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High-performance ternary blend polymer solar cells involving both energy transfer and hole relay processes

机译:涉及能量转移和空穴中继过程的高性能三元共混聚合物太阳能电池

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The integration of multiple materials with complementary absorptions into a single junction device is regarded as an efficient way to enhance the power conversion efficiency (PCE) of organic solar cells (OSCs). However, because of increased complexity with one more component, only limited high-performance ternary systems have been demonstrated previously. Here we report an efficient ternary blend OSC with a PCE of 9.2%. We show that the third component can reduce surface trap densities in the ternary blend. Detailed studies unravel that the improved performance results from synergistic effects of enlarged open circuit voltage, suppressed trap-assisted recombination, enhanced light absorption, increased hole extraction, efficient energy transfer and better morphology. The working mechanism and high device performance demonstrate new insights and design guidelines for high-performance ternary blend solar cells and suggest that ternary structure is a promising platform to boost the efficiency of OSCs.
机译:将具有互补吸收的多种材料集成到单个结器件中,被认为是增强有机太阳能电池(OSC)的功率转换效率(PCE)的有效方法。但是,由于增加了组件的复杂性,以前仅演示了有限的高性能三元系统。在这里,我们报告了有效的三元混合OSC,PCE为9.2%。我们表明,第三组分可以降低三元混合物中的表面陷阱密度。详细的研究表明,提高性能的原因是开路电压增大,抑制陷阱辅助的重组,增加光吸收,增加空穴提取,有效的能量转移和更好的形貌的协同效应。工作机制和高设备性能证明了高性能三元混合太阳能电池的新见识和设计指南,并表明三元结构是提高OSC效率的有前途的平台。

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