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Simplified co-precipitation synthesis of spinel LiNi0.5Mn1.5O4 with improved physical and electrochemical performance

https://doi.org/10.1016/j.jallcom.2014.02.034
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The 33 checked references that resolve
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Lithium-ion rechargeable batteries
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Li Metal‐Free Rechargeable Batteries Based on Li1 + x Mn2 O 4 Cathodes  ( 0 ≤ x ≤ 1 )  and Carbon Anodes
resolves10.1016/S0378-7753(01)00657-7
Effect of various synthetic parameters on purity of LiMn2O4 spinel synthesized by a sol–gel method at low temperature
resolves10.1149/1.1471542
LiMn<sub>2</sub> O <sub>4</sub> Core Surrounded by LiCo<sub> x </sub>Mn<sub>2 − x </sub> O <sub>4</sub> Shell Material for Rechargeable Lithium Batteries: Synthesis and Characterization
resolves10.1016/S0378-7753(01)00769-8
Effect of Al-substitution on the stability of LiMn2O4 spinel, synthesized by citric acid sol–gel method
resolves10.1016/S0378-7753(02)00023-X
Synthesis and characterization of multidoped lithium manganese oxide spinel, Li1.02Co0.1Ni0.1Mn1.8O4, for rechargeable lithium batteries
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Positive electrode materials with high operating voltage for lithium batteries: LiCryMn2 − yO4 (0 ≤ y ≤ 1)
resolves10.1016/S0378-7753(96)02590-6
Preparation and electrochemical investigation of LiMn2 − xMexO4 (Me: Ni, Fe, and x = 0.5, 1) cathode materials for secondary lithium batteries
resolves10.1016/S0013-4686(99)00213-3
5 V lithium cathodes based on spinel solid solutions Li2Co1+XMn3−XO8: -1≤X≤1
resolves10.1149/1.1838445
LiMn2 − x Cu x  O 4 Spinels (0.1 ⩽ x ⩽ 0.5): A new Class of 5 V Cathode Materials for Li Batteries: I. Electrochemical, Structural, and Spectroscopic Studies
resolves10.1149/1.1377593
Structure and Electrochemical Properties of LiFe[sub x]Mn[sub 2−x]O[sub 4] (0≤x≤0.5) Spinel as 5 V Electrode Material for Lithium Batteries
resolves10.1149/1.1837386
Synthesis and Electrochemistry of LiNi x Mn2 − x  O 4
resolves10.1016/S0378-7753(99)00246-3
Solid-state redox potentials for Li[Me1/2Mn3/2]O4 (Me: 3d-transition metal) having spinel-framework structures: a series of 5 volt materials for advanced lithium-ion batteries
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Electrochemical Characteristics of LiNi[sub 0.5]Mn[sub 1.5]O[sub 4] Cathodes with Ti or Al Current Collectors
resolves10.1002/adma.200601232
TiO<sub>2</sub>(B) Nanowires as an Improved Anode Material for Lithium‐Ion Batteries Containing LiFePO<sub>4</sub> or LiNi<sub>0.5</sub>Mn<sub>1.5</sub>O<sub>4</sub> Cathodes and a Polymer Electrolyte
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Combining 5V LiNi0.5Mn1.5O4 spinel and Si nanoparticles for advanced Li-ion batteries
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Nonflammable electrolyte for 3-V lithium-ion battery with spinel materials LiNi0.5Mn1.5O4 and Li4Ti5O12
resolves10.1149/1.1465375
Synthesis and Electrochemical Properties of ZnO-Coated LiNi[sub 0.5]Mn[sub 1.5]O[sub 4] Spinel as 5 V Cathode Material for Lithium Secondary Batteries
resolves10.1016/j.electacta.2006.10.063
Effects of the nanostructured SiO2 coating on the performance of LiNi0.5Mn1.5O4 cathode materials for high-voltage Li-ion batteries
resolves10.1149/1.1619988
5 V Class All-Solid-State Composite Lithium Battery with Li[sub 3]PO[sub 4] Coated LiNi[sub 0.5]Mn[sub 1.5]O[sub 4]
resolves10.1021/cm034080s
Structural and Electrochemical Study of New LiNi<sub>0.5</sub>Ti<i><sub>x</sub></i>Mn<sub>1.5-</sub><i><sub>x</sub></i>O<sub>4</sub> Spinel Oxides for 5-V Cathode Materials
resolves10.1149/1.1827571
Synergistic Effects of Double Substitution in LiNi[sub 0.5−y]Fe[sub y]Mn[sub 1.5]O[sub 4] Spinel as 5 V Cathode Materials
resolves10.1016/j.jpowsour.2008.06.074
Chromium doping as a new approach to improve the cycling performance at high temperature of 5V LiNi0.5Mn1.5O4-based positive electrode
resolves10.1016/j.matchemphys.2006.10.006
Physical properties and electrochemical performance of LiNi0.5Mn1.5O4 cathode material prepared by a coprecipitation method
resolves10.1016/j.jpowsour.2006.03.085
Effect of sulfur and nickel doping on morphology and electrochemical performance of LiNi0.5Mn1.5O4−xSx spinel material in 3-V region
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Study of LiNi0.5Mn1.5O4 synthesized via a chloride-ammonia co-precipitation method: Electrochemical performance, diffusion coefficient and capacity loss mechanism
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A new co-precipitation technique for the preparation of mixed-oxides
resolves10.1246/cl.2004.704
Preparation of Layered Li[Ni1⁄3Mn1⁄3Co1⁄3]O2 as a Cathode for Lithium Secondary Battery by Carbonate Coprecipitation Method
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Novel Synthesis Method for Preparing Layered Li[Mn1/2Ni1/2]O2 as a Cathode Material for Lithium Ion Secondary Battery
resolves10.1039/b904098f
LixNi0.25Mn0.75Oy (0.5 ≤x≤ 2, 2 ≤y≤ 2.75) compounds for high-energy lithium-ion batteries
resolves10.1149/1.1639162
Topotactic Two-Phase Reactions of Li[Ni[sub 1/2]Mn[sub 3/2]]O[sub 4] (P4[sub 3]32) in Nonaqueous Lithium Cells
resolves10.1016/j.electacta.2005.03.033
Influence of chromium doping on the electrochemical performance of the 5V spinel cathode LiMn1.5Ni0.5O4
resolves10.1016/j.electacta.2011.04.113
Synthesis and electrochemical characterization of LiNi0.5Mn1.5O4 by one-step precipitation method with ammonium carbonate as precipitating agent
The 1 reference without a DOI — listed, not checked
no DOI — not checked10.1016/j.jallcom.2014.02.034_b0015
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