evaporated weakly n-doped cathode modifying layer and solution processed photoactive layer is a promising method to fabricate high-efficiency and low-cost organic solar cells.
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