Abstract
Molecular aggregations of electron donor and electron acceptor are significantly important for light absorption, exciton separation, and charge transport, which determine the power conversion efficiency (PCE) of organic solar cells (OSCs). Herein, hot solution (HS) casting and thermal annealing (TA)-dependent aggregation behaviors of a new nonfullerene acceptor (NFA), C10-IT4F, are systematically investigated. Upon the TA treatment, the crystallization of C10-IT4F is largely enhanced, and the active layer forms polyhedron crystals in 100 nm scale. This excessive aggregation prevents the exciton diffusion to D-A interfaces and increases charge recombination, leads to a moderate PCE of 11%. In contrast, the HS treatment significantly improves the J-aggregation of C10-IT4F, and thus produces a new absorption feature in the near-infrared region. As a result, OSCs processed by the HS method yield a high PCE of 14.2%. The results highlight the effect of processing methods on the molecular aggregation of NFAs and photovoltaic performance of OSCs.
Author supplied keywords
Cite
CITATION STYLE
Xie, Y., Ye, L., Cai, Y., Zhang, X., Xu, J., Wang, T., … Sun, Y. (2021). Fine-Tuning Aggregation of Nonfullerene Acceptor Enables High-Efficiency Organic Solar Cells. Small Structures, 2(9). https://doi.org/10.1002/sstr.202100055
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.