论文标题

关于非三重激体损失途径在非富烯受体基于有机太阳能电池中

On the Absence of Triplet Exciton Loss Pathways in Non-Fullerene Acceptor based Organic Solar Cells

论文作者

Kotova, Maria S., Londi, Giacomo, Junker, Johannes, Dietz, Stefanie, Privitera, Alberto, Tvingstedt, Kristofer, Beljonne, David, Sperlich, Andreas, Dyakonov, Vladimir

论文摘要

我们通过考虑由三胞胎激子(TE)形成引起的效率损失通道和稳定性问题,研究了基于非富勒烯受体(NFA)的高效有机太阳能电池(OSC)的生存能力。使用电气,光学和自旋敏感的方法制造并研究了基于共轭供体聚合物PBDB-T和ITIC作为受体的OSCS的OSC。通过密度功能理论(DFT)建模计算了分子TES的自旋 - 汉密尔顿参数和ITIC中的电荷转移TE的参数。另外,得出了描述供体混合物中光物理过程的能量模型。自旋敏感的光致发光测量证明了在纯材料和混合物中混合物中电荷转移(CT)状态的形成。但是,在工作条件下,通过自旋敏感的电测量值在完成的设备中未观察到分子TE信号。缺乏分子三重态人群,可以消除长期三胞胎状态促进的电荷载体损耗通道和不可逆的光氧化。这些结果与PBDB-T:基于ITIC的OSC及其高稳定性的高功率转换效率良好相关。

We investigate the viability of highly efficient organic solar cells (OSCs) based on non-fullerene acceptors (NFA) by taking into consideration efficiency loss channels and stability issues caused by triplet excitons (TE) formation. OSCs based on a blend of the conjugated donor polymer PBDB-T and ITIC as acceptor were fabricated and investigated with electrical, optical and spin-sensitive methods. The spin-Hamiltonian parameters of molecular TEs and charge transfer TEs in ITIC e.g., zero-field splitting and charge distribution, were calculated by Density Functional Theory (DFT) modelling. In addition, the energetic model describing the photophysical processes in the donor-acceptor blend was derived. Spin-sensitive photoluminescence measurements prove the formation of charge transfer (CT) states in the blend and the formation of TEs in the pure materials and the blend. However, no molecular TE signal is observed in the completed devices under working conditions by spin-sensitive electrical measurements. The absence of a molecular triplet state population allows to eliminate a charge carrier loss channel and irreversible photooxidation facilitated by long-lived triplet states. These results correlate well with the high power conversion efficiency of the PBDB-T:ITIC-based OSCs and their high stability.

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