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首页> 外文期刊>International Journal of Quantum Chemistry >Investigation of the Nile Red spectra by semi-empirical calculations and spectrophotometric measurements
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Investigation of the Nile Red spectra by semi-empirical calculations and spectrophotometric measurements

机译:通过半经验计算和分光光度法研究尼罗红光谱

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The spectroscopic behavior of Nile Red (NR) in solutions was investigated by spectrophotometric measurements and was calculated with the semiempirical intermediate neglect of differential overlap for spectroscopy (INDO/S) method. Two parametrizations implemented, respectively, by Pople and by Da Motta and Zerner, were employed; the solvent effects were simulated according to the dielectric continuum model [self-consistent reaction field (SCRF)], as well as with the explicit inclusion of solvent molecules. The calculations simulated reasonably well the experimental spectra and the intense solvatochromism of NR because the dipole moments were calculated to be higher in the first excited state than in the ground state. In addition, INDO/S calculations were carried out for partially optimized twisted conformers, whose electron donor moiety was orthogonal to the aromatic acceptor one and charge transfer was observed for excited states known as twisted intramolecular charge-transfer (TICT) states. In polar media, INDO/S+SCRF calculations drastically stabilized the TICT state, reducing its energy down to the first excited state. Despite this intense solute-solvent stabilization, it is still less stable than the first excited state of the nontwisted, fully optimized conformer, and the limitations of the semi-empirical methods could not predict its role, if any, on the spectroscopic behavior of NR, except for the fact that the solvatochromism was explained independent of its presence. (C) 2006 Wiley Periodicals, Inc.
机译:通过分光光度法研究了溶液中尼罗红(NR)的光谱行为,并采用半经验中间忽略光谱的差分重叠法(INDO / S)进行了计算。使用了两个参数设置,分别由Pople和Da Motta和Zerner实现。根据介电连续体模型[自洽反应场(SCRF)],以及明确包含溶剂分子,模拟了溶剂的作用。该计算合理地模拟了NR的实验光谱和强烈的溶剂变色现象,因为计算得出的第一激发态的偶极矩高于基态的偶极矩。此外,对部分优化的扭曲构象异构体进行了INDO / S计算,该构象的电子供体部分与芳族受体之一正交,并且观察到了被称为扭曲分子内电荷转移(TICT)态的激发态的电荷转移。在极地介质中,INDO / S + SCRF计算极大地稳定了TICT状态,将其能量降低到了第一个激发态。尽管有很强的溶质-溶剂稳定作用,但它仍比未扭转的,完全优化的构象异构体的第一个激发态不稳定,并且半经验方法的局限性无法预测其对NR光谱行为的作用(如果有的话) ,除了溶剂化变色现象的解释与存在无关。 (C)2006年Wiley Periodicals,Inc.

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