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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Ultrafast optical nonlinearity, electronic absorption, vibrational spectra and solvent effect studies of ninhydrin
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Ultrafast optical nonlinearity, electronic absorption, vibrational spectra and solvent effect studies of ninhydrin

机译:茚三酮的超快光学非线性,电子吸收,振动光谱和溶剂效应研究

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摘要

FT-IR, FT-Raman and UV-Vis spectra of the nonlinear optical molecule ninhydrin have been recorded and analyzed. The equilibrium geometry, bonding features, and harmonic vibrational wavenumbers have been investigated with the help of B3LYP density functional theory method. A detailed interpretation of the vibrational spectra is carried out with the aid of normal coordinate analysis following the scaled quantum mechanical force field methodology. Solvent effects have been calculated using time-dependent density functional theory in combination with the polarized continuum model. Natural bond orbital analysis confirms the occurrence of strong intermolecular hydrogen bonding in the molecule. Employing the open-aperture z-scan technique, nonlinear optical absorption of the sample has been studied in the ultrafast and short-pulse excitation regimes, using 100 fs and 5 ns laser pulses respectively. It is found that ninhydrin exhibits optical limiting for both excitations, indicating potential photonic applications.
机译:记录并分析了非线性光学分子茚三酮的FT-IR,FT-Raman和UV-Vis光谱。借助B3LYP密度泛函理论方法研究了平衡几何构型,结合特征和谐波振动波数。振动光谱的详细解释是在遵循标度量子力学力场方法的正态坐标分析的帮助下进行的。已使用时变密度泛函理论结合极化连续谱模型计算了溶剂效应。自然键轨道分析证实了分子中强分子间氢键的存在。利用开孔z扫描技术,已经分别使用100 fs和5 ns的激光脉冲在超快和短脉冲激发条件下研究了样品的非线性光学吸收。发现茚三酮对两种激发均表现出光学限制,表明潜在的光子应用。

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