Lima Manuela, Chelli Riccardo, Volkov Victor V, Righini Roberto
European Laboratory for Non-Linear Spectroscopy (LENS), Via Nello Carrara 1, I-50019 Sesto Fiorentino, Firenze, Italy.
J Chem Phys. 2009 May 28;130(20):204518. doi: 10.1063/1.3139002.
Vibrational dynamics of liquid formamide is studied in the spectral region of the amide I mode by means of linear and two-dimensional infrared spectroscopies. The two-dimensional spectrum has a complex structure to be connected to the partially excitonic nature of the vibrational states. The measurements performed on a 1:10 (12)C:(13)C formamide isotopic mixture allow separating the broadening contribution due to the inhomogeneous frequency distribution of the local oscillators from that of excitonic origin. A model based on the Kubo picture of the line broadening is used, together with the dynamic information obtained from a molecular dynamics simulation, to fit the spectra of the (12)C formamide impurity in the isotopic mixture. The relevant dynamical information, such as the amplitude of the frequency fluctuations, lifetime of the second vibrational excited state, and anharmonicity, is thus recovered. By appropriately combining the outcomes of experiments and molecular dynamics simulation, we demonstrate that motional narrowing determines the line shape of the amide I resonance to a large extent. The same analysis provides an estimate of the transition dipole moment of formamide, which results in good agreement with an ab initio calculation. The calculated frequency fluctuation correlation time is found to be comparable to the hydrogen-bond lifetime, which defines the basic structural relaxation rate of the networked liquid.
通过线性和二维红外光谱技术,在酰胺I模式的光谱区域研究了液态甲酰胺的振动动力学。二维光谱具有复杂的结构,这与振动状态的部分激子性质有关。对1:10的(12)C:(13)C甲酰胺同位素混合物进行的测量,使得能够将由于局部振荡器的非均匀频率分布引起的展宽贡献与激子起源的展宽贡献区分开来。使用基于线展宽的久保图像的模型,结合从分子动力学模拟获得的动态信息,来拟合同位素混合物中(12)C甲酰胺杂质的光谱。从而恢复了相关的动力学信息,如频率波动的幅度、第二振动激发态的寿命和非谐性。通过适当地结合实验和分子动力学模拟的结果,我们证明了运动窄化在很大程度上决定了酰胺I共振的线形。相同的分析提供了甲酰胺跃迁偶极矩的估计值,其结果与从头算计算结果吻合良好。发现计算出的频率波动相关时间与氢键寿命相当,氢键寿命定义了网络液体的基本结构弛豫速率。