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过量电子化合物的显著非线性光学响应:理论设计的碱掺杂氮丙啶M-(CNH)

Remarkable nonlinear optical response of excess electron compounds: theoretically designed alkali-doped aziridine M-(CNH).

作者信息

Li Bo, Xu Chao, Xu Xuan, Zhu Chaoyuan, Gu Feng Long

机构信息

Key Laboratory of Theoretical Chemistry of Environment, Ministry of Education, School of Chemistry & Environment of South China Normal University, Guangzhou 51006, People's Republic of China.

出版信息

Phys Chem Chem Phys. 2017 Sep 13;19(35):23951-23959. doi: 10.1039/c7cp04764a.

Abstract

Theoretically designed alkali-doped aziridine M-(CNH) (M = Li, Na and K; n = 1, 2, 3, and 4) are investigated by density functional theory (DFT) and time-dependent TD-DFT. The interaction energies at optimized electronic structures indicate that alkali-doped aziridine are quite stable. The natural population analysis of charges on alkali atoms show that all positive and electronic transitions to LUMO orbitals are large, so that the designed compounds not only have electride features, but also have large flexible ligands. This leads to a high-performance nonlinear optical response (NLO) and this remarkable NLO response mainly comes from alkali atoms. By calculating the first hyperpolarizabilities for M-(CNH) with M@Calix[4]pyrrole for comparison, we demonstrate that enhancements of the NLO response of M-(CNH) are 10 to 100 times larger than those of M@Calix[4]pyrrole, and in particular, the largest first hyperpolarizability values of Na-(CNH) is up to 3.4 × 10 (a.u.).

摘要

通过密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)对理论设计的碱掺杂氮丙啶M-(CNH)(M = Li、Na和K;n = 1、2、3和4)进行了研究。优化电子结构下的相互作用能表明碱掺杂氮丙啶相当稳定。对碱原子上电荷的自然布居分析表明,所有碱原子上的正电荷以及向最低未占分子轨道(LUMO)的电子跃迁都很大,因此所设计的化合物不仅具有电子化物特征,还具有大的柔性配体。这导致了高性能的非线性光学响应(NLO),且这种显著的NLO响应主要来自碱原子。通过计算M-(CNH)与M@杯[4]吡咯的第一超极化率进行比较,我们证明M-(CNH)的NLO响应增强比M@杯[4]吡咯大10到100倍,特别是,Na-(CNH)的最大第一超极化率值高达3.4×10(原子单位)。

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