Shoaee Safa, Luong Hoang M, Song Jiage, Zou Yingping, Nguyen Thuc-Quyen, Neher Dieter
Optoelectronics of Disordered Semiconductors, Institute of Physics and Astronomy, University of Potsdam, D-14476, Potsdam-Golm, Germany.
Paul-Drude-Institut für Festkörperelektronik, Leibniz-Institut im Forschungsverbund Berlin e.V., 10117, Berlin, Germany.
Adv Mater. 2024 May;36(20):e2302005. doi: 10.1002/adma.202302005. Epub 2023 Oct 28.
Over the past three years, remarkable advancements in organic solar cells (OSCs) have emerged, propelled by the introduction of Y6-an innovative A-DA'D-A type small molecule non-fullerene acceptor (NFA). This review provides a critical discussion of the current knowledge about the structural and physical properties of the PM6:Y6 material combination in relation to its photovoltaic performance. The design principles of PM6 and Y6 are discussed, covering charge transfer, transport, and recombination mechanisms. Then, the authors delve into blend morphology and degradation mechanisms before considering commercialization. The current state of the art is presented, while also discussing unresolved contentious issues, such as the blend energetics, the pathways of free charge generation, and the role of triplet states in recombination. As such, this review aims to provide a comprehensive understanding of the PM6:Y6 material combination and its potential for further development in the field of organic solar cells. By addressing both the successes and challenges associated with this system, this review contributes to the ongoing research efforts toward achieving more efficient and stable organic solar cells.
在过去三年里,随着Y6(一种创新的A-DA'D-A型小分子非富勒烯受体(NFA))的引入,有机太阳能电池(OSC)取得了显著进展。本综述对PM6:Y6材料组合的结构和物理性质与其光伏性能相关的现有知识进行了批判性讨论。讨论了PM6和Y6的设计原则,涵盖电荷转移、传输和复合机制。然后,作者在考虑商业化之前深入探讨了共混物形态和降解机制。介绍了当前的技术水平,同时也讨论了未解决的有争议问题,如共混物能量学、自由电荷产生途径以及三重态在复合中的作用。因此,本综述旨在全面了解PM6:Y6材料组合及其在有机太阳能电池领域进一步发展的潜力。通过解决与该系统相关的成功和挑战,本综述有助于正在进行的旨在实现更高效、更稳定的有机太阳能电池的研究工作。