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通过对萘啶衍生物上的电子供体/受体单元进行C/N取代和调制的光谱研究及非线性光学响应

Spectroscopic studies and Non-Linear optical response through C/N replacement and modulation of electron Donor/Acceptor Units on naphthyridine derivatives.

作者信息

Yousuf Afifa, Ullah Asad, Ul Hussain Syeda Qirat, Ali Muhammad Arif, Arshad Muhammad

机构信息

Department of Chemistry, The Government Sadiq College Women University, 61000 Bahawalpur, Pakistan.

Institute of Chemistry, The Islamia University of Bahawalpur, Baghdad-ul-Jadeed Campus, Bahawalpur 63100, Pakistan.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Mar 15;329:125582. doi: 10.1016/j.saa.2024.125582. Epub 2024 Dec 12.

Abstract

This study explores the nonlinear optical (NLO) and photophysical properties of newly designed naphthyridine derivatives by density functional theory (DFT). The first hyperpolarizability (β), a key indicator of NLO activity, varies significantly depending on the substituent groups. N-substituted compounds (IUB-N series) generally show lower β values, while compounds with electron donor/acceptor groups (IUB-P series) demonstrate a broader range, with IUB-A-02 achieving the highest β value of 16,362 a.u. due to the presence of two -NH groups. TD-DFT analysis confirms key electronic transitions, mostly from HOMO to LUMO, with absorption wavelengths (λmax) ranging from 349.596 to 440.692 nm for the IUB-P series. The introduction of electron-donor groups considerably boosts absorption, particularly in IUB-P-06, with highest λ and oscillator strength (f) signifying excellent light absorption capabilities. The calculated light harvesting efficiency (LHE) correlates strongly with f values, IUB-N-01 to IUB-N-05 exhibiting higher LHE than the unsubstituted IUB. Additionally, lower radiative lifetimes (τ) for the modified compounds indicate faster decay, useful for applications in photodynamic therapy and fluorescence imaging. Lower transition energy (ΔE) and higher f values contributed to greater first hyperpolarizability (β). IUB-P-06, with two -NH donor groups, shows the lowest ΔE (2.81 eV) and a correspondingly high β (60218.89 a.u.). Whereas IUB-A-02 exhibits the highest β (68907.84 a.u.) due to its large dipole moment change (Δμ = -6.37 D). Among N-substituted compounds, IUB-N-01 exhibits the highest charge density. IUB-P-06 has the highest charge density and electron-hole separation due to electron donor/acceptor groups, indicating a higher degree of internal atomic localization. This enhanced charge separation further confirms the superior performance of these compounds in NLO applications. In conclusion, this comprehensive analysis spanning ESP, TD-DFT, TLM, LHE, and TDM demonstrates that the studied naphthyridine derivatives possess promising NLO properties and exhibit strong potential for use in optoelectronics, photovoltaics, photodynamic therapy, and other advanced optical technologies.

摘要

本研究通过密度泛函理论(DFT)探索新设计的萘啶衍生物的非线性光学(NLO)和光物理性质。作为NLO活性的关键指标,第一超极化率(β)因取代基的不同而有显著变化。N-取代化合物(IUB-N系列)通常显示出较低的β值,而带有电子供体/受体基团的化合物(IUB-P系列)则表现出更广泛的范围,由于存在两个-NH基团,IUB-A-02的β值最高,达到16362 a.u.。TD-DFT分析确定了关键的电子跃迁,主要是从最高占据分子轨道(HOMO)到最低未占据分子轨道(LUMO),IUB-P系列的吸收波长(λmax)范围为349.596至440.692 nm。电子供体基团的引入显著提高了吸收,特别是在IUB-P-06中,其最高的λ和振子强度(f)表明具有优异的光吸收能力。计算得到的光捕获效率(LHE)与f值密切相关,IUB-N-01至IUB-N-05的LHE高于未取代的IUB。此外,改性化合物较低的辐射寿命(τ)表明其衰减更快,这在光动力疗法和荧光成像应用中很有用。较低的跃迁能量(ΔE)和较高的f值导致了更大的第一超极化率(β)。具有两个-NH供体基团的IUB-P-06显示出最低的ΔE(2.81 eV)和相应较高的β(60218.89 a.u.)。而IUB-A-02由于其较大的偶极矩变化(Δμ = -6.37 D)而表现出最高的β(68907.84 a.u.)。在N-取代化合物中,IUB-N-01表现出最高的电荷密度。由于电子供体/受体基团的存在,IUB-P-06具有最高的电荷密度和电子-空穴分离,表明内部原子定位程度更高。这种增强的电荷分离进一步证实了这些化合物在NLO应用中的卓越性能。总之,这项涵盖静电势(ESP)、TD-DFT、过渡态矩(TLM)、LHE和过渡偶极矩(TDM)的综合分析表明,所研究的萘啶衍生物具有有前景的NLO性质,并在光电子学、光伏、光动力疗法和其他先进光学技术中展现出强大的应用潜力。

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