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EnergyLevel Tuning of Non-Fullerene Acceptors inOrganic Solar Cells

机译:能源中非富勒烯受体的能级调节有机太阳能电池

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摘要

The use of non-fullerene acceptors in organic photovoltaic (OPV) devices could lead to enhanced efficiencies due to increased open-circuit voltage (VOC) and improved absorption of solar light. Here we systematically investigate planar heterojunction devices comprising peripherally substituted subphthalocyanines as acceptors and correlate the device performance with the heterojunction energetics. As a result of a balance between VOC and the photocurrent, tuning of the interface energy gap is necessary to optimize the power conversion efficiency in these devices. In addition, we explore the role of the charge transport layers in the device architecture. It is found that non-fullerene acceptors require adjusted buffer layers with aligned electron transport levels to enable efficient charge extraction, while the insertion of an exciton-blocking layer at the anode interface further boosts photocurrent generation. These adjustments result in a planar-heterojunction OPV device with an efficiency of 6.9% and a VOC above 1 V.
机译:非富勒烯受体在有机光伏(OPV)器件中的使用可能会因开路电压(VOC)增加和太阳光吸收改善而导致效率提高。在这里,我们系统地研究了平面异质结器件,该器件包含外围取代的亚酞菁作为受体,并将器件性能与异质结能量学相关联。由于VOC和光电流之间存在平衡,因此需要调整界面能隙以优化这些设备中的功率转换效率。此外,我们探索了电荷传输层在设备架构中的作用。发现非富勒烯受体需要调整的缓冲层,其具有对准的电子传输能级以实现有效的电荷提取,而在阳极界面处插入激子阻挡层进一步促进了光电流的产生。这些调整导致平面异质结OPV器件的效率为6.9%,VOC高于1 V.

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