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High-energy X-ray powder diffraction and atomic-pair distribution-function studies of charged/discharged structures in carbon-hybridized Li2MnSiO4 nanoparticles as a cathode material for lithium-ion batteries.

Authors :
Moriya, Maki
Miyahara, Masahiko
Hokazono, Mana
Sasaki, Hirokazu
Nemoto, Atsushi
Katayama, Shingo
Akimoto, Yuji
Hirano, Shin-ichi
Ren, Yang
Source :
Journal of Power Sources. Oct2014, Vol. 263, p7-12. 6p.
Publication Year :
2014

Abstract

Abstract: The stable cycling performance with a high discharge capacity of ∼190 mAh g−1 in a carbon-hybridized Li2MnSiO4 nanostructured powder has prompted an experimental investigation of the charged/discharged structures using synchrotron-based and laboratory-based X-rays and atomic-pair distribution-function (PDF) analyses. A novel method of in-situ spray pyrolysis of a precursor solution with glucose as a carbon source enabled the successful synthesis of the carbon-hybridized Li2MnSiO4 nanoparticles. The XRD patters of the discharged (lithiated) samples exhibit a long-range ordered structure characteristic of the (β) Li2MnSiO4 crystalline phase (space group Pmn21) which dissipates in the charged (delithiated) samples. However, upon discharging the long-range ordered structure recovers in each cycle. The disordered structure, according to the PDF analysis, is mainly due to local distortions of the MnO4 tetrahedra which show a mean Mn–O nearest neighbor distance shorter than that of the long-range ordered phase. These results corroborate the notion of the smaller Mn3+/Mn4+ ionic radii in the Li extracted phase versus the larger Mn2+ ionic radius in Li inserted phase. Thus Li extraction/insertion drives the fluctuation between the disordered and the long-range ordered structures. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
03787753
Volume :
263
Database :
Academic Search Index
Journal :
Journal of Power Sources
Publication Type :
Academic Journal
Accession number :
96187486
Full Text :
https://doi.org/10.1016/j.jpowsour.2014.03.065