Romo-Gutiérrez Alessandro, Cisneros-García Zuriel Natanael, Méndez-Barrientos Carlos Iván, Rodriguez-Zavala Jaime Gustavo
Departamento de Ciencias Exactas y Tecnología, Centro Universitario de los Lagos, Universidad de Guadalajara, Enrique Díaz de León 1144, Lagos de Moreno, 47460, Jalisco, México.
Chemphyschem. 2025 Aug 25:e2500412. doi: 10.1002/cphc.202500412.
This study explores the molecular structures and properties of quinoxaline-based donor materials complexed with highly efficient electron-acceptor molecules in organic solar cells. Employing density functional theory calculations, the interaction between PBQX (X = 5-F, 6-F, 5-Cl, 5-Br, 6-Cl, 6-Br) electron donors and two well-known electron acceptors (Y6 and BTP-4Br) is systematically analyzed. Variations in the halogen atoms of donor compounds are examined to assess their impact on the electronic structure of donor-acceptor complexes. Halogen atoms (F, Cl, Br) in quinoxylated donors influence weak interactions, crucial for charge transport. Since dipole moment and intermolecular electric field play a significant role in molecular packing and exciton separation, they are also studied, predicting the best performance of PBQ6-F compared to PBQ5-F. Generally transition density matrix, hole-electron analysis, and charge transfer states in complexes corroborate the better behavior of PBQ6-F over PBQ5-F. Finally, all these findings are reflected in the kinetic study, carried out through Marcus theory for the different donor-acceptor combinations analyzed in this work, which could have implications for future experimental studies. As demonstrated by systematic studies such as the present one, variations in halogen atoms shed light on to propose possible donor-acceptor combinations in organic solar cells.
本研究探索了有机太阳能电池中喹喔啉基给体材料与高效电子受体分子复合后的分子结构和性质。采用密度泛函理论计算,系统分析了PBQX(X = 5-F、6-F、5-Cl、5-Br、6-Cl、6-Br)电子给体与两种著名电子受体(Y6和BTP-4Br)之间的相互作用。研究了给体化合物中卤素原子的变化,以评估其对给体-受体复合物电子结构的影响。喹喔啉化给体中的卤素原子(F、Cl、Br)影响着对电荷传输至关重要的弱相互作用。由于偶极矩和分子间电场在分子堆积和激子分离中起重要作用,因此也对其进行了研究,预测PBQ6-F比PBQ5-F具有最佳性能。一般来说,复合物中的跃迁密度矩阵、空穴-电子分析和电荷转移态证实了PBQ6-F比PBQ5-F具有更好的性能。最后,所有这些发现都反映在动力学研究中,该研究通过Marcus理论对本工作中分析的不同给体-受体组合进行,这可能对未来的实验研究有启示。正如本研究等系统研究所表明的,卤素原子的变化有助于提出有机太阳能电池中可能的给体-受体组合。