Improved Cycleability of Oxygen Stoichiometric Li1+xMgyMn2−x−yO4+δat Elevated Temperature
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Reference11 articles.
1. Capacity Fading on Cycling of 4 V Li / LiMn2 O 4 Cells
2. Correlating Capacity Fading and Structural Changes in Li[sub 1+y]Mn[sub 2−y]O[sub 4−δ] Spinel Cathode Materials: A Systematic Study on the Effects of Li/Mn Ratio and Oxygen Deficiency
3. Surface treatments of Li1+xMn2−xO4 spinels for improved elevated temperature performance
4. Self‐Discharge of LiMn2 O 4/C Li‐Ion Cells in Their Discharged State: Understanding by Means of Three‐Electrode Measurements
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3. A simple and mass production preferred solid-state procedure to prepare the LiSixMgxMn2−2xO4 (0≤x≤0.10) with enhanced cycling stability and rate capability;Journal of Alloys and Compounds;2016-06
4. Synthesis and electrochemical characterizations of spinel LiMn1.94MO4 (M = Mn0.06, Mg0.06, Si0.06, (Mg0.03Si0.03)) compounds as cathode materials for lithium-ion batteries;Journal of Power Sources;2015-05
5. Characterization of Spinel-type LiCo0.04Mn1.96O4 Prepared by Liquid-phase Famless Combustion;International Journal of Electrochemical Science;2015-05
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