论文标题
四极$^{23} $ na $^{+} $ nmr放松作为水溶液溶液中的子集体动态的探测
Quadrupolar $^{23}$Na$^{+}$ NMR Relaxation as a Probe of Subpicosecond Collective Dynamics in Aqueous Electrolyte Solutions
论文作者
论文摘要
核磁共振松弛计是提取动态信息的强大工具。然而,对于许多通过四极了机制放松的离子,获得与分子运动的链接是具有挑战性的,该离子是由电场梯度波动介导的,缺乏详细的显微镜描述。对于水溶液中的钠离子,我们结合了从头算的计算,以说明电子云的效应与经典的分子动力学以采样长时间的波动,并获得与广泛浓度和温度范围的实验相吻合的放松率。我们证明,四极核弛豫对基于水重新定向或簇旋转的先前模型未捕获的亚皮秒动力学敏感。虽然离子会影响整体降水,但实验趋势主要由钠的前两个溶剂化壳中的动力学解释,这些钠主要含有水。因此,这项工作为对电解质和生物电解质系统中四极松弛的定量理解铺平了道路。
Nuclear magnetic resonance relaxometry represents a powerful tool for extracting dynamic information. Yet, obtaining links to molecular motion is challenging for many ions that relax through the quadrupolar mechanism, which is mediated by electric field gradient fluctuations and lacks a detailed microscopic description. For sodium ions in aqueous electrolytes, we combine ab initio calculations to account for electron cloud effects with classical molecular dynamics to sample long-time fluctuations, and obtain relaxation rates in good agreement with experiments over broad concentration and temperature ranges. We demonstrate that quadrupolar nuclear relaxation is sensitive to subpicosecond dynamics not captured by previous models based on water reorientation or cluster rotation. While ions affect the overall water retardation, experimental trends are mainly explained by dynamics in the first two solvation shells of sodium, which contain mostly water. This work thus paves the way to the quantitative understanding of quadrupolar relaxation in electrolyte and bioelectrolyte systems.