Grancharov Georgy, Atanasova Mariya-Desislava, Kalinova Radostina, Gergova Rositsa, Popkirov Georgi, Dikov Christosko, Sendova-Vassileva Marushka
Institute of Polymers, Bulgarian Academy of Sciences, Akad. G. Bonchev St., Block 103-A, 1113 Sofia, Bulgaria.
Central Laboratory of Solar Energy and New Energy Sources, 72 Tzarigradsko Chaussee, 1784 Sofia, Bulgaria.
Molecules. 2021 Nov 15;26(22):6890. doi: 10.3390/molecules26226890.
In this study, some crucial parameters were determined of flexible polymer-organic solar cells prepared from an active layer blend of poly(3-hexylthiophene) (P3HT) and the fullerene derivative [6,6]-phenyl-C-butyric acid methyl ester (PCBM) mixed in 1:1 mass ratio and deposited from chlorobenzene solution by spin-coating on poly(ethylene terephthalate) (PET)/ITO substrates. Additionally, the positive effect of an electron transport layer (ETL) prepared from zinc oxide nanoparticles (ZnO np) on flexible photovoltaic elements' performance and stability was investigated. Test devices with above normal architecture and silver back electrodes deposed by magnetron sputtering were constructed under environmental conditions. They were characterized by current-voltage (I-V) measurements, quantum efficiency, impedance spectroscopy, surface morphology, and time-degradation experiments. The control over morphology of active layer thin film was achieved by post-deposition thermal treatment at temperatures of 110-120 °C, which led to optimization of device morphology and electrical parameters. The impedance spectroscopy results of flexible photovoltaic elements were fitted using two R||CPE circuits in series. Polymer-organic solar cells prepared on plastic substrates showed comparable current-voltage characteristics and structural properties but need further device stability improvement according to traditionally constructed cells on glass substrates.
在本研究中,确定了由聚(3-己基噻吩)(P3HT)与富勒烯衍生物[6,6]-苯基-C-丁酸甲酯(PCBM)按质量比1:1混合的活性层共混物制备,并通过旋涂从氯苯溶液沉积在聚对苯二甲酸乙二酯(PET)/ITO衬底上的柔性聚合物-有机太阳能电池的一些关键参数。此外,研究了由氧化锌纳米颗粒(ZnO np)制备的电子传输层(ETL)对柔性光伏元件性能和稳定性的积极影响。在环境条件下构建了具有上述常规结构和通过磁控溅射沉积的银背电极的测试器件。通过电流-电压(I-V)测量、量子效率、阻抗谱、表面形貌和时间降解实验对其进行表征。通过在110-120°C的温度下进行沉积后热处理实现了对活性层薄膜形貌的控制,这导致了器件形貌和电学参数的优化。柔性光伏元件的阻抗谱结果使用两个串联的R||CPE电路进行拟合。在塑料衬底上制备的聚合物-有机太阳能电池表现出可比的电流-电压特性和结构性能,但根据传统在玻璃衬底上构建的电池,其器件稳定性需要进一步提高。