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Y. C. Kan, Y. Hu, C. K. Lin, Y. Ren, Y. K. Sun, K. Amine and Z. H. Chen (2014) Physical Chemistry Chemical Physics 16 20697-20702.
文章来源:SKLFS    作者:SKLFS    发布时间:2015-03-29

Y. C. Kan, Y. Hu, C. K. Lin, Y. Ren, Y. K. Sun, K. Amine and Z. H. Chen (2014) Migration of Mn cations in delithiated lithium manganese oxides. Journal/Physical Chemistry Chemical Physics 16 20697-20702. [In English]
Web link: http://dx.doi.org/10.1039/c4cp02795g
Keywords: X-RAY-DIFFRACTION; LAYERED COMPOSITE CATHODE; TRANSITION-METAL OXIDES; LI-ION BATTERIES; VOLTAGE FADE; ELECTRONIC PROPERTIES; SPINEL PHASE; HYSTERESIS; DESIGN; DECAY

Abstract: Li2MnO3 is an integrated component in lithium-manganese-rich nickel manganese cobalt oxides, and the conversion of Li2MnO3 to a spinel-like structure after electrochemical activation has been associated with the continuous potential decay of the material. Delithiated Li2MnO3 and delithiated LiMn2O4 were used as model materials to investigate the mechanism of forming the spinel-like structure. An in situ high-energy X-ray diffraction technique was used to trace the structural change of materials at elevated temperatures, a procedure to mimic the structural transformation during the normal cycling of batteries. It was also found that the migration of Mn atoms from the octahedral sites to tetrahedral sites is the key step for phase transformation from a monoclinic structure to a spinel structure.

 
 
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Y. C. Kan, Y. Hu, C. K. Lin, Y. Ren, Y. K. Sun, K. Amine and Z. H. Chen (2014) Physical Chemistry Chemical Physics 16 20697-20702.
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