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Motion of interlamellar hydrated sodium ions in layered Cd0.75PS3Na0.5(H2O)2

机译:层状Cd0.75PS3Na0.5(H2O)2中层间水合钠离子的运动

摘要

The motion of hydrated Na ions in the galleries of layered Cd0.75PS3Na0.5(H2O)2 have been investigated by proton and 23Na NMR and impedance measurements as a function of temperature. The material is conducting and the frequency dependent conductivity exhibits a power law characteristic of non-Debye-like electrical conductivity relaxation, arising from Coulomb correlation among charge carriers. The NMR spectra indicates that the interlamellar Na ions are mobile and there is good agreement between the 23Na spin-lattice relaxation rates and the electrical conductivity relaxation. The proton NMR exhibits a well resolved orientation dependent dipolar splitting which has been rationalized by considering the anisotropic rotational motion of water molecules in the pseudo-octahedral hydration shell of the Na ion. Isotropically tumbling water as well as proton hopping among water molecules is absent in Cd0.75PS3Na0.5(H2O)2. Evidence is presented to show that within the galleries the Na ion moves along with its hydration shell, the motion being such that the orientation of the C2 axis of the water molecule with respect to the normal to the layers is always preserved. The motion of the hydrated Na ions are correlated through their mutual Coulombic interaction but the rotational motion of the water molecule in the ions hydration shell may still be described by a single exponential Debye-like relaxation.
机译:通过质子和23Na NMR以及阻抗测量随温度的变化,研究了层状Cd0.75PS3Na0.5(H2O)2通道中水合Na离子的运动。该材料是导电的,并且频率相关的电导率表现出由电荷载子之间的库仑相关性引起的非德比式电导率松弛的幂律特征。 NMR光谱表明层间Na离子是可移动的,并且23Na自旋晶格弛豫速率和电导率弛豫之间有很好的一致性。质子NMR表现出良好的取向依赖性偶极分裂,已通过考虑Na离子的拟八面体水合壳中水分子的各向异性旋转运动来合理化。 Cd0.75PS3Na0.5(H2O)2中不存在各向同性的翻滚水以及水分子之间的质子跳跃。提供的证据表明,在画廊内,Na离子随其水化壳一起移动,其运动使得始终保持水分子的C2轴相对于层法线的方向。水合Na离子的运动通过它们相互的库伦相互作用而相互关联,但是离子水合壳中水分子的旋转运动仍可以通过单指数的德比式弛豫来描述。

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