Qiu Dingding, Adil Muhammad Abdullah, Lu Kun, Wei Zhixiang
Chinese Academy of Sciences Key Laboratory of Nanosystem and Hierarchical Fabrication, Chinese Academy of Sciences Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing, China.
University of Chinese Academy of Sciences, Chinese Academy of Sciences, Beijing, China.
Front Chem. 2020 Nov 24;8:603134. doi: 10.3389/fchem.2020.603134. eCollection 2020.
Bulk heterojunction (BHJ) organic solar cells (OSCs) can be regarded as one of the most promising energy generation technologies for large-scale applications. Despite their several well-known drawbacks, the devices where polymers are employed as the donor are still leading the OSC universe in terms of performance. Such performance generally depends upon various critical factors such as the crystallinity of the material, the crystallization process during the film formation, and also the final film morphology. Despite a few reviews on the structure of the polymer donor materials and device performance, not enough attention has been paid toward the crystallinity problem. Herein, the structure and crystallinity of the representative polymer donor materials and the corresponding device properties have been briefly reviewed. Furthermore, several typical methods for controlling the crystallinity of materials have been summarized and illustrated as well. Moreover, the obstacles lying in the way of successful commercialization of such polymer solar cells have been systematically discussed. The in-depth interpretation of the crystallinity of the polymer donors in this article may stimulate novel ideas in material design and device fabrication.
体相异质结(BHJ)有机太阳能电池(OSC)可被视为最具大规模应用前景的能源生成技术之一。尽管存在一些众所周知的缺点,但以聚合物作为供体的器件在性能方面仍引领着有机太阳能电池领域。这种性能通常取决于各种关键因素,如材料的结晶度、成膜过程中的结晶过程以及最终的薄膜形态。尽管已有一些关于聚合物供体材料结构和器件性能的综述,但对结晶度问题的关注仍不足。在此,对代表性聚合物供体材料的结构和结晶度以及相应的器件性能进行了简要综述。此外,还总结并说明了几种控制材料结晶度的典型方法。此外,还系统地讨论了此类聚合物太阳能电池成功商业化道路上的障碍。本文对聚合物供体结晶度的深入解读可能会激发材料设计和器件制造方面的新想法。