Building better batteries
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February 2008 |
A comprehensive review of sodium layered oxides: powerful cathodes for Na-ion batteries
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January 2015 |
A study of the Na x TiO2 system by electrochemical deintercalation
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January 1983 |
Electrochemical intercalation activity of layered NaCrO2 vs. LiCrO2
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March 2010 |
Chemical and electrochemical deintercalations of the layered compounds LiMO2 (M = Cr, Co) and NaM′O2 (M′ Cr, Fe, Co, Ni)
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January 1983 |
In Situ X-Ray Diffraction Study of P2-Na[sub 2/3][Ni[sub 1/3]Mn[sub 2/3]]O[sub 2]
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January 2001 |
The Emerging Chemistry of Sodium Ion Batteries for Electrochemical Energy Storage
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February 2015 |
NaxVO2 as possible electrode for Na-ion batteries
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September 2011 |
Sur quelques nouvelles phases de formule NaxMnO2 (x ⩽ 1)
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February 1971 |
Electronic and electrochemical properties of nickel bronze, NaxNiO2
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April 1990 |
Development of High Capacity Cathode Material for Sodium Ion Batteries Na 0.95 Li 0.15 (Ni 0.15 Mn 0.55 Co 0.1 )O 2
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January 2013 |
P2-type Na0.67Mn0.65Fe0.2Ni0.15O2 Cathode Material with High-capacity for Sodium-ion Battery
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January 2014 |
Synthesis, Structure, and Electrochemical Properties of the Layered Sodium Insertion Cathode Material: NaNi 1 / 3 Mn 1 / 3 Co 1 / 3 O 2
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April 2012 |
β-NaMnO 2 : A High-Performance Cathode for Sodium-Ion Batteries
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November 2014 |
A preparation and polymorphic relations of sodium iron oxide (NaFeO2)
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August 1980 |
Structural classification and properties of the layered oxides
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January 1980 |
Study on the Reversible Electrode Reaction of Na 1– x Ni 0.5 Mn 0.5 O 2 for a Rechargeable Sodium-Ion Battery
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May 2012 |
Layered oxides as positive electrode materials for Na-ion batteries
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May 2014 |
Recent research progress on iron- and manganese-based positive electrode materials for rechargeable sodium batteries
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August 2014 |
An advanced cathode for Na-ion batteries with high rate and excellent structural stability
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January 2013 |
Structure of the high voltage phase of layered P2-Na 2/3−z [Mn 1/2 Fe 1/2 ]O 2 and the positive effect of Ni substitution on its stability
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January 2015 |
Enabling Sodium Batteries Using Lithium-Substituted Sodium Layered Transition Metal Oxide Cathodes
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February 2011 |
Identifying the Critical Role of Li Substitution in P2–Na x [Li y Ni z Mn 1– y – z ]O 2 (0 < x , y , z < 1) Intercalation Cathode Materials for High-Energy Na-Ion Batteries
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December 2013 |
Recent Advances and Prospects of Cathode Materials for Sodium-Ion Batteries
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August 2015 |
Performance and design considerations for lithium excess layered oxide positive electrode materials for lithium ion batteries
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January 2016 |
Reversible anionic redox chemistry in high-capacity layered-oxide electrodes
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July 2013 |
High-capacity lithium insertion materials of lithium nickel manganese oxides for advanced lithium-ion batteries: toward rechargeable capacity more than 300 mA h g−1
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January 2011 |
Direct observation of reversible charge compensation by oxygen ion in Li-rich manganese layered oxide positive electrode material, Li1.16Ni0.15Co0.19Mn0.50O2
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February 2015 |
Charge-compensation in 3d-transition-metal-oxide intercalation cathodes through the generation of localized electron holes on oxygen
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March 2016 |
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 |
Improving Energy Density and Structural Stability of Manganese Oxide Cathodes for Na-Ion Batteries by Structural Lithium Substitution
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December 2016 |
New O2/P2-type Li-Excess Layered Manganese Oxides as Promising Multi-Functional Electrode Materials for Rechargeable Li/Na Batteries
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May 2014 |
A new electrode material for rechargeable sodium batteries: P2-type Na 2/3 [Mg 0.28 Mn 0.72 ]O 2 with anomalously high reversible capacity
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January 2014 |
Redox Potential Paradox in Na x MO 2 for Sodium-Ion Battery Cathodes
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February 2016 |
Anionic redox chemistry in Na-rich Na 2 Ru 1−y Sn y O 3 positive electrode material for Na-ion batteries
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April 2015 |
Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
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April 2016 |
The Role of Metal Site Vacancies in Promoting Li–Mn–Ni–O Layered Solid Solutions
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June 2013 |
Analysis of Three-Electrode Setups for AC-Impedance Measurements on Lithium-Ion Cells by FEM simulations
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January 2011 |
Effect of Ni/Mn Ordering on Elementary Polarizations of LiNi 0.5 Mn 1.5 O 4 Spinel and Its Nanostructured Electrode
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January 2013 |
Electrochemical kinetics of the 0.5Li2MnO3·0.5LiMn0.42Ni0.42Co0.16O2 ‘composite’ layered cathode material for lithium-ion batteries
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January 2012 |
Identifying surface structural changes in layered Li-excess nickel manganese oxides in high voltage lithium ion batteries: A joint experimental and theoretical study
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January 2011 |
Intercalation of Water in P2, T2 and O2 Structure A z [Co x Ni 1/3- x Mn 2/3 ]O 2
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April 2001 |
Electrochemical intercalation and deintercalation of NaxMnO2 bronzes
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May 1985 |
Direct evidence for high Na + mobility and high voltage structural processes in P2-Na x [Li y Ni z Mn 1−y−z ]O 2 (x, y, z ≤ 1) cathodes from solid-state NMR and DFT calculations
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January 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 |
High-Energy Cathode Materials (Li 2 MnO 3 –LiMO 2 ) for Lithium-Ion Batteries
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March 2013 |
EELS analysis of cation valence states and oxygen vacancies in magnetic oxides
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October 2000 |
Uncovering the roles of oxygen vacancies in cation migration in lithium excess layered oxides
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January 2014 |
Probing the electrode/electrolyte interface in the lithium excess layered oxide Li1.2Ni0.2Mn0.6O2
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January 2013 |
Demonstrating Oxygen Loss and Associated Structural Reorganization in the Lithium Battery Cathode Li[Ni0.2Li0.2Mn0.6]O2
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June 2006 |
Profiling the nanoscale gradient in stoichiometric layered cathode particles for lithium-ion batteries
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January 2014 |
Investigation of the Charge Compensation Mechanism on the Electrochemically Li-Ion Deintercalated Li 1 - x Co 1/3 Ni 1/3 Mn 1/3 O 2 Electrode System by Combination of Soft and Hard X-ray Absorption Spectroscopy
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December 2005 |
Distinct charge dynamics in battery electrodes revealed by in situ and operando soft X-ray spectroscopy
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October 2013 |
Splitting of states at the surface of nanostructures
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November 2006 |
Direct Experimental Probe of the Ni(II)/Ni(III)/Ni(IV) Redox Evolution in LiNi 0.5 Mn 1.5 O 4 Electrodes
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November 2015 |
Electrochemical and Structural Study of the Layered, “Li-Excess” Lithium-Ion Battery Electrode Material Li[Li 1/9 Ni 1/3 Mn 5/9 ]O 2
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July 2009 |
Charge compensation mechanisms in Li1.16Ni0.15Co0.19Mn0.50O2 positive electrode material for Li-ion batteries analyzed by a combination of hard and soft X-ray absorption near edge structure
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January 2013 |
Soft X-ray Absorption Spectroscopic and Raman Studies on Li 1.2 Ni 0.2 Mn 0.6 O 2 for Lithium-Ion Batteries
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November 2012 |
Oxygen 1 s x-ray-absorption edges of transition-metal oxides
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September 1989 |
Soft X-Ray Irradiation Effects of Li2O2, Li2CO3 and Li2O Revealed by Absorption Spectroscopy
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November 2012 |
P2-type Nax[Fe1/2Mn1/2]O2 made from earth-abundant elements for rechargeable Na batteries
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April 2012 |