Reversible anionic redox chemistry in high-capacity layered-oxide electrodes
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July 2013 |
Evidence for anionic redox activity in a tridimensional-ordered Li-rich positive electrode β-Li2IrO3
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February 2017 |
Unified picture of anionic redox in Li/Na-ion batteries
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March 2019 |
The Role of Oxygen Release from Li- and Mn-Rich Layered Oxides during the First Cycles Investigated by On-Line Electrochemical Mass Spectrometry
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December 2016 |
Demonstrating Oxygen Loss and Associated Structural Reorganization in the Lithium Battery Cathode Li[Ni0.2Li0.2Mn0.6]O2
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June 2006 |
The structural and chemical origin of the oxygen redox activity in layered and cation-disordered Li-excess cathode materials
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May 2016 |
Understanding Irreversible Capacity in Li[sub x]Ni[sub 1−y]Fe[sub y]O[sub 2] Cathode Materials
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January 2000 |
Manganese oxidation as the origin of the anomalous capacity of Mn-containing Li-excess cathode materials
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July 2019 |
Requirements for reversible extra-capacity in Li-rich layered oxides for Li-ion batteries
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January 2017 |
Correlation Between Oxygen Vacancy, Microstrain, and Cation Distribution in Lithium-Excess Layered Oxides During the First Electrochemical Cycle
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April 2013 |
The truth about the 1st cycle Coulombic efficiency of LiNi 1/3 Co 1/3 Mn 1/3 O 2 (NCM) cathodes
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January 2016 |
Unlocking the Potential of Cation-Disordered Oxides for Rechargeable Lithium Batteries
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January 2014 |
Synthesis of Li-Rich NMC: A Comprehensive Study
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November 2017 |
The intriguing question of anionic redox in high-energy density cathodes for Li-ion batteries
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January 2016 |
Fundamental interplay between anionic/cationic redox governing the kinetics and thermodynamics of lithium-rich cathodes
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December 2017 |
Detailed Studies of a High-Capacity Electrode Material for Rechargeable Batteries, Li 2 MnO 3 −LiCo 1/3 Ni 1/3 Mn 1/3 O 2
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March 2011 |
Explore the Effects of Microstructural Defects on Voltage Fade of Li- and Mn-Rich Cathodes
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September 2016 |
Structure, Electrochemical Properties, and Thermal Stability Studies of Cathode Materials in the xLi[Mn[sub 1∕2]Ni[sub 1∕2]]O[sub 2]⋅yLiCoO[sub 2]⋅zLi[Li[sub 1∕3]Mn[sub 2∕3]]O[sub 2] Pseudoternary System (x+y+z=1)
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January 2005 |
Direct In situ Observation of Li 2 O Evolution on Li-Rich High-Capacity Cathode Material, Li[Ni x Li (1–2 x )/3 Mn (2– x )/3 ]O 2 (0 ≤ x ≤0.5)
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January 2014 |
Correlations between Transition-Metal Chemistry, Local Structure, and Global Structure in Li 2 Ru 0.5 Mn 0.5 O 3 Investigated in a Wide Voltage Window
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November 2017 |
Evidence of reversible oxygen participation in anomalously high capacity Li- and Mn-rich cathodes for Li-ion batteries
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March 2016 |
High-capacity electrode materials for rechargeable lithium batteries: Li 3 NbO 4 -based system with cation-disordered rocksalt structure
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June 2015 |
Lithium metal rechargeable cells using Li2MnO3 as the positive electrode
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July 1999 |
Investigating the first-cycle irreversibility of lithium metal oxide cathodes for Li batteries
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July 2008 |
Approaching the limits of cationic and anionic electrochemical activity with the Li-rich layered rocksalt Li3IrO4
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December 2017 |
First Evidence of Manganese–Nickel Segregation and Densification upon Cycling in Li-Rich Layered Oxides for Lithium Batteries
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July 2013 |
Understanding the Anomalous Capacity of Li / Li [ NixLi ( 1 / 3 − 2x / 3 ) Mn ( 2 / 3 − x / 3 ) ] O2 Cells Using In Situ X-Ray Diffraction and Electrochemical Studies
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January 2002 |
Different oxygen redox participation for bulk and surface: A possible global explanation for the cycling mechanism of Li1.20Mn0.54Co0.13Ni0.13O2
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August 2013 |
Charge-compensation in 3d-transition-metal-oxide intercalation cathodes through the generation of localized electron holes on oxygen
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March 2016 |
Origin of High Capacity and Poor Cycling Stability of Li-Rich Layered Oxides: A Long-Duration in Situ Synchrotron Powder Diffraction Study
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May 2018 |
Switch of the Charge Storage Mechanism of Li x Ni 0.80 Co 0.15 Al 0.05 O 2 at Overdischarge Conditions
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March 2018 |
Unraveling the Voltage-Fade Mechanism in High-Energy-Density Lithium-Ion Batteries: Origin of the Tetrahedral Cations for Spinel Conversion
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October 2014 |
Simulation of First-Charge Oxygen-Dimerization and Mn-Migration in Li-Rich Layered Oxides x Li 2 MnO 3 ·(1 – x )Li M O 2 and Implications for Voltage Fade
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March 2017 |
What Limits the Capacity of Layered Oxide Cathodes in Lithium Batteries?
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July 2019 |
Fundamental understanding and practical challenges of anionic redox activity in Li-ion batteries
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April 2018 |
Narrowing the Gap between Theoretical and Practical Capacities in Li-Ion Layered Oxide Cathode Materials
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July 2017 |
Li2MnO3-stabilized LiMO2 (M = Mn, Ni, Co) electrodes for lithium-ion batteries
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January 2007 |
Insight into the Atomic Structure of Cycled Lithium-Rich Layered Oxide Li 1.20 Mn 0.54 Co 0.13 Ni 0.13 O 2 Using HAADF STEM and Electron Nanodiffraction
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December 2014 |
Probing Reversible Multielectron Transfer and Structure Evolution of Li 1.2 Cr 0.4 Mn 0.4 O 2 Cathode Material for Li-Ion Batteries in a Voltage Range of 1.0–4.8 V
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July 2015 |
Re-entrant Lithium Local Environments and Defect Driven Electrochemistry of Li- and Mn-Rich Li-Ion Battery Cathodes
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February 2015 |
Nucleation of dislocations and their dynamics in layered oxide cathode materials during battery charging
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July 2018 |
Kinetic Stability of Bulk LiNiO 2 and Surface Degradation by Oxygen Evolution in LiNiO 2 -Based Cathode Materials
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November 2018 |
Temperature-Sensitive Structure Evolution of Lithium–Manganese-Rich Layered Oxides for Lithium-Ion Batteries
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October 2018 |
Overcapacity of Li[Ni[sub x]Li[sub 1/3−2x/3]Mn[sub 2/3−x/3]]O[sub 2] Electrodes
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January 2004 |
Mechanisms Associated with the “Plateau” Observed at High Voltage for the Overlithiated Li 1.12 (Ni 0.425 Mn 0.425 Co 0.15 ) 0.88 O 2 System
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August 2008 |
First-charge instabilities of layered-layered lithium-ion-battery materials
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January 2015 |
Structure of 1T-Li2NiO2 from powder neutron diffraction
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July 1991 |
Mitigated phase transition during first cycle of a Li-rich layered cathode studied by in operando synchrotron X-ray powder diffraction
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January 2016 |
The Li-Ion Battery: 25 Years of Exciting and Enriching Experiences
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January 2016 |