Park Jong Hyeok, Lee Tae-Woo, Chin Byung-Doo, Wang Dong Hwan, Park O Ok
Department of Chemical Engineering, Sungkyunkwan University, Suwon, Gyeonggi-do, Korea.
Macromol Rapid Commun. 2010 Dec 15;31(24):2095-108. doi: 10.1002/marc.201000310. Epub 2010 Sep 20.
This review discusses interfacial layers in organic photovoltaic devices. The first part of the review focuses on the hole extraction layer, which is located between a positive electrode and an organic photoactive material. Strategies to improve hole extraction from the photoactive layer include incorporation of several different types of hole extraction layers, such as conductive polymeric materials, self-assembled molecules and metal oxides, as well as surface treatment of the positive electrodes and the conductive polymeric layers. In the second part, we review recent research on interlayers that are located between a negative electrode and a photoactive layer to efficiently extract electrons from the active layer. These materials include titanium oxides, metal fluorides and other organic layers.
本综述讨论了有机光伏器件中的界面层。综述的第一部分聚焦于空穴提取层,其位于正电极和有机光活性材料之间。改善从光活性层提取空穴的策略包括引入几种不同类型的空穴提取层,如导电聚合物材料、自组装分子和金属氧化物,以及对正电极和导电聚合物层进行表面处理。在第二部分中,我们综述了最近关于位于负电极和光活性层之间以有效从活性层提取电子的中间层的研究。这些材料包括氧化钛、金属氟化物和其他有机层。