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Preparation of active layer of solar cells device by F8T2 blending with PCBM

机译:F8T2与PCBM混合制备太阳能电池器件有源层

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The conjugated polymer blending system has been attracting much attention in recent years due to their potential applications in optoelectronic devices, thin-film transistors, and photovoltaic devices with many advantages like easy preparation, low-cost, and the possibility to fabricate flexible devices for large area applications. In this study, Conjugated polymer Poly(9,9'-n-dioctylfluorene-alt-bithiophene) (F8T2) blended with [6,6]-phenyl-C61-butyric acid methyl Ester (PCBM) to prepare as the active layer in solar cells device. The basic thermal characteristic and phase transitions of the polymer blending layers were examined by using of Differential Scanning Calorimeter (DSC) and Thermo gravimeteric Analyzer (TGA). Morphology evolutions of casting submicron layers via different annealing conditions were observed by atomic force microscopy (AFM), field-emission scanning electron microscopy (FE-SEM). The optical properties of active Layer of polymer solar cells by different stacked mode designs also investigated by UV-Vis absorption and photoluminescence (PL) spectra. It is found that the maximum absorption wavelength of liquid F8T2 and of PCBM were located at 436 nm and 342 nm, respectively. The corresponding conversion efficiency of devices specimens were prepared by screen printing in different stacking modes. In the present study, the experimental works focus on investigating the influence of thermal annealing conditions and stacking mode design on morphology and corresponding conversion efficiency performance of solar cell devices. The results will provide plenty of valuable information for the future optoelectronic applications.
机译:共轭聚合物共混体系由于其在光电子器件,薄膜晶体管和光伏器件中的潜在应用而近年来备受关注,其具有许多优点,例如易于制备,低成本以及可制造大尺寸柔性器件的可能性。区域应用。在这项研究中,共轭聚合物聚(9,9'-n-二辛基芴-alt-联噻吩)(F8T2)与[6,6]-苯基-C61-丁酸甲基酯(PCBM)共混以制备为活性层太阳能电池装置。使用差示扫描量热仪(DSC)和热重分析仪(TGA)检查了聚合物共混层的基本热特性和相变。通过原子力显微镜(AFM),场发射扫描电子显微镜(FE-SEM)观察了通过不同退火条件铸造的亚微米层的形貌演变。还通过紫外-可见吸收和光致发光(PL)光谱研究了通过不同堆叠模式设计的聚合物太阳能电池活性层的光学性质。发现液体F8T2和PCBM的最大吸收波长分别位于436nm和342nm。通过在不同的堆叠方式下丝网印刷来制备相应的器件标本转换效率。在本研究中,实验工作集中于研究热退火条件和堆叠模式设计对太阳能电池器件的形态和相应的转换效率性能的影响。结果将为未来的光电应用提供大量有价值的信息。

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