Temperature effects on the ionic conductivity in concentrated alkaline electrolyte solutions
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.
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}
}