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Theoretical study on the spectroscopic and third-order nonlinear optical properties of two-dimensional charge-transfer pyrazine derivatives

机译:二维电荷转移吡嗪衍生物光谱和三阶非线性光学性质的理论研究

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In this paper, density functional theory method was employed to study the electronic absorption spectrum and electronic static second hyperpolarisability of X-shaped pyrazine derivatives with two-dimensional charge-transfer structures. Computational results showthat the push-pull electron abilities of the substituent groups and the length of the conjugated chains affect the electronic spectrum and static second hyperpolarisability of the pyrazine derivatives. As the push-pull electron abilities of the substituent groups or the length of the conjugated chains increases, the frontier molecular orbital energy gap decreases, resulting in increased second hyperpolarisability and redshift of the electronic absorption bands. The electronic absorption spectra of the pyrazine derivatives maintain good transparency in the blue light band. The electronic static second hyperpolarisability exhibits a linear relationship to the frontier molecular orbital energy gap. Particularly, increasing/decreasing the pushpull electron abilities of the substituent groups considerably affect the static second hyperpolarisability in long conjugated systems, which is important to the modulation of molecular organic nonlinear optical (NLO) properties. The studied pyrazine derivatives showlarge third-order NLO response and good transparency in the blue light band and are thus promising candidates as NLO materials for photonics applications.
机译:本文采用密度函数理论方法研究了具有二维电荷 - 转移结构的X形吡嗪衍生物的电子吸收光谱和电子静态第二超氨基。计算结果表明取代基的推挽电子能力和共轭链的长度影响吡嗪衍生物的电子谱和静态的第二二极管性。随着取代基的推挽电子能力或共轭链的长度增加,前沿分子轨道能量间隙降低,导致电子吸收带的第二次超苯甲淤积性和红移。吡嗪衍生物的电子吸收光谱在蓝光带中保持良好的透明度。电子静态第二升温性与前沿分子轨道能量隙表现出线性关系。特别地,增加/降低取代基的推性壳电子能力显着影响了长缀合系统中的静态第二高苯甲酸,这对于分子有机非线性光学(NLO)性质的调节至关重要。所研究的吡嗪衍生物在蓝光带中表示三阶NLO响应和良好的透明度,因此是有希望的候选人作为光子学应用的NLO材料。

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