Dunbar Josef A, Arthur Evan J, White Aaron M, Kubarych Kevin J
Department of Chemistry and LSA Biophysics, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 49109, United States.
J Phys Chem B. 2015 May 21;119(20):6271-9. doi: 10.1021/acs.jpcb.5b01952. Epub 2015 May 12.
Using a derivative of the vitamin biotin labeled with a transition-metal carbonyl vibrational probe in a series of aqueous N,N-dimethylformamide (DMF) solutions, we observe a striking slowdown in spectral diffusion dynamics with decreased DMF concentration. Equilibrium solvation dynamics, measured with the rapidly acquired spectral diffusion (RASD) technique, a variant of heterodyne-detected photon-echo peak shift experiments, range from 1 ps in neat DMF to ∼3 ps in 0.07 mole fraction DMF/water solution. Molecular dynamics simulations of the biotin-metal carbonyl solute in explicit aqueous DMF solutions show marked preferential solvation by DMF, which becomes more pronounced at lower DMF concentrations. The simulations and the experimental data are consistent with an interpretation where the slowdown in spectral diffusion is due to solvent exchange involving distinct cosolvent species. A simple two-component model reproduces the observed spectral dynamics as well as the DMF concentration dependence, enabling the extraction of the solvent exchange time scale of 8 ps. This time scale corresponds to the diffusive motion of a few Å, consistent with a solvent-exchange mechanism. Unlike most previous studies of solvation dynamics in binary mixtures of polar solvents, our work highlights the ability of vibrational probes to sense solvent exchange as a new, slow component in the spectral diffusion dynamics.
在一系列N,N-二甲基甲酰胺(DMF)水溶液中,使用一种标记有过渡金属羰基振动探针的维生素生物素衍生物,我们观察到随着DMF浓度降低,光谱扩散动力学显著减慢。用快速获取光谱扩散(RASD)技术测量的平衡溶剂化动力学,这是外差检测光子回波峰移实验的一种变体,范围从纯DMF中的1皮秒到0.07摩尔分数的DMF/水溶液中的约3皮秒。在明确的DMF水溶液中对生物素-金属羰基溶质进行的分子动力学模拟显示,DMF具有明显的优先溶剂化作用,在较低的DMF浓度下这种作用更为明显。模拟结果和实验数据与一种解释一致,即光谱扩散减慢是由于涉及不同助溶剂物种的溶剂交换。一个简单的双组分模型再现了观察到的光谱动力学以及DMF浓度依赖性,从而能够提取出8皮秒的溶剂交换时间尺度。这个时间尺度对应于几埃的扩散运动,与溶剂交换机制一致。与之前大多数关于极性溶剂二元混合物中溶剂化动力学的研究不同,我们的工作突出了振动探针感知溶剂交换作为光谱扩散动力学中一个新的慢成分的能力。