Department of Chemistry, Korea University, Seoul 136-701, Korea.
J Phys Chem B. 2013 Mar 7;117(9):2748-56. doi: 10.1021/jp312055f. Epub 2013 Feb 26.
Azide ion is an excellent vibrational probe for studying ion-ion and ion-dipole interactions in solutions because its frequency is sensitively dependent on its local environments. When azide ion forms contact ion pairs with cations in dimethylsulfoxide (DMSO), free azide ion and contact ion pairs are spectrally well distinguished in FTIR spectra. Here, we investigated vibrational population relaxation, P(t), and orientational relaxation dynamics, r(t), of free azide ion and contact ion pairs (LiN3, NaN3, NH4N3, MgN3(+), and CaN3(+)) in DMSO by IR pump-probe spectroscopy. For metal azide ion pairs, the metal ion slowed down the vibrational relaxation of azide ion by acting like a thermal insulator. Biexponential behavior of r(t) was analyzed in the wobbling-in-a-cone model. The long time component of r(t) of free azide ion was found to be viscosity-dependent. The wobbling motion of azide ion within the frame of metal azide ion pairs was weakly dependent on the countercation. When the overall orientational relaxation of metal azide ion pairs was analyzed by the extended Debye-Stokes-Einstein equation, it was well described under stick or superstick boundary conditions due to a strong interaction between the metal ion and DMSO molecules. Our experimental results provide important insight in understanding the rotational dynamics of small ionic species in polar solvents when the size of the ionic species is smaller than or comparable to that of the solvent molecule.
叠氮离子是研究溶液中离子-离子和离子-偶极相互作用的极好的振动探针,因为其频率对其局部环境非常敏感。当叠氮离子与二甲基亚砜(DMSO)中的阳离子形成接触离子对时,游离叠氮离子和接触离子对在 FTIR 光谱中可以很好地区分。在这里,我们通过红外泵浦-探测光谱研究了游离叠氮离子和接触离子对(LiN3、NaN3、NH4N3、MgN3(+)和 CaN3(+))在 DMSO 中的振动布居弛豫 P(t)和取向弛豫动力学 r(t)。对于金属叠氮离子对,金属离子通过充当热绝缘体来减慢叠氮离子的振动弛豫。r(t)的双指数行为用摇摆进动模型进行了分析。游离叠氮离子的 r(t)的长时间分量被发现与粘度有关。在金属叠氮离子对的框架内,叠氮离子的摇摆运动对抗衡离子的依赖性较弱。当通过扩展的 Debye-Stokes-Einstein 方程分析金属叠氮离子对的整体取向弛豫时,由于金属离子与 DMSO 分子之间的强相互作用,在 stick 或 superstick 边界条件下得到了很好的描述。我们的实验结果为理解当离子物种的尺寸小于或与溶剂分子的尺寸相当时,极性溶剂中小离子物种的旋转动力学提供了重要的见解。