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Efficiency Enhancement in Polymer Solar Cells With a Polar Small Molecule Both at Interface and in the Bulk Heterojunction Layer

机译:界面和体异质结层均具有极性小分子的聚合物太阳能电池的效率增强

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摘要

The polar molecules, including ferroelectric materials with large dipole moments, have been applied as interfacial layers to increase the efficiency of organic solar cells by increasing the bounded charge separation, tuning the energy levels, etc. Here, we report a small polar molecule 2-cyano-3-(4-(diphenylamino) phenyl)acrylic acid (TPACA) that can be either blended in the active layer or at the polymer/electrode interface to increase the efficiency of organic solar cell devices after poling. It is found that the built-in potential of the device is increased by 0.2 V after poling under negative bias. Blending TPACA into the active layer has shown to be a universal method to increase the efficiency of polymer solar cells. The efficiency is increased by 30–90% for all the polymer:fullerene systems tested, with the highest efficiency reaching 7.83% for the poly [4,8-bis-(2-ethyl-hexyl-thiophene-5-yl)-benzo[1,2-b:4,5-b ′]dithiophene-2,6-diyl]-alt-[2-(2′-ethyl-hexanoyl)-thieno [3,4-b]thiophen-4,6-diyl]: [6,6]-phenyl-C -butyric acid methyl ester (PBDTTT-CT:PCBM) system.
机译:极性分子,包括具有大偶极矩的铁电材料,已被用作界面层,通过增加有界电荷的分离,调节能级等来提高有机太阳能电池的效率。在这里,我们报道了一个小的极性分子2可在活性层中或在聚合物/电极界面处共混的氰基-3-(4-(二苯基氨基)苯基)丙烯酸(TPACA),可提高极化后有机太阳能电池装置的效率。发现在负偏压下极化后,器件的内置电势增加了0.2V。将TPACA掺入活性层已被证明是提高聚合物太阳能电池效率的通用方法。所有测试的聚合物:富勒烯体系的效率提高了30–90%,聚[4,8-双-(2-乙基-己基-噻吩-5-基)-苯并benzo的最高效率达到7.83% [1,2-b:4,5-b'] dithiophene-2,6-diyl] -alt- [2-(2'-乙基己基)-噻吩并[3,4-b]噻吩-4,6 -二基]:[6,6]-苯基-C-丁酸甲酯(PBDTTT-CT:PCBM)系统。

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