Proton positions in spinel H0.9Li0.1[Li0.33Ti1.67]O4, an ion-exchanged spinel Li1[Li0.33Ti1.67]O4

Journal Article (2004)
Author(s)

M. Wagemaker (TU Delft - RST/Storage of Electrochemical Energy)

D. R. Simon (TU Delft - ChemE/Algemeen)

Erik Kelder (TU Delft - RST/Storage of Electrochemical Energy)

J Schoonman (TU Delft - ChemE/Materials for Energy Conversion and Storage)

FM Mulder (TU Delft - ChemE/Materials for Energy Conversion and Storage)

Research Group
RST/Storage of Electrochemical Energy
DOI related publication
https://doi.org/10.1016/j.physb.2004.03.274
More Info
expand_more
Publication Year
2004
Language
English
Research Group
RST/Storage of Electrochemical Energy
Issue number
1–3, Supplement
Volume number
350
Pages (from-to)
E995-E998

Abstract

Spinel Li1[Li0.33Ti1.67]O4 is an attractive candidate for the use as anode material in Li-ion batteries. This work focusses on the structural changes of spinel Li1[Li0.33Ti1.67]O4 upon the exchange of Li-ions with protons leading to the composition H0.9Li0.1[Li0.33Ti1.67]O4. The structure has been determined by means of Fourier density difference analysis of neutron diffraction data on the protonated material, collected over a wide range of d-spacings with high counting statistics. The protons replace the Li-ions on the crystallographic 8a sites, and also occupy a fraction of the 48f sites that are located in the same ab-plane as the 8a sites. These positions suggest that the protons prefer to be located near the oxygen atoms. Based on these results, a strong influence on the properties as Li-ion battery electrode material may be anticipated. The small change in unit-cell dimension and the considerable amount of hydrogen that can be hosted in spinel Li1[Li0.33Ti1.67]O4 are favorable for the use as fuel-cell electrolyte material.

No files available

Metadata only record. There are no files for this record.