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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Time dependent density functional theory modeling of chiroptical properties of small amino acids in solution
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Time dependent density functional theory modeling of chiroptical properties of small amino acids in solution

机译:溶液中小氨基酸的手性的时变密度泛函理论建模

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Time dependent density functional theory (TDDFT) and the conductor-like screening model (COSMO) of solvation were used to model the specific rotation and optical rotatory dispersion (ORD) of alanine, proline and serine solutions. Zwitterionic, cationic and anionic forms of amino acids were investigated and the results compared with experimental literature data obtained in neutral, acidic and basic conditions, respectively. It was found that TDDFT consistently underestimated the electronic excitation energies of the molecules, leading to calculated optical rotations that are of the correct sign but somewhat larger in magnitude than those of experiment. An additional challenge was encountered in the modeling of serine, an amino acid with a strong tendency to form intramolecular hydrogen bonds. The model used overestimated the extent of such hydrogen bonding for the zwitterions while possibly underestimating such bonding for the cationic form. This effect on the calculated mole fractions of the different conformers had an impact on the specific rotation.
机译:使用时间依赖性密度泛函理论(TDDFT)和溶剂化的导体样筛选模型(COSMO)来模拟丙氨酸,脯氨酸和丝氨酸溶液的比旋光和旋光色散(ORD)。研究了两性离子,阳离子和阴离子形式的氨基酸,并将结果与​​分别在中性,酸性和碱性条件下获得的实验文献数据进行了比较。发现TDDFT始终低估了分子的电子激发能,从而导致计算出的旋光度具有正确的符号,但其幅度比实验值大。在丝氨酸的建模中遇到了另一个挑战,丝氨酸是一种很容易形成分子内氢键的氨基酸。使用的模型高估了两性离子的氢键结合程度,而可能低估了阳离子形式的氢键结合程度。这种对不同构象异构体的摩尔分数的计算结果影响比旋光度。

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