State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals, Lanzhou University of Technology, Lanzhou 730050, Gansu, China.
Department of Applied Physics, Lanzhou University of Technology, Lanzhou 730050, Gansu, China.
Int J Mol Sci. 2018 Apr 10;19(4):1134. doi: 10.3390/ijms19041134.
The understanding of the excited-state properties of electron donors, acceptors and their interfaces in organic optoelectronic devices is a fundamental issue for their performance optimization. In order to obtain a balanced description of the different excitation types for electron-donor-acceptor systems, including the singlet charge transfer (CT), local excitations, and triplet excited states, several ab initio and density functional theory (DFT) methods for excited-state calculations were evaluated based upon the selected model system of benzene-tetracyanoethylene (B-TCNE) complexes. On the basis of benchmark calculations of the equation-of-motion coupled-cluster with single and double excitations method, the arithmetic mean of the absolute errors and standard errors of the electronic excitation energies for the different computational methods suggest that the M11 functional in DFT is superior to the other tested DFT functionals, and time-dependent DFT (TDDFT) with the Tamm-Dancoff approximation improves the accuracy of the calculated excitation energies relative to that of the full TDDFT. The performance of the M11 functional underlines the importance of kinetic energy density, spin-density gradient, and range separation in the development of novel DFT functionals. According to the TDDFT results, the performances of the different TDDFT methods on the CT properties of the B-TCNE complexes were also analyzed.
理解有机光电设备中电子给体、受体及其界面的激发态性质是优化其性能的基础问题。为了对包括单重态电荷转移(CT)、局域激发态和三重激发态在内的电子给体-受体体系的不同激发类型进行平衡描述,我们基于苯-四氰基乙烯(B-TCNE)复合物的选定模型体系,评估了几种用于激发态计算的从头算和密度泛函理论(DFT)方法。基于与单重和双重激发的含时微扰理论相结合的运动方程耦合簇方法的基准计算,不同计算方法的电子激发能的算术平均值绝对误差和标准误差表明,DFT 中的 M11 泛函优于其他测试的 DFT 泛函,并且带有 Tamm-Dancoff 近似的时间相关 DFT(TDDFT)相对于全 TDDFT 提高了计算激发能的准确性。M11 泛函的性能强调了在开发新型 DFT 泛函时,动能密度、自旋密度梯度和范围分离的重要性。根据 TDDFT 结果,还分析了不同 TDDFT 方法对 B-TCNE 复合物 CT 性质的性能。