Institute of Metal Physics, Ural Branch of the Russian Academy of Sciences, S. Kovalevskoi 18, 620108 Ekaterinburg, Russia.
Molecules. 2020 Jun 26;25(12):2940. doi: 10.3390/molecules25122940.
Polyhydroborate salts represent the important class of energy materials attracting significant recent attention. Some of these salts exhibit promising hydrogen storage properties and/or high ionic conductivities favorable for applications as solid electrolytes in batteries. Two basic types of thermally activated atomic jump motion are known to exist in these materials: the reorientational (rotational) motion of complex anions and the translational diffusion of cations or complex anions. The present paper reviews recent progress in nuclear magnetic resonance (NMR) studies of both reorientational and diffusive jump motion in polyhydroborate salts. The emphasis is put on sodium and lithium -borates exhibiting high ionic conductivity and on borohydride-based systems showing extremely fast reorientational motion down to low temperatures. For these systems, we discuss the effects of order-disorder phase transitions on the parameters of reorientations and diffusive jumps, as well as the mechanism of low-temperature rotational tunneling.
多氢硼酸盐盐代表了一类重要的能量材料,引起了近期的广泛关注。其中一些盐表现出有前景的储氢性能和/或高离子电导率,有利于用作电池中的固体电解质。这类材料中存在两种基本的热激活原子跳跃运动类型:复杂阴离子的重取向(旋转)运动和阳离子或复杂阴离子的平移扩散。本文综述了多氢硼酸盐盐中重取向和扩散跳跃的核磁共振(NMR)研究的最新进展。重点放在具有高离子电导率的钠和锂硼酸盐以及表现出极快重取向运动的基于硼氢化物的系统上,直至低温。对于这些系统,我们讨论了有序-无序相变对重取向和扩散跳跃参数的影响,以及低温旋转隧道效应的机制。