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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electronic couplings for molecular charge transfer: benchmarking CDFT, FODFT and FODFTB against high-level ab initio calculations. II
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Electronic couplings for molecular charge transfer: benchmarking CDFT, FODFT and FODFTB against high-level ab initio calculations. II

机译:分子电荷转移的电子耦合:将CDFT,FODFT和FODFTB相对于高级从头算起的基准。 II

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摘要

A new database (HAB7-) of electronic coupling matrix elements (H-ab) for electron transfer in seven medium-sized negatively charged pi-conjugated organic dimers is introduced. Reference data are obtained with spin-component scaled approximate coupled cluster method (SCS-CC2) and large basis sets. Assessed DFT-based approaches include constrained density functional theory (CDFT), fragment-orbital DFT (FODFT), self-consistent charge density functional tight-binding (FODFTB) and the recently described analytic overlap method (AOM). This complements the previously reported HAB11 database where only cationic dimers were considered. The CDFT method in combination with a functional based on PBE and including 50% of exact exchange (HFX) was found to provide best estimates, with a mean relative unsigned error (MRUE) of 8.2%. CDFT couplings systematically increase with decreasing fraction of HFX as a consequence of increasing delocalisation of the SOMO orbital. The FODFT method is found to be very robust underestimating electronic couplings by 28%. The FODFTB and AOM methods, although orders of magnitude more efficient in terms of computational effort than the DFT approaches, perform well with reasonably small errors of 54% and 29%, respectively, translating in errors in the nonadiabatic electron transfer rate of a factor of 2.4 and 1.7, respectively. We discuss carefully various sources of errors and the scope and limitations of all assessed methods taking into account the results obtained for both HAB7- and HAB11 databases.
机译:介绍了一个新的电子耦合矩阵元素(H-ab)数据库(HAB7-),用于在七个中等大小的带负电pi共轭有机二聚体中进行电子转移。参考数据是通过自旋分量缩放近似耦合聚类方法(SCS-CC2)和大基集获得的。基于DFT的评估方法包括约束密度泛函理论(CDFT),片段轨道DFT(FODFT),自洽电荷密度泛函紧密结合(FODFTB)和最近描述的解析重叠法(AOM)。这补充了以前报道的仅考虑阳离子二聚体的HAB11数据库。发现CDFT方法与基于PBE的功能相结合并包含50%的精确交换(HFX)可以提供最佳估计,平均相对无符号误差(MRUE)为8.2%。由于SOMO轨道的离域增加,CDFT耦合随着HFX分数的降低而系统地增加。发现FODFT方法非常健壮,低估了28%的电子耦合。尽管FODFTB和AOM方法在计算工作量上比DFT方法高出几个数量级,但它们的良好性能分别为54%和29%的相当小的误差,从而将非绝热电子传输速率的误差转化为一个系数。分别为2.4和1.7。考虑到从HAB7-和HAB11数据库获得的结果,我们会仔细讨论各种错误源以及所有评估方法的范围和局限性。

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