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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Testing a new analytical approach for determination of vibrational transition moment directions in low symmetry planar molecules: 1-D- and 2-D-naphthalene
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Testing a new analytical approach for determination of vibrational transition moment directions in low symmetry planar molecules: 1-D- and 2-D-naphthalene

机译:测试一种用于确定低对称平面分子中振动跃迁方向的新分析方法:1-D-萘和2-D-萘

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A new analytical approach for improving the precision in determination of vibrational transition moment directions of low symmetry molecules (lacking orthogonal axes) is discussed in this paper. The target molecules are partially uniaxially oriented in nematic liquid crystalline solvent and are studied by IR absorption spectroscopy using polarized light. The fundamental problem addressed is that IR linear dichroism measurements of low symmetry molecules alone cannot provide sufficient information on molecular orientation and transition moment directions. It is shown that computational prediction of these quantities can supply relevant complementary data, helping to reveal the hidden information content and achieve a more meaningful and more precise interpretation of the measured dichroic ratios. The combined experimental and theoretical/ computational method proposed by us recently for determination of the average orientation of molecules with C s symmetry has now been replaced by a more precise analytical approach. The new method introduced and discussed in full detail here uses a mathematically evaluated angle between two vibrational transition moment vectors as a reference. The discussion also deals with error analysis and estimation of uncertainties of the orientational parameters. The proposed procedure has been tested in an analysis of the infrared linear dichroism (IR-LD) spectra of 1-D- and 2-D-naphthalene complemented with DFT calculations using the scaled quantum mechanical force field (SQM FF) method.
机译:本文讨论了一种新的分析方法,以提高确定低对称分子(缺少正交轴)的振动跃迁方向的精度。目标分子在向列型液晶溶剂中部分单轴取向,并通过使用偏振光的红外吸收光谱研究。解决的根本问题是,仅对低对称性分子进行IR线性二色性测量无法提供有关分子取向和跃迁矩方向的足够信息。结果表明,这些量的计算预测可以提供相关的补充数据,有助于揭示隐藏的信息内容,并实现对测得的二向色比的更有意义和更精确的解释。我们最近提出的结合实验和理论/计算方法来确定具有Cs对称性的分子的平均取向的方法现已被更精确的分析方法所取代。在此详细介绍和讨论的新方法将两个振动过渡力矩矢量之间的数学评估角度用作参考。讨论还涉及方向分析的误差分析和不确定性估计。所提出的程序已通过对1-D-和2-D-萘的红外线性二向色(IR-LD)光谱进行分析,并使用比例量子力学力场(SQM FF)方法进行了DFT计算。

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