English

Temperature effects on the ionic conductivity in concentrated alkaline electrolyte solutions

Chemical Physics 2019-12-20 v1 Soft Condensed Matter

Abstract

Alkaline electrolyte solutions are important components in rechargeable batteries and alkaline fuel cells. As the ionic conductivity is thought to be a limiting factor in the performance of these devices, which are often operated at elevated temperatures, its temperature dependence is of significant interest. Here we use NaOH as a prototypical example of alkaline electrolytes, and for this system we have carried out reactive molecular dynamics simulations with an experimentally verified high-dimensional neural network potential derived from density-functional theory calculations. It is found that in concentrated NaOH solutions elevated temperatures enhance both the contributions from proton transfer to the ionic conductivity and deviations from the Nernst-Einstein relation. These findings are expected to be of practical relevance for electrochemical devices based on alkaline electrolyte solutions.

Keywords

Cite

@article{arxiv.1912.00640,
  title  = {Temperature effects on the ionic conductivity in concentrated alkaline electrolyte solutions},
  author = {Yunqi Shao and Matti Hellström and Are Yllö and Jonas Mindemark and Kersti Hermansson and Jörg Behler and Chao Zhang},
  journal= {arXiv preprint arXiv:1912.00640},
  year   = {2019}
}
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