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Enhancement of Power Efficiency and Stability of P3HT-Based Organic Solar Cells under Elevated Operating-Temperatures by Using a Nanocomposite Photoactive Layer

机译:利用纳米复合光活性层在升高的工作温度下提高P3HT基有机太阳能电池的功率效率和稳定性

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With the aim to find out an enhanced operating-temperature range for photovoltaic device parameters, two types of the photoactive layer were prepared: poly(3-hexylthiophene) (P3HT) and P3HT+nc-TiO2(PTC) thin films. The enhancement obtained for the photoelectrical conversion efficiency of the composite based OSCs is attributed to the presence of nanoheterojunctions of TiO2/P3HT. For the temperature range of 30–70°C, the decrease of the open-circuit potential was compensated by an increase of the fill factor; and the increase in the short-circuit current resulted in an overall increase of the energy conversion efficiency. At elevated temperatures of 60–80°C the efficiency of the P3HT- and PTC-based cells reached a maximum value of 1.6% and 2.1%, respectively. Over this temperature range the efficiency of P3HT-based OSC decreased strongly to zero, whereas for the PTC cells it maintained a value as large as 1.2% at the temperature range of 110–140°C. The improved thermal stability of the composite-based device was attributed to the lowered thermal expansion coefficient of the nanocomposite photoactive layer.
机译:随着消光器件参数的增强的操作温度范围,制备了两种光活性层:聚(3-己基噻吩)(P3HT)和P3HT + NC-TiO 2(PTC)薄膜。基于复合物OSC的光电转换效率获得的增强归因于TiO2 / P3Ht的纳米腔功能的存在。对于30-70°C的温度范围,通过填充因子的增加来补偿开路电位的降低;并且短路电流的增加导致能量转换效率的总体增加。在60-80°C的升高温度下,P3HT和PTC基细胞的效率分别达到1.6%和2.1%的最大值。在该温度范围内,P3HT的OSC的效率强烈降至零,而对于PTC电池,它在110-140℃的温度范围内保持大约1.2%的值。基于复合物的装置的改善的热稳定性归因于纳米复合光活性层的降低的热膨胀系数。

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