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The effect of fullerene derivatives ratio on P3HT-based organic solar cells

机译:富勒烯衍生物比对P3HT基有机太阳能电池的影响

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The effect of fullerene ratio PCBM and ICBA on the P3HT-based solar cells were investigated under ambient conditions; the ratio was varied in the range of 1-3. The optical, morphological, structural, and electrical characteristics were investigated both in dark and under illumination. The absorption spectra have revealed a decrease in the intensities by increasing the fullerene ratio and the peaks were blue shifted. Moreover, florescence spectra demonstrated charge transfer from P3HT to fullerene molecules due to uniform distribution of fullerene domains within the P3HT matrix. XRD patterns have shown a strong reduction in the crystallinity by increasing the ratio of fullerene within the blend. Furthermore, AFM images showed smother surface corresponding to pinholes with higher ratio while rougher surface with lower fullerene ratio was observed. The best performance was recorded for P3HT:PCBM (3:1) with V_(OC) = 0.58 volt, J_(SC) = 9.9 mA.cm~(-2) and PCE 1.82%. The fill factor (FF) was found to be small for all studied samples which could be associated with the preparation conditions where all samples were prepared under normal ambient. Devices which demonstrated best performance were attributed to improved crystallinity and enhanced light absorption of the active layer.
机译:在环境条件下研究了富勒烯比PCBM和ICBA对P3HT的太阳能电池的影响;该比率在1-3的范围内变化。在黑暗和照明中研究了光学,形态,结构和电气特性。吸收光谱通过增加富勒烯比率并增加饱和度,峰值是蓝色的偏移的降低。此外,由于P3HT基质内的富勒烯结构域的均匀分布,荧光光谱表现出从P3HT到富勒烯分子的电荷转移。 XRD图案通过增加混合物内富勒烯的比例,在结晶度方案中显示出强烈的结晶度。此外,AFM图像显示出对应于具有较高比率的针孔的表面差,而观察到具有较低富勒烯比的粗糙表面。对于P3HT的最佳性能为P3HT:PCBM(3:1),V_(OC)= 0.58伏,J_(SC)= 9.9 mA.cm〜(-2)和PCE 1.82%。发现填充因子(FF)对于所有研究的样品较小,这些样品可能与在正常环境中制备所有样品的制备条件相关。显示最佳性能的装置归因于改善结晶度和增强的活性层的光吸收。

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