Gong Li-Jing, Ma Cheng, Lin Wan-Feng, Lv Jin-Kai, Zhang Xiang-Yu
Aviation University of Air Force Changchun 130022 Jilin China
RSC Adv. 2020 Apr 7;10(24):13984-13990. doi: 10.1039/d0ra01323d. eCollection 2020 Apr 6.
Chiral organic compounds are excellent second-order nonlinear optical (NLO) materials due to their inherent non-symmetric electronic structures combined with the advantages of organic compounds. At present, density functional theory (DFT) has become a powerful tool for predicting the properties of novel materials. In this paper, based on chiral lemniscular [16]cycloparaphenylene, three novel compounds are designed by introduction of donor/acceptor units and their combinations. The geometrical/electronic structure, electronic absorption, and the second-order NLO properties of these compounds have been systematically investigated by DFT/TDDFT theory. The simulated UV-Vis/CD spectra of compound 1 are in good agreement with the experimental ones, enabling us to assign their electronic transition characteristics and absolute configuration with high confidence. The investigations show that energy gaps, absorption wavelength and second-order NLO response may be effectively tuned by the introduction of the donor or acceptor units or their combinations. For instance, the second-order NLO value of compound 4 is about 207 times as large as the average second-order polarizability of the organic molecule urea. Thus, the studied compounds are expected to be potential large second-order NLO materials.
手性有机化合物由于其固有的非对称电子结构以及有机化合物的优点,是优异的二阶非线性光学(NLO)材料。目前,密度泛函理论(DFT)已成为预测新型材料性质的有力工具。本文基于手性双纽线[16]环对亚苯基,通过引入供体/受体单元及其组合设计了三种新型化合物。利用DFT/TDDFT理论系统研究了这些化合物的几何/电子结构、电子吸收和二阶NLO性质。化合物1的模拟紫外可见/圆二色光谱与实验光谱吻合良好,使我们能够高度自信地确定其电子跃迁特征和绝对构型。研究表明,通过引入供体或受体单元或其组合,可以有效地调节能隙、吸收波长和二阶NLO响应。例如,化合物4的二阶NLO值约为有机分子尿素平均二阶极化率的207倍。因此,所研究的化合物有望成为潜在的大二阶NLO材料。