结晶动力学过程对有机太阳能电池活性层形态影响的最新研究进展

Qiuju Liang, Mingzhi Duan, Xingpeng Liu, Haolei Zhu, Kaiqi Yang, Wen Zhang, Jingming Xin, Jiangang Liu
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引用次数: 0

摘要

有机太阳能电池(OSCs)因其重量轻、成本低、半透明和易于溶液加工而受到广泛关注。通过不断改进材料设计、活性层形态和器件制造技术,有机太阳能电池的功率转换效率(PCE)已超过 20%。活性层的形态(包括相分离结构、分子结晶度和畴的大小)对性能起着至关重要的作用,而供体和受体的结晶动力学对性能影响很大。因此,全面了解动力学如何影响薄膜结构,以及如何有效利用动力学程序来增强 OSC 中活性层的结构至关重要。本综述介绍了动力学表征的方法和原理。随后,概述了成膜控制和后退火过程的最新进展,揭示了其基本机制。最后,对 OSC 的潜力和未来进行了展望和预测。研究人员可以通过本综述全面了解动态过程如何影响形态,从而有可能提高 OSC 的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent advances in effect of crystallization dynamics process on the morphology of active layer in organic solar cells

Recent advances in effect of crystallization dynamics process on the morphology of active layer in organic solar cells

Recent advances in effect of crystallization dynamics process on the morphology of active layer in organic solar cells

Organic solar cells (OSCs) have received widespread attention due to their light weight, low cost, semitransparency, and ease-of-solution processing. By continuously improving materials design, active layer morphology, and device fabrication techniques, the power conversion efficiency (PCE) of OSCs have exceeded 20%. The morphology of the active layer, which includes the phase separation structure, the degree of crystallinity of molecules, and the domain sizes, plays a critically important role in the performance, which is significantly influenced by the crystallization dynamics of the donor and acceptor. Therefore, it is crucial to comprehensively understand how the dynamics impact the film structure and how to effectively employ the kinetic procedure to enhance the structure of the active layer in OSCs. In this review, the methods and principles of kinetics characterization were introduced. Afterward, the latest advancements in the control of film-forming and the post annealing process are outlined, unveiling the underlying mechanism. In conclusion, the potential and future of OSCs were anticipated and projected. Researchers may gain a comprehensive understanding of how dynamic process affects the morphology through this review, potentially enhancing the performance of OSCs.

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