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Three-Phase Morphology Evolution in Sequentially Solution-Processed Polymer Photodetector: Toward Low Dark Current and High Photodetectivity

机译:依次溶液加工聚合物光电探测器的三相形态演化:朝向低暗电流和高光电探测

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摘要

Sequentially solution-processed polymer photodetectors (SSP PPDs) based on poly(3-hexylthiophene-2,5-diyl) (P3HT)/[6,6]-phenyl C-71-butyric acid methyl ester (PC71BM) are fabricated by depositing the top layers of PC71BM from an appropriate cosolvent of 2-chlorophenol (2-CP)/o-dichlorobenzene (ODCB) onto the predeposited bottom layers of P3HT. By adjusting the ratio of 2-CP/ODCB in the top PC71BM layers, the resulting SSP PPD shows a decreased dark current and an increased photocurrent, leading to a maximum detectivity of 1.23 x 10(12) Jones at a wavelength of 550 nm. This value is 5.3-fold higher than that of the conventional bulk heterojunction PPD. Morphology studies reveal that the PC71BM partially penetrates the predeposited P3HT layer during the spin coating process, resulting in an optimal three-phase morphology with one well-mixed interdiffusion P3HT/PC71BM phase in the middle of the bulk and two pure phases of P3HT and PC71BM at the two electrode sides. We show that the pure phases form high Schottky barriers (2.0 eV) at the active layer/electrodes interface and efficiently block unfavorable reverse charge carrier injection by significantly decreasing the dark current. The interdiffussion phase enlarges the donor-acceptor interfacial area leading to a large photocurrent. We also reveal that the improved performance of SSP PPDs is also due to the enhanced optical absorption, improved P3HT crystallinity, increased charge carrier mobilities, and suppressed bimolecular recombination.
机译:基于聚(3-己基噻吩-2,5-二基)(P3HT)/ [6,6] - 苯基C-71-丁酸甲基酯(PC71BM)的依次溶液加工的聚合物光电探测器(SSP PPDS)通过沉积制备从2-氯苯酚(2-CP)/ O-二氯苯(ODCB)的适当共溶剂的PC71BM的顶层到P3Ht的预脓液底层上。通过调节顶部PC71BM层中的2-CP / ODCB的比率,所得到的SSP PPD表示暗电流降低和增加的光电流,导致波长为550nm的最大探测率为1.23×10(12)琼。该值比传统散装异质结PPD高5.3倍。形态学研究表明,PC71BM在旋转涂覆过程中部分穿透了预沉积的P3HT层,导致在体积的中间和P3HT和PC71BM的两个纯相中中间具有一个良好的混合间隔P3HT / PC71BM相的最佳三相形态在两个电极侧。我们表明,纯相通过显着降低暗电流,在有源层/电极接口处形成高肖特基屏障(& 2.0ev),并有效地阻挡不利的反向电荷载体喷射。间隔阶段扩大了导致大型光电流的供体受体界面区域。我们还揭示了SSP PPDS的改善性能也是由于增强的光学吸收,改善了P3HT结晶度,增加的电荷载流动性和抑制了双分子重组。

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