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首页> 外文期刊>Journal of Molecular Structure >Structural study and characterization of the dipeptide 2-[[5-amino-5-oxo-2- (phenylmethoxycarbonylamino) pentanoyl] amino] acetic acid by vibrational spectroscopy and DFT calculations
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Structural study and characterization of the dipeptide 2-[[5-amino-5-oxo-2- (phenylmethoxycarbonylamino) pentanoyl] amino] acetic acid by vibrational spectroscopy and DFT calculations

机译:二肽2-[[[5-氨基-5-氧代-2-(苯基甲氧基羰基氨基)戊酰基]氨基]乙酸的二肽结构的振动光谱和DFT计算

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We have studied 2-[[5-amino-5-oxo-2-(phenylmethoxycarbonylamino) pentanoyl] amino] acetic acid and characterized it by infrared and Raman spectroscopies in the solid phase. The Density Functional Theory (DFT) method and Pople's basis set have been used to study its structure and vibrational properties. These calculations have given us a precise understanding of the normal modes of vibration, taking into account the neutral and zwitterionic forms of the compound. The harmonic vibrational wavenumbers for the optimized geometries of both structures were calculated at the B3LYP/6-31G and B3LYP/6-311Glevels for an isolated molecule. For a complete assignment of the vibrational spectra, DFT calculations were combined with Pulays Scaled Quantum Mechanics Force Field (SQMFF) methodology to fit the theoretical and experimental wavenumber values. In this context, an assignment of the observed spectral features is proposed. Four intense bands in the infrared spectrum at 3332, 1734, 1654 and 1534 cm~(-1) and three bands in the Raman spectrum at 3332, 2928 and 985 cm~(-1) are reported to characterize both forms of the compound. The theoretical vibrational calculations allowed us to obtain a set of scaled force constants. A Natural Bond Orbital (NBO) study revealed the characteristics of the electronic delocalization of both structures, while the corresponding topological properties of electronic charge density were analyzed by employing Bader's Atoms in the Molecules theory (AIM).
机译:我们研究了2-[[[5-氨基-5-氧代-2-(苯基甲氧基羰基氨基)戊酰基]氨基]乙酸,并通过红外和拉曼光谱在固相中对其进行了表征。密度泛函理论(DFT)方法和Pople基组已用于研究其结构和振动特性。考虑到化合物的中性和两性离子形式,这些计算使我们对正常的振动模式有了精确的了解。在分离的分子的B3LYP / 6-31G和B3LYP / 6-311G能级下,计算出两种结构的最佳几何形状的谐波振动波数。为了完整分配振动频谱,将DFT计算与Pulays缩放量子力学力场(SQMFF)方法相结合,以拟合理论和实验波数值。在这种情况下,建议对观察到的光谱特征进行分配。据报道,该化合物的两种形式均表征了在3332、1734、1654和1534 cm-1(-1)的红外光谱中的四个强带和在3332、2928和985 cm-1(-1)的拉曼光谱中的三个带。理论上的振动计算使我们能够获得一组成比例的力常数。自然键轨道(NBO)研究揭示了两种结构的电子离域特征,同时通过在分子理论(AIM)中采用Bader原子来分析相应的电子电荷密度拓扑特性。

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