Tomar Deepak, Rana Bhawna, Jena Kailash C
Department of Physics, Indian Institute of Technology Ropar, Rupnagar, Punjab 140001, India.
J Chem Phys. 2020 Mar 21;152(11):114707. doi: 10.1063/1.5141757.
Attenuated total reflectance Fourier transform infrared spectroscopy and sum frequency generation (SFG) vibrational spectroscopy have been employed to probe the molecular structure of N,N-dimethylformamide (DMF) and water mixture by varying the concentration of DMF. From the bulk studies, we observed a gradual decrease in the intensity with a continuous blue shift in the OH-stretch region with the increase in the DMF concentration. In contrast, no significant blue shift in the OH-stretch region is noticed from the SFG spectra collected from the air-aqueous binary mixture interface as a function of DMF concentration. However, the impact of DMF is found to be disruptive in nature toward the existing hydrogen bonding network of the pristine water at the interfacial region. Interestingly, in the CH-stretch region, the vibrational signatures of the DMF molecule show blue shifts, as proposed in earlier studies. We have calculated the molecular tilt angle of the methyl group of the DMF molecule as a function of DMF concentration. For the case of neat DMF, the observed tilt angle is ∼17.7° with respect to the surface normal. The value of tilt angle decreases with the decrease in DMF concentration and reaches a value of ∼1.7° for a mole fraction of 0.5, and it further increases with the decrease in DMF concentration. It achieves a value of ∼20° for the dilute DMF mole fraction of 0.05 in the binary mixture. This indicates that DMF molecules at the air-binary mixture interface are placing their methyl groups more toward the normal for the intermediate DMF concentrations.
衰减全反射傅里叶变换红外光谱和和频振动光谱已被用于通过改变N,N-二甲基甲酰胺(DMF)的浓度来探测DMF与水混合物的分子结构。从整体研究中,我们观察到随着DMF浓度的增加,OH伸缩区域的强度逐渐降低,同时伴有连续的蓝移。相比之下,从空气-水二元混合物界面收集的SFG光谱中,未观察到OH伸缩区域随DMF浓度变化有明显的蓝移。然而,发现DMF对界面区域原始水现有的氢键网络具有破坏作用。有趣的是,在CH伸缩区域,正如早期研究所提出的,DMF分子的振动特征显示出蓝移。我们计算了DMF分子甲基的分子倾斜角随DMF浓度的变化。对于纯DMF的情况,观察到的相对于表面法线的倾斜角约为17.7°。倾斜角的值随着DMF浓度的降低而减小,对于摩尔分数为0.5时达到约1.7°的值,并且随着DMF浓度的进一步降低而增大。在二元混合物中,对于稀DMF摩尔分数为0.05时,它达到约20°的值。这表明在空气-二元混合物界面处的DMF分子在中间DMF浓度下将其甲基更朝向法线方向排列。