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甲基和甲氧基取代蒽查耳酮的结构及超快三阶非线性:Z扫描、四波混频和密度泛函理论方法

Structural and ultrafast third-order nonlinearities of methyl and methoxy substituted anthracene chalcones: Z-scan, four-wave mixing, and DFT approaches.

作者信息

Maidur Shivaraj R, Ekbote Anusha N, Patil Parutagouda Shankaragouda, Katturi Naga Krishnakanth, Venugopal Rao Soma, Wong Qin Ai, Quah Ching Kheng

机构信息

Department of Physics, Kristu Jayanti College, Autonomous, Bengaluru 560077, Karnataka, India.

Department of Physics, KLS's Gogte Institute of Technology, Udyambag, Belagavi 590010, Karnataka, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125146. doi: 10.1016/j.saa.2024.125146. Epub 2024 Sep 15.

Abstract

We report on the structural, thermal, linear, and ultrafast third-order nonlinear optical (NLO) properties of two novel anthracene chalcones: (2E)-1-(anthracen-9-yl)-3-(5-methylthiophen-2-yl)prop-2-en-1-one (5ML2SANC) and (2E)-1-(9-anthryl)-3-(2,4,5-trimethoxyphenyl)prop-2-en-1-one (245TMANC). The chalcones were synthesized by Claisen-Schmidt condensation reaction, and the single crystals were grown by the solvent evaporation method. The molecular structure was confirmed by FTIR and NMR spectroscopy, while the crystal structure was determined using the single crystal XRD. Both crystals belong to centrosymmetric monoclinic crystal system with space group P2/n. The Hirshfeld surface was analyzed to understand intermolecular interactions, and the band structures - including HOMO-LUMO levels, excited state energies, GCRDs and MEPs-were studied using DFT. The ultrafast third-order NLO properties were investigated by Z-scan and degenerate four-wave mixing (DFWM) techniques using Ti: Sapphire amplifier laser delivering ∼50 fs pulses at 800 nm (1 kHz, ∼4 mJ, 2 W). Two-photon absorption, positive nonlinear refraction, optical limiting and optical switching behaviors were observed by Z-scan measurements. The time-resolved DFWM show that the decay time of 5ML2SANC is ∼127 fs, while for 245TMANC it is ∼142 fs. The second hyperpolarizability (γ) measured by Z-scan, DFWM and the estimations from the DFT theory are found to be in good agreement (∼10 esu). The ultrafast optical response, significant NLO properties and thermal stability of the synthesized chalcones demonstrate their potential suitability in optical limiting and switching applications.

摘要

我们报道了两种新型蒽查尔酮

(2E)-1-(蒽-9-基)-3-(5-甲基噻吩-2-基)丙-2-烯-1-酮(5ML2SANC)和(2E)-1-(9-蒽基)-3-(2,4,5-三甲氧基苯基)丙-2-烯-1-酮(245TMANC)的结构、热学、线性和超快三阶非线性光学(NLO)性质。通过克莱森-施密特缩合反应合成了查尔酮,并采用溶剂蒸发法生长出单晶。通过傅里叶变换红外光谱(FTIR)和核磁共振光谱(NMR)确定了分子结构,同时使用单晶X射线衍射(XRD)确定了晶体结构。两种晶体均属于中心对称单斜晶体系统,空间群为P2/n。通过分析 Hirshfeld 表面来理解分子间相互作用,并使用密度泛函理论(DFT)研究了能带结构,包括最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)能级、激发态能量、广义振子强度密度(GCRDs)和分子静电势(MEPs)。使用钛宝石放大器激光在800 nm处输出50 fs脉冲(1 kHz,4 mJ,2 W),通过Z扫描和简并四波混频(DFWM)技术研究了超快三阶NLO性质。通过Z扫描测量观察到了双光子吸收、正非线性折射、光限幅和光开关行为。时间分辨DFWM表明,5ML2SANC的衰减时间约为127 fs,而245TMANC的衰减时间约为142 fs。通过Z扫描、DFWM以及DFT理论估算得到的二阶超极化率(γ)结果吻合良好(约10 esu)。合成的查尔酮具有超快的光学响应、显著的NLO性质和热稳定性,表明它们在光限幅和光开关应用中具有潜在的适用性。

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