Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan, South Korea.
J Chem Phys. 2023 Jan 28;158(4):044106. doi: 10.1063/5.0132361.
We introduce the combination of the density functional tight binding (DFTB) approach, including onsite correction (OC) and long-range corrected (LC) functional and the state-interaction state-averaged spin-restricted ensemble-referenced Kohn-Sham (SI-SA-REKS or SSR) method with extended active space involving four electrons and four orbitals [LC-OC-DFTB/SSR(4,4)], to investigate exciton couplings in multichromophoric systems, such as organic crystals and molecular aggregates. We employ the LC-OC-DFTB/SSR(4,4) method to calculate the excitonic coupling in anthracene and tetracene. As a result, the LC-OC-DFTB/SSR(4,4) method provides a reliable description of the locally excited (LE) state in a single chromophore and the excitonic couplings between chromophores with reasonable accuracy compared to the experiment and the conventional SSR(4,4) method. In addition, the thermal fluctuation of excitonic couplings from dynamic nuclear motion in an anthracene crystal with LC-OC-DFTB/SSR(4,4) shows a similar fluctuation of excitonic coupling and spectral density with those of first-principle calculations. We conclude that LC-OC-DFTB/SSR(4,4) is capable of providing reasonable features related to LE states, such as Frenkel exciton with efficient computational cost.
我们介绍了密度泛函紧束缚(DFTB)方法的组合,包括局域修正(OC)和长程修正(LC)函数以及态相互作用态平均自旋限制集合参考 Kohn-Sham(SI-SA-REKS 或 SSR)方法,具有涉及四个电子和四个轨道的扩展活性空间[LC-OC-DFTB/SSR(4,4)],以研究多发色团体系中的激子耦合,例如有机晶体和分子聚集体。我们采用 LC-OC-DFTB/SSR(4,4)方法来计算蒽和并五苯中的激子耦合。结果表明,与实验和传统的 SSR(4,4)方法相比,LC-OC-DFTB/SSR(4,4)方法可以可靠地描述单发色团中的局域激发(LE)态和发色团之间的激子耦合,并且具有合理的精度。此外,用 LC-OC-DFTB/SSR(4,4)对含 LC-OC-DFTB/SSR(4,4)的蒽晶体中的动态核运动的激子耦合的热波动显示出与从头计算相似的激子耦合和光谱密度波动。我们得出结论,LC-OC-DFTB/SSR(4,4)能够提供与 LE 态相关的合理特征,例如具有高效计算成本的 Frenkel 激子。