Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Chem Phys. 2011 Aug 21;135(7):071104. doi: 10.1063/1.3627152.
We show that standard configuration interaction singles (CIS) has a systematic bias against charge-transfer (CT) states, wherein the computed vertical excitation energies for CT states are disproportionately too high (by >1 eV) as compared with non-CT states. We demonstrate this bias empirically for a set of chemical problems with both inter- and intra-molecular electron transfer, and then, for a small analytical model, we prove that this large difference in accuracy stems from the massive changes in electronic structure that must accompany long-range charge transfer. Thus far, the conclusion from this research is that, even in the context of wave function theory, CIS alone is insufficient for offering a balanced description of excited state surfaces (both CT and non-CT) and explicit electron-electron correlation must be included additionally (e.g., via CIS(D)) for charge-transfer applications.
我们表明,标准组态相互作用单重态(CIS)对电荷转移(CT)态存在系统偏差,其中 CT 态的计算垂直激发能过高(超过 1 eV),与非 CT 态不成比例。我们通过一系列具有分子内和分子间电子转移的化学问题实证证明了这种偏差,然后,对于一个小型分析模型,我们证明了这种准确性的巨大差异源于必须伴随长程电荷转移的电子结构的巨大变化。到目前为止,这项研究的结论是,即使在波函数理论的背景下,仅 CIS 不足以提供对激发态表面(包括 CT 和非 CT)的平衡描述,还必须额外包含电子电子相关(例如,通过 CIS(D))用于电荷转移应用。