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Yang, X. Q.; Sun, X.; Lee, S. J.; McBreen, J.; Mukerjee, S.; Daroux, M. L.; Xing, X. K.
Brookhaven National Lab., Upton, NY (United States). Funding organisation: US Department of Energy (United States)1998
Brookhaven National Lab., Upton, NY (United States). Funding organisation: US Department of Energy (United States)1998
AbstractAbstract
[en] In Situ x-ray diffraction studies on LixMn2O4 spinel cathode materials during charge-discharge cycles were carried out by using a synchrotron as x-ray source. Lithium rich (x = 1.03-1.06) spinel materials obtained from two different sources were studied. Three cubic phases with different lattice constants were observed during charge-discharge cycles in all the samples when a Sufficiently low charge-discharge rate (C/10) was used. There are two regions of two-phase coexistence between these three phases, indicating that both phase transitions are first order. The separation of the Bragg peaks representing these three phases varies from sample to sample and also depends on the charge-discharge rate. These results show that the de-intercalation of lithium in lithium-rich spinel cathode materials proceeds through a series of phase transitions from a lithium-rich phase to a lithium-poor phase and finally to a λ-MnO2 like cubic phase, rather than through a continuous lattice constant contraction in a single phase
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1 Nov 1998; 14 p; 194. Electrochemical Society Meeting; Boston, MA (United States); 1-5 Nov 1998; AS-114-MSD; AC02-98CH10886; Also available from OSTI as DE00770791; PURL: https://www.osti.gov/servlets/purl/770791-FmQZVz/webviewable/
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