首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Theoretical Molecular Design of Heteroacenes for Singlet Fission: Tuning the Diradical Character by Modifying z-Conjugation Length and Aromaticity
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Theoretical Molecular Design of Heteroacenes for Singlet Fission: Tuning the Diradical Character by Modifying z-Conjugation Length and Aromaticity

机译:单线态裂变杂蒽的理论分子设计:通过改变z-共轭长度和芳香性来调节双自由基性质

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摘要

A theoretical molecular design for efficient singlet fission (SF) is performed for several heteroacene models involving nitrogen (N) atoms based on the diradical character criterion of the energy level matching conditions. This criterion is found to be closely related to the relative contributions of diradical and zwitterionic resonance structures of the heteroacenes, i.e., the aromaticity of the central ring(s). From the analysis of the diradical characters of these heteroacene models, the increase in the aromaticity of the central ring(s) is found to prefer the diradical form to the zwitterionic form. From the comparison of the excitation energies evaluated by multireference second-order perturbation theory calculations, two promising candidates, chosen based on the diradical character criterion, are found to satisfy the energy level matching conditions and to possess high triplet energies of similar to 1.1 eV, which are suitable for an application in organic photovoltaic cells. The proposed two candidates are shown to have mutually different types of the first excited singlet states, which are distinguished by the primary excitation configurations. These results suggest that the proposed two candidates exhibit different singlet fission dynamics due to the different amplitude of the electronic coupling.
机译:基于能级匹配条件的双自由基特征准则,对涉及氮(N)原子的多个杂并苯模型进行了有效单线裂变(SF)的理论分子设计。发现该标准与杂并苯的双自由基和两性离子共振结构的相对贡献,即中心环的芳香性密切相关。通过对这些杂并苯模型的双自由基特征的分析,发现中心环芳香性的增加优选双自由基形式而不是两性离子形式。通过多参考二阶微扰理论计算评估的激发能的比较,发现了根据双基特征准则选择的两个有希望的候选物,它们满足能级匹配条件并且具有类似于1.1 eV的高三重态能量,它们适用于有机光伏电池。所提出的两个候选被示出为具有彼此不同的第一激发单重态,其通过主要激发构型来区分。这些结果表明,由于电子耦合的幅度不同,提出的两个候选物表现出不同的单重态裂变动力学。

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