High voltage sulphate cathodes Li2M(SO4)2 (M = Fe, Mn, Co): Atomic-scale studies of lithium diffusion, surfaces and voltage trends

57Citations
Citations of this article
83Readers
Mendeley users who have this article in their library.

Abstract

The search for high voltage cathodes for lithium-ion batteries has led to recent interest in the monoclinic Li2Fe(SO4)2 material which has a voltage of 3.83 V vs. lithium, the highest recorded for a fluorine-free iron-based compound. Here we investigate the defect, surface and lithium migration properties of the Li2M(SO4)2 (M = Fe, Mn, Co) materials using combined atomistic modelling and density functional theory (DFT) techniques. All intrinsic defect types including Li/M antisite disorder are found to be of high energy, suggesting insignificant concentrations. Low activation energies are found for lithium migration along the a-axis channels giving rise to long-range 1D diffusion, which are supported by molecular dynamics (MD) simulations. For the crystal morphology a significant surface area is exposed to these 1D diffusion channels, which would allow facile Li insertion and extraction. Using DFT simulations we reproduce the high voltage of the Li2Fe(SO4)2 material in accord with electrochemical data and also examine local structural distortions on lithium extraction. © the Partner Organisations 2014.

Cite

CITATION STYLE

APA

Clark, J. M., Eames, C., Reynaud, M., Rousse, G., Chotard, J. N., Tarascon, J. M., & Islam, M. S. (2014). High voltage sulphate cathodes Li2M(SO4)2 (M = Fe, Mn, Co): Atomic-scale studies of lithium diffusion, surfaces and voltage trends. Journal of Materials Chemistry A, 2(20), 7446–7453. https://doi.org/10.1039/c3ta15064j

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free