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美芬新的构象灵活性。

Conformational flexibility of mephenesin.

作者信息

Écija Patricia, Evangelisti Luca, Vallejo Montserrat, Basterretxea Francisco J, Lesarri Alberto, Castaño Fernando, Caminati Walther, Cocinero Emilio J

机构信息

Departamento de Química Física, Facultad de Ciencia y Tecnología, Universidad del País Vasco (UPV/EHU) , Campus de Leioa, Ap. 644, E-48080 Bilbao, Spain.

出版信息

J Phys Chem B. 2014 May 22;118(20):5357-64. doi: 10.1021/jp5014785. Epub 2014 May 7.

Abstract

The mephenesin molecule (3-(2-methylphenoxy)propane-1,2-diol) serves as a test bank to explore several structural and dynamical issues, such as conformational flexibility, the orientation of the carbon linear chain relative to the benzene plane, or the effect of substituent position on the rotational barrier of a methyl group. The molecule has been studied by rotational spectroscopy in the 4-18 GHz frequency range by Fourier-transform methods in a supersonic expansion. The experiment has been backed by a previous conformational search plus optimization of the lowest energy structures by ab initio and density functional quantum calculations. The three lowest-lying conformers that can interconvert to each other by simple bond rotations have been detected in the jet. Rotational parameters for all structures have been obtained, and methyl torsional barriers have been determined for the two lowest-lying rotamers. The lowest-lying structure of mephenesin is highly planar, with all carbon atoms lying nearly in the benzene ring plane, and is stabilized by the formation of cooperative intramolecular hydrogen bonding. An estimation of the relative abundance of the detected conformers indicates that the energetically most stable conformer will have an abundance near 80% at temperatures relevant for biological activity.

摘要

美芬新分子(3-(2-甲基苯氧基)丙烷-1,2-二醇)可作为一个测试库,用于探索几个结构和动力学问题,如构象灵活性、碳直链相对于苯平面的取向,或取代基位置对甲基旋转势垒的影响。通过傅里叶变换方法在超声速膨胀中对该分子在4-18 GHz频率范围内进行了转动光谱研究。该实验得到了先前构象搜索以及通过从头算和密度泛函量子计算对最低能量结构进行优化的支持。在射流中检测到了三种通过简单键旋转可相互转化的最低能量构象异构体。获得了所有结构的转动参数,并确定了两个最低能量旋转异构体的甲基扭转势垒。美芬新的最低能量结构高度平面化,所有碳原子几乎都位于苯环平面内,并通过形成协同分子内氢键而得以稳定。对检测到的构象异构体相对丰度的估计表明,在与生物活性相关的温度下,能量上最稳定的构象异构体的丰度将接近80%。

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