Department of Chemistry, University at Buffalo, State University of New York, Buffalo, NY 14260-3000, USA.
Chemphyschem. 2013 Aug 5;14(11):2450-61. doi: 10.1002/cphc.201300256. Epub 2013 Jun 11.
Nonempirically tuned hybrid density functionals with range-separated exchange are applied to calculations of the first hyperpolarizability (β//) and charge-transfer (CT) excitations of linear "push-pull" donor-acceptor-substituted organic molecules with extended π-conjugated bridges. An unphysical delocalization with increasing chain length in density functional calculations can be reduced significantly by enforcing an asymptotically correct exchange-correlation potential adjusted to give frontier orbital energies representing ionization potentials. The delocalization error for a number of donor-acceptor systems is quantified by calculations with fractional electron numbers and from orbital localizations. Optimally tuned hybrid variants of the PBE functional incorporating range-separated exchange can produce similar magnitudes for β// as Møller-Plesset second-order perturbation (MP2) correlated calculations. Improvements are also found for CT excitation energies, with results similar to an approximate coupled-cluster model (CC2).
非经验调谐的含混合交换项的杂化密度泛函被应用于具有扩展π共轭桥的线性“推-拉”给体-受体取代有机分子的第一超极化率(β//)和电荷转移(CT)激发的计算。通过施加渐近正确的交换相关势,可以显著减少密度泛函计算中随着链长增加的非物理离域,该势调整后可以给出代表电离势的前沿轨道能量。通过使用分数电子数和轨道定域化的计算,可以量化许多给体-受体系统的离域误差。将包含分离交换的 PBE 泛函的最佳调谐杂化变体可以产生与 Møller-Plesset 二级微扰(MP2)相关计算相似的β//值。对于 CT 激发能也发现了改进,结果与近似耦合簇模型(CC2)相似。