Kapitan Josef, Baumruk Vladimír, Kopecký Vladimír, Bour Petr
Institute of Organic Chemistry and Biochemistry, Academy of Sciences, Flemingovo nam. 2, 16610, Prague, Czech Republic.
J Phys Chem A. 2006 Apr 13;110(14):4689-96. doi: 10.1021/jp060260o.
Detailed analysis of Raman and Raman optical activity (ROA) of L-alanine zwitterion (ALAZW) revealed that shapes of the spectral bands are to a large extent determined by the rotation of the NH(3)(+), CO(2)(-), and CH(3) groups. Aqueous solution ALAZW spectra were measured down to 100 cm(-1) and compared to complex simulations based on ab initio (B3LYP/CPCM/6-31++G**) computations of molecular energies and spectral parameters. The bands exhibit different sensitivities to the motion of the rotating group; typically, for more susceptible bands the Raman signal becomes broader and the ROA intensity decreases. When these dynamical factors are taken into account in Boltzmann averaging of conformer contributions, simulated spectra not only better agree with the experiment, but shapes of the rotational potentials can be estimated. Effects of the molecular flexibility could be also demonstrated on differences in Raman spectra of the solution, crystalline, and glass (gellike) solid states of ALAZW. Experimental Raman and ROA spectra of four model dipeptides of different rigidities (Ala-Pro, Pro-Ala, Pro-Gly, and Gly-Pro) indicate that the broadening of spectral lines can be used as a general site-specific indicator of molecular rigidity or flexibility.
对L-丙氨酸两性离子(ALAZW)的拉曼光谱和拉曼光学活性(ROA)进行详细分析后发现,谱带形状在很大程度上由NH(3)(+)、CO(2)(-)和CH(3)基团的旋转决定。测量了ALAZW水溶液光谱至100 cm(-1),并与基于分子能量和光谱参数的从头算(B3LYP/CPCM/6-31++G**)计算的复杂模拟结果进行了比较。这些谱带对旋转基团的运动表现出不同的敏感性;通常,对于更敏感的谱带,拉曼信号会变宽,ROA强度会降低。当在构象异构体贡献的玻尔兹曼平均中考虑这些动力学因素时,模拟光谱不仅与实验结果更吻合,还可以估计旋转势的形状。分子柔性的影响也可以通过ALAZW溶液、晶体和玻璃(凝胶状)固态的拉曼光谱差异来证明。四种不同刚性的模型二肽(Ala-Pro、Pro-Ala、Pro-Gly和Gly-Pro)的实验拉曼光谱和ROA光谱表明,谱线展宽可作为分子刚性或柔性的通用位点特异性指标。