Liu Jiangang, Zhang Yutong, Liu Xingpeng, Wen Liangquan, Wan Longjing, Song Chunpeng, Xin Jingming, Liang Qiuju
School of Electronics and Information, Northwestern Polytechnical University, Xi'an, 710129, P.R. China.
School of Microelectronics, Northwestern Polytechnical University, Xi'an, 710129, P.R. China.
Small Methods. 2024 Dec;8(12):e2301803. doi: 10.1002/smtd.202301803. Epub 2024 Feb 22.
Organic solar cells (OSCs) are considered as a promising new generation of clean energy. Bulk heterojunction (BHJ) structure has been widely employed in the active layer of efficient OSCs. However, precise regulation of morphology in BHJ is still challenging due to the competitive coupling between crystallization and phase separation. Recently, a novel pseudo-planar heterojunction (PPHJ) structure, prepared through solution sequential deposition, has attracted much attention. It is an easy-to-prepare structure in which the phase separation structures, interfaces, and molecular packing can be separately controlled. Employing PPHJ structure, the properties of OSCs, such as power conversion efficiency, stability, transparency, flexibility, and so on, are usually better than its BHJ counterpart. Hence, a comprehensive understanding of the film-forming process, morphology control, and device performance of PPHJ structure should be considered. In terms of the representative works about PPHJ, this review first introduces the fabrication process of active layers based on PPHJ structure. Second, the widely applied morphology control methods in PPHJ structure are summarized. Then, the influences of PPHJ structure on device performance and other property are reviewed, which largely expand its application. Finally, a brief prospect and development tendency of PPHJ devices are discussed with the consideration of their challenges.
有机太阳能电池(OSCs)被认为是有前景的新一代清洁能源。体异质结(BHJ)结构已被广泛应用于高效有机太阳能电池的活性层。然而,由于结晶和相分离之间的竞争耦合,精确调控BHJ中的形态仍然具有挑战性。最近,通过溶液顺序沉积制备的新型伪平面异质结(PPHJ)结构引起了广泛关注。它是一种易于制备的结构,其中相分离结构、界面和分子堆积可以分别控制。采用PPHJ结构,有机太阳能电池的性能,如功率转换效率、稳定性、透明度、柔韧性等,通常优于其BHJ对应物。因此,应全面了解PPHJ结构的成膜过程、形态控制和器件性能。就关于PPHJ的代表性工作而言,本综述首先介绍基于PPHJ结构的活性层的制备过程。其次,总结了PPHJ结构中广泛应用的形态控制方法。然后,综述了PPHJ结构对器件性能和其他性能的影响,这在很大程度上扩展了其应用。最后,考虑到PPHJ器件面临的挑战,对其进行了简要展望和发展趋势讨论。