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手性苝类化合物的电子结构与二阶非线性光学性质

Electronic structure and second-order nonlinear optical property of chiral peropyrenes.

作者信息

Gong Lijing, Liu Chunyu, Du Xin, Wang Cong, Yang Guochun

机构信息

Centre for Advanced Optoelectronic Functional Materials Research and Key Laboratory for UV Light-Emitting Materials and Technology of Ministry of Education, Northeast Normal University, Changchun, 130024, China.

Aviation University of Air Force, Changchun, 130022, China.

出版信息

J Mol Model. 2019 Jul 12;25(8):220. doi: 10.1007/s00894-019-4106-4.

Abstract

Discovery of novel materials with excellent second-order nonlinear optical (NLO) properties is a very attractive topic in chemistry and materials science. Recently, much more attention has been paid to chiral compounds due to their inherent asymmetric structure and intramolecular charge transfer. Currently, the density functional theory (DFT) has become a powerful methodology to rationalize experimental observations and to design new materials with desirable properties. In this work, on the basis of the reported chiral peropyrene, we designed another five compounds consisting of donor or acceptor moieties and the donor/acceptor combinations. We systematically studied their geometrical/electronic structures and electronic transition/second-order NLO properties. The measured UV-Vis/CD spectra of compound 1 are almost reproduced by our calculations, enabling us to assign its electronic transition property and absolute configuration. For these compounds, the different substituents have great effect on their photophysical properties (i.e., band gap, absorption wavelength, and NLO response). The charge transfer synergy provides some useful information for further performance improvement. Interestingly, compound 6 shows a remarkably large first hyperpolarizability value of 18.14 × 10 esu. Our research enables an opportunity for understanding the structure-property relationship of chiral peropyrenes. Graphical abstract The nonlinear optical properties of the studied compounds were studied with the aid of the DFT calculations.

摘要

发现具有优异二阶非线性光学(NLO)性质的新型材料是化学和材料科学中一个非常有吸引力的课题。近年来,由于手性化合物固有的不对称结构和分子内电荷转移,人们对其给予了更多关注。目前,密度泛函理论(DFT)已成为一种强大的方法,用于合理解释实验现象并设计具有理想性质的新材料。在这项工作中,基于已报道的手性苝,我们设计了另外五种由供体或受体部分以及供体/受体组合组成的化合物。我们系统地研究了它们的几何/电子结构以及电子跃迁/二阶NLO性质。化合物1的紫外-可见/圆二色光谱测量结果几乎能被我们的计算重现,这使我们能够确定其电子跃迁性质和绝对构型。对于这些化合物,不同的取代基对其光物理性质(即带隙、吸收波长和NLO响应)有很大影响。电荷转移协同作用为进一步改善性能提供了一些有用信息。有趣的是,化合物6显示出18.14×10 esu的非常大的第一超极化率值。我们的研究为理解手性苝的结构-性质关系提供了契机。图形摘要借助DFT计算研究了所研究化合物的非线性光学性质。

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