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甘氨酸二聚体的分子结构、几何形状、稳定性、热和基本振动模式的 DFT 方法。

The molecular structure, geometry, stability, thermal and fundamental modes of vibration of glycine dimer by DFT methods.

机构信息

PG & Research Department of Physics, Arignar Anna Government Arts College, Cheyyar 604 410, Tamilnadu, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2013 Nov;115:730-7. doi: 10.1016/j.saa.2013.06.097. Epub 2013 Jul 6.

Abstract

Glycine is an important amino acid for building up protein synthesis. Single crystal of glycine dimer was grown from aqueous solution by slow evaporation method. Powder X-ray diffraction analysis confirms the crystalline nature of grown crystal. It is interesting to study the molecular structure of a dimer, having well-defined channels formed through amphoterism bonding between CO⋯H bonds with split-valence basis sets, and the conformer is mirror symmetrical, in which the protonated organic cation plays a significant role to have a dimer pattern. Amphiprotic molecules, like dimeric glycine which can either donate or accept a proton (H(+)) from each other. Optical absorption study reveals that the transparency of the crystal in the entire visible region and the cutoff wavelength was found to be 235nm. Powder SHG test and thermogravimetric analysis shows glycine dimer crystal is optically active and thermally stable. The molecular structure, geometry, stability and theoretical vibrational spectra were calculated for glycine as a monomer and as a dimer linked by the amphoterism hydrogen bonding. The theoretical studies were performed using the B3LYP density functional method with the 6-311G (d,p) basis set. The detailed interpretation of the vibrational spectra has been made on the basis of normal coordinate analysis.

摘要

甘氨酸是构建蛋白质合成的重要氨基酸。通过缓慢蒸发法从水溶液中生长出甘氨酸二聚体的单晶。粉末 X 射线衍射分析证实了所生长晶体的结晶性质。研究二聚体的分子结构很有趣,它具有通过 CO⋯H 键之间的两性键形成的明确定义的通道,并且构象是镜像对称的,其中质子化的有机阳离子在形成二聚体模式方面起着重要作用。两性分子,如甘氨酸二聚体,可以相互提供或接受质子(H(+))。光学吸收研究表明,该晶体在整个可见光区域具有透明性,截止波长为 235nm。粉末 SHG 测试和热重分析表明甘氨酸二聚体晶体具有光学活性和热稳定性。使用 B3LYP 密度泛函方法和 6-311G(d,p)基组对甘氨酸作为单体和通过两性氢键连接的二聚体进行了分子结构、几何形状、稳定性和理论振动光谱的计算。振动光谱的详细解释是基于正则坐标分析进行的。

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