Garza Alejandro J, Osman Osman I, Asiri Abdullah M, Scuseria Gustavo E
Department of Chemistry, Rice University , Houston, Texas 77251-1892, United States.
J Phys Chem B. 2015 Jan 22;119(3):1202-12. doi: 10.1021/jp507226v. Epub 2014 Sep 11.
Long-range corrected hybrid density functionals (LC-DFT), with range separation parameters optimally tuned to obey Koopmans' theorem, are used to calculate the first-order hyperpolarizabilities of prototypical charge-transfer compounds p-nitroaniline (PNA) and dimethylamino nitrostilbene (DANS) in the gas phase and various solvents. It is shown that LC-DFT methods with default range separation parameters tend to underestimate hyperpolarizabilities (most notably in solution) and that the tuning scheme can sharply improve results, especially in the cases when the standard LC-DFT errors are largest. Nonetheless, we also identify pathological cases (two pyrrole derivatives) for which LC-DFT underestimates the hyperpolarizabilities, regardless of tuning. It is noted that such pathological cases do not follow the usual inverse relation between the hyperpolarizability and amount of exact exchange, and thus this behavior may serve as a diagnostic tool for the adequacy of LC-DFT.
长程校正杂化密度泛函(LC-DFT),其范围分离参数经过优化调整以符合库普曼斯定理,用于计算气相和各种溶剂中原型电荷转移化合物对硝基苯胺(PNA)和二甲基氨基硝基芪(DANS)的一阶超极化率。结果表明,具有默认范围分离参数的LC-DFT方法往往会低估超极化率(在溶液中尤为明显),并且调整方案可以显著改善结果,特别是在标准LC-DFT误差最大的情况下。尽管如此,我们也发现了一些病态情况(两种吡咯衍生物), 无论是否调整,LC-DFT都会低估其超极化率。需要注意的是,这种病态情况并不遵循超极化率与精确交换量之间通常的反比关系,因此这种行为可以作为判断LC-DFT是否适用的诊断工具。