The effect of hydration number on the interfacial transport of sodium ions

Jinbo Peng, Duanyun Cao, Zhili He, Jing Guo, Prokop Hapala, Runze Ma, Bowei Cheng, Ji Chen, Wen Jun Xie, Xin Zheng Li, Pavel Jelínek, Li Mei Xu*, Yi Qin Gao, En Ge Wang, Ying Jiang

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

290 引用 (Scopus)

摘要

Ion hydration and transport at interfaces are relevant to a wide range of applied fields and natural processes 1-5 . Interfacial effects are particularly profound in confined geometries such as nanometre-sized channels 6-8, where the mechanisms of ion transport in bulk solutions may not apply 9,10 . To correlate atomic structure with the transport properties of hydrated ions, both the interfacial inhomogeneity and the complex competing interactions among ions, water and surfaces require detailed molecular-level characterization. Here we constructed individual sodium ion (Na+) hydrates on a NaCl(001) surface by progressively attaching single water molecules (one to five) to the Na+ ion using a combined scanning tunnelling microscopy and noncontact atomic force microscopy system. We found that the Na+ ion hydrated with three water molecules diffuses orders of magnitude more quickly than other ion hydrates. Ab initio calculations revealed that such high ion mobility arises from the existence of a metastable state, in which the three water molecules around the Na+ ion can rotate collectively with a rather small energy barrier. This scenario would apply even at room temperature according to our classical molecular dynamics simulations. Our work suggests that anomalously high diffusion rates for specific hydration numbers of ions are generally determined by the degree of symmetry match between the hydrates and the surface lattice.

源语言英语
页(从-至)701-705
页数5
期刊Nature
557
7707
DOI
出版状态已出版 - 31 5月 2018
已对外发布

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