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Synergistic Effects of Morphological Control and Complementary Absorption in Efficient All-Small-Molecule Ternary-Blend Solar Cells

机译:高效全小分子三元混合太阳能电池的形态控制和互补吸收的协同效应

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In this study, we combined two small-molecule donors-a diketopyrrolopyrrole-based small molecule (SMD) and a benzodithiophene-based molecule (BDT6T)-with [6,6]-phenyl-C-61-butyric acid methyl ester (PC61BM) to form ternary blend solar cells. The power conversion efficiency of the binary SMD:PC61BM bulk heterojunction solar cell improved from 4.57 to 6.28% after adding an appropriate amount BDT6T as a guest. We attribute this 37% improvement in device performance to the complementary absorption behavior of BDT6T and SMD, as evidenced by the increase in the short circuit current. After addition of BDT6T to form the ternary blend, the crystallinity and morphology of the active layer were enhanced. For example, the features observed in the ternary active layers were finer than those in the binary blends. This means that BDT6T as a third component in the ternary blend has effective role on both the absorption and the morphology. In addition, adding BDT6T to form the ternary blend also led to an increase in the open-circuit voltage. Our findings suggest that the preparation of such simple all-small-molecule ternary blends can be an effective means of improving the efficiency of photovoltaic devices.
机译:在这项研究中,我们将两个小分子供体-一个基于二酮吡咯并吡咯的小分子(SMD)和一个基于苯并二噻吩的分子(BDT6T)-与[6,6]-苯基-C-61-丁酸甲酯(PC61BM )形成三元混合太阳能电池。在添加适量的BDT6T作为客体后,二元SMD:PC61BM本体异质结太阳能电池的功率转换效率从4.57提高到6.28%。我们将设备性能的这种37%的改善归因于BDT6T和SMD的互补吸收行为,这由短路电流的增加证明。加入BDT6T形成三元共混物后,活性层的结晶度和形态得到增强。例如,在三元活性层中观察到的特征比在二元共混物中观察到的特征要细。这意味着BDT6T作为三元共混物中的第三种成分对吸收和形态均具有有效作用。此外,添加BDT6T形成三元混合物也导致开路电压增加。我们的发现表明,制备这种简单的全小分子三元共混物可以是提高光伏器件效率的有效手段。

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