Department of Chemistry and Biochemistry, The University of Arizona, Tucson, Arizona 85721-0088, United States.
J Am Chem Soc. 2021 Feb 3;143(4):1822-1835. doi: 10.1021/jacs.0c09542. Epub 2021 Jan 25.
In bulk-heterojunction organic solar cells, it is well established that the active-layer morphology significantly impacts device performance. However, morphology control remains very challenging. An interesting step in that direction was recently provided by the development of polymer donors that display a temperature-dependent aggregation behavior in solution; the aggregation characteristics were found indeed to play a determining role in the eventual active-layer morphology. Here, a combination of thermodynamic analyses, molecular dynamics simulations, and long-range corrected density functional theory calculations enables us (i) to establish the Flory-Huggins interaction parameter, χ, as a useful figure of merit that allows us to integrate the contributions from all inter-related molecular interactions and to describe the extent of polymer preaggregation in solution at room temperature; (ii) to correlate the χ values for various polymer solutions to the extent of polymer aggregation and the morphological characteristics of the active layers; and (iii) to assess how polymer-polymer and polymer-solvent intermolecular interactions contribute to the variations in χ values among different polymer solutions. We have chosen to examine four representative polymer donors (PBT4T-2OD, PBTff4T-2OD, PffBT4T-2OD, and PffBTff4T-2DT) in solution in chlorobenzene or dichlorobenzene. With χ as a robust bridge, our results provide an unprecedented, detailed description of the relationships among intermolecular interactions, extent of polymer solution aggregation, and morphological features of the active layers.
在本体异质结有机太阳能电池中,活性层形态对器件性能的影响已得到充分证实。然而,形态控制仍然极具挑战性。最近,通过开发在溶液中表现出温度依赖性聚集行为的聚合物给体,在这方面迈出了有趣的一步;事实上,聚集特性在最终的活性层形态中起着决定性的作用。在这里,热力学分析、分子动力学模拟和长程校正密度泛函理论计算的结合使我们(i)能够确定 Flory-Huggins 相互作用参数 χ,作为一个有用的指标,它可以整合所有相互关联的分子相互作用的贡献,并描述聚合物在室温下在溶液中的预聚集程度;(ii)将各种聚合物溶液的 χ 值与聚合物聚集程度和活性层的形态特征相关联;(iii)评估聚合物-聚合物和聚合物-溶剂分子间相互作用如何导致不同聚合物溶液之间 χ 值的变化。我们选择在氯苯或二氯苯中研究四个代表性的聚合物给体(PBT4T-2OD、PBTff4T-2OD、PffBT4T-2OD 和 PffBTff4T-2DT)在溶液中的情况。通过 χ 作为坚固的桥梁,我们的结果提供了前所未有的、详细的分子间相互作用、聚合物溶液聚集程度和活性层形态特征之间关系的描述。