Lewinska Gabriela, Kanak Jarosław, Sanetra Jerzy, Marszalek Konstanty W
Institute of Electronics, AGH University of Krakow, 30 Mickiewicza Ave., 30-059 Krakow, Poland.
Advanced Diagnostic Equipment Sp z.o.o., Tetmajera Str. 79, 31-352 Krakow, Poland.
Materials (Basel). 2025 Apr 17;18(8):1841. doi: 10.3390/ma18081841.
This study addresses the development and optothermal analysis of donor-acceptor thin layers, including materials universally used in organic photovoltaic cells. This article presents the impact of temperature on the optical properties and morphology of thin films made from materials commonly used in organic solar cells. This research focused on two donor materials (PTB7 and PTB7th) and two non-fullerene acceptors (Y5 and Y6), individually and in binary combinations with PTB7 and PTB7th. This study employed various techniques, including UV-Vis spectroscopy, ellipsometry, and atomic force microscopy (AFM), to analyze changes in the absorption, refractive index, extinction coefficient, and morphology at temperatures ranging from 30 °C to 120 °C. This research shows reversible changes in thickness and absorption with temperature, but the extent of these changes differs between PTB7 and PTB7th. Y5 shows some reversible changes, while Y6 demonstrates greater instability and more permanent changes at higher temperatures. The enhanced thermal stability of binary mixtures compared to single-component materials was observed.
本研究探讨了供体-受体薄层的发展及光热分析,包括有机光伏电池中普遍使用的材料。本文介绍了温度对有机太阳能电池常用材料制成的薄膜的光学性质和形态的影响。本研究聚焦于两种供体材料(PTB7和PTB7th)以及两种非富勒烯受体(Y5和Y6),分别以及与PTB7和PTB7th的二元组合进行研究。本研究采用了多种技术,包括紫外-可见光谱、椭偏仪和原子力显微镜(AFM),以分析在30°C至120°C温度范围内吸收、折射率、消光系数和形态的变化。本研究表明,厚度和吸收随温度发生可逆变化,但PTB7和PTB7th之间这些变化的程度有所不同。Y5表现出一些可逆变化,而Y6在较高温度下表现出更大的不稳定性和更持久的变化。观察到二元混合物与单组分材料相比具有更高的热稳定性。