Maidur Shivaraj R, Patil Parutagouda Shankaragouda, Ekbote Anusha, Chia Tze Shyang, Quah Ching Kheng
Department of Physics, K.L.E. Institute of Technology, Opposite Airport, Gokul, Hubballi 580 030, India.
Department of Physics, K.L.E. Institute of Technology, Opposite Airport, Gokul, Hubballi 580 030, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Sep 5;184:342-354. doi: 10.1016/j.saa.2017.05.015. Epub 2017 May 9.
In the present work, the title chalcone, (2E)-3-(4-fluorophenyl)-1-(4-{[(1E)-(4-fluorophenyl) methylene]amino}phenyl)prop-2-en-1-one (abbreviated as FAMFC), was synthesized and structurally characterized by single-crystal X-ray diffraction. The compound is crystallized in the monoclinic system with non-centrosymmetric space group P2 and hence it satisfies the essential condition for materials to exhibit second-order nonlinear optical properties. The molecular structure was further confirmed by using FT-IR and H NMR spectroscopic techniques. The title crystal is transparent in the Vis-NIR region and has a direct band gap. The third-order nonlinear optical properties were investigated in solution (0.01M) by Z-scan technique using a continuous wave (CW) DPSS laser at the wavelength of 532nm. The title chalcone exhibited significant two-photon absorption (β=35.8×10cmW), negative nonlinear refraction (n=-0.18×10cmW) and optical limiting (OL threshold=2.73kJcm) under the CW regime. In support of the experimental results, a comprehensive theoretical study was carried out on the molecule of FAMFC using density functional theory (DFT). The optimized geometries and frontier molecular orbitals were calculated by employing B3LYP/6-31+G level of theory. The optimized molecular structure was confirmed computationally by IR vibrational and H NMR spectral analysis. The experimental UV-Vis-NIR spectrum was interpreted using computational chemistry under time-dependent DFT. The static and dynamic NLO properties such as dipole moments (μ), polarizability (α), and first hyperpolarizabilities (β) were computed by using finite field method. The obtained dynamic first hyperpolarizability β(-2ω;ω,ω) at input frequency ω=0.04282a.u. is predicted to be 161 times higher than urea standard. The electronic excitation energies and HOMO-LUMO band gap for FAMFC were also evaluated by DFT. The experimental and theoretical results are in good agreement, and the NLO study suggests that FAMFC molecule can be a potential candidate in the nonlinear optical applications.
在本工作中,合成了标题查尔酮(2E)-3-(4-氟苯基)-1-(4-{[(1E)-(4-氟苯基)亚甲基]氨基}苯基)丙-2-烯-1-酮(简称为FAMFC),并通过单晶X射线衍射对其进行了结构表征。该化合物结晶于单斜晶系,具有非中心对称空间群P2,因此满足材料表现出二阶非线性光学性质的基本条件。通过傅里叶变换红外光谱(FT-IR)和核磁共振氢谱(H NMR)光谱技术进一步确认了分子结构。标题晶体在可见-近红外区域是透明的,并且具有直接带隙。使用连续波(CW)二极管泵浦固体(DPSS)激光器在532nm波长下,通过Z扫描技术在溶液(0.01M)中研究了三阶非线性光学性质。在连续波条件下,标题查尔酮表现出显著的双光子吸收(β=35.8×10cmW)、负非线性折射(n=-0.18×10cmW)和光学限幅(OL阈值=2.73kJcm)。为支持实验结果,使用密度泛函理论(DFT)对FAMFC分子进行了全面的理论研究。采用B3LYP/6-31+G理论水平计算了优化的几何结构和前沿分子轨道。通过红外振动和核磁共振氢谱光谱分析在计算上确认了优化的分子结构。使用含时密度泛函理论下的计算化学对实验紫外-可见-近红外光谱进行了解释。使用有限场方法计算了静态和动态非线性光学性质,如偶极矩(μ)、极化率(α)和第一超极化率(β)。在输入频率ω=0.04282a.u.时,预测得到的动态第一超极化率β(-2ω;ω,ω)比尿素标准高161倍。还通过DFT评估了FAMFC的电子激发能和HOMO-LUMO带隙。实验和理论结果吻合良好,非线性光学研究表明FAMFC分子在非线性光学应用中可能是一个潜在的候选物。