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新型1,3,4-恶二唑衍生物的二阶非线性光学性质研究:一项密度泛函理论研究

Investigation of second-order NLO properties of novel 1,3,4-oxadiazole derivatives: a DFT study.

作者信息

Waddar Balachandar, Gandi Suman, Parne Saidi Reddy, Chari Vishnu Rama, Prasanth Gurusiddappa R

机构信息

Department of Applied Sciences, National Institute of Technology Goa, Kottamoll Plateau, Cuncolim, Goa, 403703, India.

School of Chemical Sciences, Goa University, Taleigao Plateau, Goa, 403206, India.

出版信息

J Mol Model. 2024 Apr 2;30(5):118. doi: 10.1007/s00894-024-05910-7.

Abstract

CONTEXT

In this study, we have developed four new chromophores (TM1-TM4) and performed quantum chemical calculations to explore their nonlinear optical properties. Our focus was on understanding the impact of electron-donating substituents on 1,3,4-oxadiazole derivative chromophores. The natural bond orbital analysis confirmed the interactions between donors and acceptors as well as provided insights into intramolecular charge transfer. We also estimated dipole moment, linear polarizability molecular electrostatic potential, UV-visible spectra, and first hyperpolarizability. Our results revealed that TM1 with a strong and stable electron-donating group exhibited high first hyperpolarizability (β) 293,679.0178 × 10 esu. Additionally, TM1 exhibited a dipolar moment (μ) of 5.66 Debye and polarizability (α) of 110.62 × 10 esu when measured in dimethyl sulfoxide (DMSO) solvent. Furthermore, in a benzene solvent, TM1 showed a low energy band gap of 5.33 eV by using the ωB97XD functional with a 6-311 +  + G(d, p) basis set. Moreover, our study of intramolecular charge transfers highlighted N, N dimethyl triphenylamine and carbazole as major electron-donating groups among the four 1,3,4-oxadiazole derivative chromophores. This research illustrates the potential applications of these organic molecules in photonics due to their versatile nature.

METHODS

The molecules were individually optimized using different functionals, including APFD, B3LYP, CAM B3LYP, and ωB97XD combined with the 6-311 +  + G (d, p) basis set in Gaussian 16 software. These methods encompass long-range functionals such as APFD and B3LYP, along with long-range corrected functionals like CAM B3LYP and ωB97XD. The employed functionals of APFD, B3LYP, CAM B3LYP, and ωB97XD with the 6-311 +  + G (d,p) basis set were used to extract various properties such as geometrical structures, dipole moment, molecular electrostatic potential, and first hyperpolarizability through precise density functional theory (DFT). Additionally, TD-DFT was utilized for obtaining UV-visible spectra. All studies have been conducted in both gas and solvent phases.

摘要

背景

在本研究中,我们开发了四种新型发色团(TM1 - TM4)并进行了量子化学计算,以探索它们的非线性光学性质。我们的重点是了解给电子取代基对1,3,4 - 恶二唑衍生物发色团的影响。自然键轨道分析证实了供体与受体之间的相互作用,并提供了分子内电荷转移的相关见解。我们还估算了偶极矩、线性极化率、分子静电势、紫外 - 可见光谱和第一超极化率。我们的结果表明,具有强且稳定给电子基团的TM1表现出高第一超极化率(β)293,679.0178×10 esu。此外,在二甲基亚砜(DMSO)溶剂中测量时,TM1的偶极矩(μ)为5.66德拜,极化率(α)为110.62×10 esu。此外,在苯溶剂中,通过使用ωB97XD泛函和6 - 311++G(d, p)基组,TM1显示出5.33 eV的低能带隙。此外,我们对分子内电荷转移的研究突出了N, N - 二甲基三苯胺和咔唑是四种1,3,4 - 恶二唑衍生物发色团中的主要给电子基团。这项研究说明了这些有机分子因其多功能性质在光子学中的潜在应用。

方法

使用不同的泛函对分子进行单独优化,包括APFD、B3LYP、CAM B3LYP和ωB97XD,并结合高斯16软件中的6 - 311++G(d, p)基组。这些方法包括诸如APFD和B3LYP等长程泛函,以及像CAM B3LYP和ωB97XD等长程校正泛函。所采用的APFD、B3LYP、CAM B3LYP和ωB97XD泛函与6 - 311++G(d, p)基组用于通过精确的密度泛函理论(DFT)提取各种性质,如几何结构、偶极矩、分子静电势和第一超极化率。此外,TD - DFT用于获得紫外 - 可见光谱。所有研究均在气相和溶剂相中进行。

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