Manna Arun K, Lee Myeong H, McMahon Kayla L, Dunietz Barry D
Department of Chemistry, Kent State University , Kent, Ohio 44242, United States.
J Chem Theory Comput. 2015 Mar 10;11(3):1110-7. doi: 10.1021/ct501018n.
Recently developed optimally tuned range-separated hybrid (OT-RHS) functionals within time-dependent density functional theory have been shown to address existing limitations in calculating charge transfer excited state energies. The RSH success in improving the calculation of CT states stems from enforcing the correspondence of the frontier molecular orbitals (FMOs) to physical properties, where the highest occupied MO energy relates to the ionization potential and the lowest unoccupied MO energy relates to the electron affinity. However, in this work, we show that a less accurate description of CT states that involves non-FMOs is afforded by the RSH approach. In order to achieve a high quality description of such higher energy CT states, the parameter tuning procedure, which lies at the foundation of the RSH approach, needs to be generalized to consider the CT process. We demonstrate the need for improved description of such CT states in donor-acceptor systems, where the optimal tuning parameter is accounting for the state itself.
最近在含时密度泛函理论中发展起来的最优调谐范围分离杂化(OT-RHS)泛函已被证明可解决电荷转移激发态能量计算中的现有局限性。范围分离杂化(RSH)在改进电荷转移(CT)态计算方面的成功源于强制前沿分子轨道(FMO)与物理性质的对应关系,其中最高占据分子轨道能量与电离势相关,最低未占据分子轨道能量与电子亲和势相关。然而,在这项工作中,我们表明RSH方法对涉及非FMO的CT态描述不够准确。为了实现对这类高能CT态的高质量描述,作为RSH方法基础的参数调谐过程需要推广以考虑CT过程。我们证明了在供体-受体系统中对这类CT态进行改进描述的必要性,其中最优调谐参数考虑了态本身。