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Computational investigation on redox-switchable nonlinear optical properties of a series of polycyclic p-quinodimethane molecules
Authors:Yong-Qing Qiu  Wen-Yong Wang  Na-Na Ma  Cun-Huan Wang  Meng-Ying Zhang  Hai-Yan Zou  Peng-Jun Liu
Affiliation:1. College Chemistry & Chemical Engineering, Hainan Normal University, Haikou, Hainan, 571158, People’s Republic of China
2. Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, Jilin, 130024, People’s Republic of China
Abstract:The polycyclic p-quinodimethanes are proposed to be the novel candidates of the high-performance nonlinear optical (NLO) materials because of their large third order polarizabilities (γ). We investigate the switchable NLO responses of a series of polycyclic p-quinodimethanes with redox properties by employing the density functional theory (DFT). The polycyclic p-quinodimethanes are forecasted to exhibit obvious pure diradical characters because of their large y 0 index (the y 0 index is a value between 0 [closed-shell state] and 1 [pure biradical state]). The γ values of these polycyclic p-quinodimethanes and their corresponding one-electron and two-electron reduced/oxidized species are calculated by the (U)BHandHLYP method. The γ values of polycyclic p-quinodimethanes and their corresponding one-electron reduced species are all positive and significantly different. The large differences of the γ values are due to a change in the transition energy and are related to the different delocalization of the spin density, which demonstrates that the NLO switching is more effective on one-electron reduction reactions. Therefore, the study on these polycyclic p-quinodimethanes provides a guideline for a molecular design of highly efficient NLO switching.
Figure
The NLO switching is more effective on one-electron reduction reaction
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