Institute of Problems of Chemical Physics RAS, 142432 Chernogolovka, Russia.
Scientific Center in Chernogolovka RAS, 142432 Chernogolovka, Russia.
Int J Mol Sci. 2022 Apr 30;23(9):5011. doi: 10.3390/ijms23095011.
NMR is the method of choice for molecular and ionic structures and dynamics investigations. The present review is devoted to solvation and mobilities in solid electrolytes, such as ion-exchange membranes and composite materials, based on cesium acid sulfates and phosphates. The applications of high-resolution NMR, solid-state NMR, NMR relaxation, and pulsed field gradient H, Li, C, F, Na, P, and Cs NMR techniques are discussed. The main attention is paid to the transport channel morphology, ionic hydration, charge group and mobile ion interaction, and translation ions and solvent mobilities in different spatial scales. Self-diffusion coefficients of protons and Li, Na, and Cs cations are compared with the ionic conductivity data. The microscopic ionic transfer mechanism is discussed.
NMR 是研究分子和离子结构和动力学的首选方法。本综述致力于基于硫酸铯和磷酸铯的固体电解质,如离子交换膜和复合材料中的溶剂化和迁移率。讨论了高分辨率 NMR、固态 NMR、NMR 弛豫以及脉冲梯度 H、Li、C、F、Na、P 和 Cs NMR 技术的应用。主要关注传输通道形态、离子水合、电荷基团和移动离子相互作用以及不同空间尺度下的翻译离子和溶剂迁移率。质子和 Li、Na 和 Cs 阳离子的自扩散系数与离子电导率数据进行了比较。讨论了微观离子迁移机制。