首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Anharmonic IR and Raman spectra and electronic and vibrational (hyper)polarizabilities of barbituric,2-thiobarbituric and 2-selenobarbituric acids
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Anharmonic IR and Raman spectra and electronic and vibrational (hyper)polarizabilities of barbituric,2-thiobarbituric and 2-selenobarbituric acids

机译:巴比妥酸,2-硫代巴比妥酸和2-硒代巴比妥酸的非谐红外光谱和拉曼光谱以及电子和振动(超)极化率

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摘要

Infrared,Raman and electronic absorption spectra,electronic and vibrational (hyper)polarizabilities,of barbituric,2-thiobarbituric and 2-selenobarbituric acids were studied in gas using ab initio and density functional theory levels.The vibrational spectra were computed using harmonic and anharmonic methods.Anharmonic contributions improve the agreement between calculated and available experimental wavenumbers,especially in the highest-energy spectral region (wavenumbers >1700 cm~(-1)).Vibrational and electronic transitions potentially useful to identify the investigated compounds were explored.The electronic and vibrational hyperpolarizabilities for the IDRI nonlinear optical (NLO) process at the k value of 790 nm were computed.Supported by spectroscopic results,electronic and vibrational polarizabilities and second-order hyperpolarizabilities increase progressively in the order barbituric acid < 2-thiobarbituric acid < 2-selenobarbituric acid.The seleno-derivative is predicted to be ca.three/four times more hyperpolarizable than the barbituric acid.The Se→O or Se→S substitutions can be practical strategies to enhances the NLO properties of barbituric and thiobarbituric acid-based materials.
机译:采用从头算和密度泛函理论的方法研究了气体中巴比妥酸,2-硫代巴比妥酸和2-硒代巴比妥酸的红外,拉曼和电子吸收光谱,电子和振动(超)极化率。采用谐波和非谐方法计算了振动光谱非谐贡献改善了计算的和可用的实验波数之间的一致性,特别是在最高能量谱区域(波数> 1700 cm〜(-1))中。探索了振动和电子跃迁对识别所研究化合物可能有用。计算出IDRI非线性光学(NLO)过程在790 nm的k值时的振动超极化率。在光谱结果的支持下,电子和振动极化率和二阶超极化率按巴比妥酸<2-硫代巴比妥酸<2-的顺序逐渐增加硒代巴比妥酸。硒代衍生物预计为Se→O或Se→S取代是增强巴比妥酸和硫代巴比妥酸基材料的NLO性质的实用策略,约为巴比妥酸的三/四倍。

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