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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A morphology control layer of a pyrene dimer enhances the efficiency in small molecule organic photovoltaic cells
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A morphology control layer of a pyrene dimer enhances the efficiency in small molecule organic photovoltaic cells

机译:dim二聚体的形态控制层可提高小分子有机光伏电池的效率

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Improved efficiency in organic photovoltaic (OPV) devices induced by a morphology control donor tayer as an anode buffer layer (ABL) was achieved. We synthesized the pyrene dimer l,l'-dipyrene (lDPy) and applied it in vacuum-evaporated small-molecule-type OPV devices based on pentacene. N,N'-Di(naphthalen-1-yl)-N,N'-diphenyl-[l,l'-biphenyl]-4,4'-diamine (NPD) was used for comparison in the ABLs. While NPD led to a decreased fill factor, the insertion of a lDPy layer with only 1 nm thickness improved the power conversion efficiency (PCE) 1.5-fold compared with that of the device without lDPy. Moreover, 1 nm thick lDPy layers were also incorporated into devices with different donor materials: copper-phthalocyanine and tetraphenyldibenzoperiflanthene. All of the devices showed enhanced short-circuit current densities, which resulted in improvements in the power conversion efficiency. The lDPy tayer prevented hole accumulation owing to its island-like grain structure. The morphologies of the donor layers on top of the lDPy layers were characterized using atomic force microscopy images and X-ray diffraction patterns. The roughness of the pentacene layer was decreased from 4.41 nm to 2.15 nm when a lDPy layer was used, and the pentacene layer on lDPy showed a tilted crystal phase. The tilted pentacene orientation may facilitate perpendicular carrier transport or exciton diffusion through an increase in molecular orbital overlap. lDPy inserted as an ABL can be useful in controlling the morphology of the donor layer, thereby resulting in an improvement in the efficiency of the device.
机译:通过形态控制供体泰勒作为阳极缓冲层(ABL)诱导了有机光伏(OPV)器件效率的提高。我们合成了dim二聚体l,l'-dipyrene(lDPy),并将其应用于基于并五苯的真空蒸发小分子型OPV装置中。 N,N′-二(萘-1-基)-N,N′-二苯基-[1,1′-联苯] -4,4′-二胺(NPD)用于在ABL中进行比较。尽管NPD导致填充因子降低,但与没有lDPy的器件相比,插入厚度仅为1 nm的lDPy层将功率转换效率(PCE)提高了1.5倍。此外,还将1 nm厚的lDPy层结合到具有不同供体材料的器件中:铜-酞菁和四苯基二苯并环戊二烯。所有器件均显示出增强的短路电流密度,从而提高了功率转换效率。由于其岛状晶粒结构,LDPy泰勒防止了空穴积累。使用原子力显微镜图像和X射线衍射图谱来表征位于lDPy层顶部的施主层的形貌。当使用lDPy层时,并五苯层的粗糙度从4.41nm降低到2.15nm,并且在lDPy上的并五苯层显示出倾斜的晶相。倾斜的并五苯取向可以通过增加分子轨道重叠来促进垂直载流子传输或激子扩散。作为ABL插入的1dPy可用于控制供体层的形态,从而导致器件效率的提高。

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