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Synthesis of spherical Li[Ni(1/3−z)Co(1/3−z)Mn(1/3−z)Mgz]O2 as positive electrode material for lithium-ion battery
Authors:Gil-Ho Kim  Hyun-Soo Kim
Affiliation:a Department of Chemical Engineering, Hanyang University, College of Engineering, 17 Haendang-Dong, Sungdong-Gu, Seoul 133-791, South Korea
b VK Corporation, 67 Jije-Dong, Pyongtaek-City, Kyonggi-Do 450-090, South Korea
c Battery Research Group, Korea Electrotechnology Research Institute, 28-1 Sungjoo-dong Changwon, Kyungnam 641-120, South Korea
Abstract:LiNi(1/3−z)Co(1/3−z)Mn(1/3−z)Mgz]O2 (z = 0, 0.04) positive electrode materials were synthesized via a co-precipitation method. These materials have α-NaFeO2 (View the MathML source) structure, as confirmed by X-ray diffraction (XRD) studies. Cation mixing in Li layer seemed to be decreased by Mg substitution as examined by Rietveld refinements of XRD data. Spherical morphologies were observed for the as-synthesized final products by scanning electron microscopy. Their electrochemical properties during charge and discharge were discussed. When magnesium ions are substituted, the initial reversible capacity reduced. However, the substitution for Mn sites in LiNi1/3Co1/3Mn1/3]O2 did not decrease the capacity because Mn sites substitution did not result in loss of electroactive elements in the compound. Differential scanning calorimetric studies showed the exothermic peaks of the charged electrode LiNi(1/3−z)Co(1/3−z)Mn(1/3−z)Mgz]O2 (z = 0.04) were significantly smaller than that of LiNi1/3Co1/3Mn1/3]O2, which means that thermal stability was greatly improved by Mg substitution even at highly delithiated state.
Keywords:Co-precipitation  Mg substitution  Li[Ni1/3Co1/3Mn1/3]O2  Positive electrode  Lithium battery
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