Understanding intercalation compounds for sodium-ion batteries and beyond

Author:

Kaufman Jonas L.1ORCID,Vinckevičiūtė Julija1ORCID,Krishna Kolli Sanjeev1ORCID,Gabriel Goiri Jon1,Van der Ven Anton1ORCID

Affiliation:

1. Materials Department, University of California, Santa Barbara, CA 93106, USA

Abstract

Intercalation compounds are popular candidate electrode materials for sodium-ion batteries and other ‘beyond lithium-ion’ technologies including potassium- and magnesium-ion batteries. We summarize first-principles efforts to elucidate the behaviour of such compounds in the layered and spinel structures. Trends based on the size and valence of the intercalant and the ionicity of the host are sufficient to explain phase stability and ordering phenomena, which in turn determine the equilibrium voltage profile. For the layered structures, we provide an overarching view of intercalant orderings in prismatic coordination based on antiphase boundaries, which has important consequences for diffusion. We examine details of stacking sequence transitions between different layered structures by calculating stacking fault energies and discussing the nature of dislocations. A better understanding of these transitions will likely aid the development of batteries with improved cyclability. This article is part of a discussion meeting issue ‘Energy materials for a low carbon future’.

Funder

U.S. Department of Energy

Basic Energy Sciences

NSF

Department of Energy Office of Science

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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